GESAMT-PUBLIKATIONSLISTE
Physiologisches Institut II (AG Klinke), Frankfurt/M
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KLINKE, R.: |
Experimentelle Untersuchungen über die Speicherung von radioaktivem Phosphor in Tumorgeweben. |
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KLINKE, R. |
Corticale Antworten des Menschen auf den Ausfall einzelner vibratorischer Reize einer periodischen Reizfolge. |
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GIESEN, M. |
Zur Richtcharakteristik statischer Vestibularisneurone beim Meerschweinchen. |
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GIESEN, M. |
Die Richtcharakteristik von Vestibularisneuronen. |
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KLINKE, R. |
Evoked responses as a function of external and stored information. |
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BOERGER, G. |
Die Übersprechdämmung von Ohr zu Ohr bei der Katze. |
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BOERGER, G. |
Der Einfluß efferenter Systeme auf neuronale Entladungsmuster im Nucleus cochlearis: Vergleiche monauraler, ipsilateraler und binauraler Beschallung. |
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BOERGER, G. |
Interaurales Übersprechen bei der Katze. |
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BOERGER, G. |
Ein Kopfhalter für akustische Experimente im stereotaktischen Gerät. |
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KLINKE, R. |
Efferente Impulse im Nervus vestibularis bei Reizung des contralateralen Otolithenorgans. |
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BOERGER, G. |
Zulässiger Schalldruck bei binauraler Reizung ohne überschwelliges interaurales Übersprechen. |
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GRÜSSER, O.-J. |
Die Signalübertragung und die Signalverarbeitung durch Nervenzellen. |
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GIESEN, M. |
Die Richtcharakteristik primärer Afferenzen des Otolithenorgans bei intakter efferenter Innervation. |
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KLINKE, R. |
Studies on functional significance of efferent innervation in the auditory system: Afferent neuronal activity as influenced by contra laterally applied sound. |
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KLINKE, R. |
The alteration of afferent, tone-evoked activity of neurons of the cochlear nucleus, following acoustic stimulation of the contralateral ear. |
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KLINKE, R. |
Efferente Beeinflussung der Aktivität primärer Afferenzen des Nervus Vestibularis durch Reize am kontralateralen Labyrinth. |
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KLINKE, R.: |
Die funktionelle Bedeutung der efferenten Innervation im vestibulären und im akustischen System. |
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KLINKE, R. |
The influence of the frequency relation in dichotic stimulation upon the cochlear nucleus activity. |
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KLINKE, R. |
Efferent influence upon the receptor cells of the vestibular organ during active body movements. |
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KLINKE, R. |
Efferent influence on the vestibular organ during active movements of the body. |
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GRÜSSER, O.-J. |
Pattern recognition in biological and technical systems. |
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KLINKE, R.: |
Neurophysiological basis of hearing: Mechanisms of the inner ear. |
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KLINKE, R. |
Efferent innervation in the auditory system. |
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GALLEY, N. |
The effect of Flaxedil (Gallamine triethiodide) on the efferent endings in the cochlea. |
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KLINKE, R.: |
Einleitung zur Physiologie des Hörens, des Sprechens und des Gleichgewichtssinns. |
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KLINKE, R. |
Physiologie des Hörens I: Das mittlere und das innere Ohr. |
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GALLEY, N. |
Blocking of the efferent endings in the cochlea. |
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KLINKE, R. |
Tetanus toxin blocks the efferent endings in the cochlea. |
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KLINKE, R.: |
Physiologie des Hörens. |
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KLINKE, R.: |
Physiologie des Hörens. |
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GALLEY, N. |
Eserine enhances efferent inhibition of click evoked action potential of the cat's auditory nerve. |
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HARTMANN, R. |
Properties of afferent neurons of the goldfish horizontal semicircular canal under sinusoidal rotatory stimulation. |
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GALLEY, N. |
The effect of intracochlearly administered acetylcholine-blocking agents on the efferent synapses in the cochlea. |
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KLINKE, R. |
Efferent innervation of vestibular and auditory receptors (invited paper). |
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KLINKE, R. |
The effects of drugs on the sharpness of tuning of single cochlear nerve fibres. |
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EVANS, E.F. |
Reversible effects of cyanide and furosemide on the tuning of single cochlear nerve fibres. |
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OERTEL, W. |
Nikotin und Carbachol potenzieren die efferente Hemmung in der Cochlea. |
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HARTMANN, R. |
Group discharges of afferent fibres of the goldfish semicircular canal under high frequency sinusoidal motion. |
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KLINKE, R. |
Alpha-receptor blocking agents decrease cochlea potentials. |
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KLINKE, R. |
Transmitter physiology of cochlear synapses. |
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HARTMANN, R. |
System analysis of properties of primary vestibular fibres. |
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KLINKE, R.: |
Physiologie des Gleichgewichtssinns, des Hörens und des Sprechens. |
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PAUSE, M. |
Properties of single auditory fibres in the caiman (Caiman crocodilus). |
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HARTMANN, R. |
A method for measuring the angle of rotation (movements of body, head, eye in human subjectsand experimental animals). |
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PAUSE, M. |
Further investigation of properties of primary auditory fibres in the caiman. |
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KLINKE, R.: |
Physiologie de Gleichgewichtssinns, des Hörens und des Sprechens. |
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KLINKE, R.: |
Physiologie des Hörens. |
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GÖTTL, K.H. |
Susceptibility of positive- and negativegoing portion of cochlear microphonic to anoxemia. |
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KLINKE, R. |
Evidence that GABA is not the afferent transmitter in the cochlea. |
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KLINKE, R. |
Evidence that catecholamines are not the afferent transmitter in the cochlea. |
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KLINKE, R. |
The performance of a primitive hearing organ of the cochlea type: primary fibre studies in the caiman. |
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KLINKE, R. |
Effect of temperature shift on tuning properties. |
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HARTMANN, R. |
System analysis of properties of primary afferent vestibular fibres from the horizontal semicircular canal in goldfish. |
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KLINKE, R.: |
Physiologie des Gleichgewichtssinns, des Hörens und des Sprechens. |
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KLINKE, R.: |
Physiologie des Hörens. |
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KLINKE, R. |
Evidence that 5-HT is not the afferent transmitter in the cochlea. |
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KLINKE, R. |
Amino acids - putative afferent transmitter in the cochlea? |
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SMOLDERS, J. |
Effect of temperature changes on tuning properties of primary auditory fibres in caiman and cat. |
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EMDE, C. |
Does absolute pitch depend on an internal clock? |
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GÖTTL, K.H. |
Differential susceptibility of positive- and negative-going portion of cochlear microphonics to anoxia. |
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SMOLDERS, J. |
Effect of temperature on tuning properties of primary auditory fibres in caiman and cat. |
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EMDE, C. |
Does absolute pitch depend on an internal clock. |
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FENGLER, R. |
Revese correlation in primary auditory fibres of the caiman. |
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KLINKE, R.: |
Physiology of Hearing: Physiology of the sense of equilibrium. |
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KLINKE, R.: |
Frequency analysis in the inner ear of mammals in comparison to other vertebrates. |
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KLINKE, R.: |
Die Hörprothese - Wunsch oder Wirklichkeit |
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KLINKE, R. |
Physiologische Grundlagen einer Hörprothese. |
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KLINKE, R.: |
Der Einfluß ototoxischer Pharmaka auf das Gehör. |
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KLINKE, R.: |
Basic mechanisms of auditory processing in the cochlea. |
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KLINKE, R.: |
Comparative Physiology of primary auditory neurones. |
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KLINKE, R. |
Discharge properties of primary auditory fibres in caiman crocodilus: Comparison and contrasts to the mammalian auditory nerve. |
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SMOLDERS, J. |
Phase response versus best frequency in caiman auditory nerve discharges. |
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KLINKE, R.: |
Physiologie des Gleichgewichtssinns, des Hörens und des Sprechens. |
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KLINKE, R.: |
Physiologie des Hörens. |
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KLINKE, R.: |
Die Hörprothese - Wunsch oder Wirklichkeit. |
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HARTMANN, R. |
Discharge properties of afferent fibres of the goldfish semicircular canal with high frequency stimulation. |
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HARTMANN, R. |
Efferent activity in the goldfish vestibular nerve and its influence on afferent activity. |
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CAIRD, D. |
Interaural attenuation in the cat measured with single fibre data. |
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KLINKE, R.: |
Fisiologia da audicao, Fisiologia do sentido do equilibrio. |
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KLINKE, R.: |
Physiology of Hearing. Physiology of the sense of equilibrium. |
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SMOLDERS, J. |
Phase versus frequency in caiman primary auditory fibres: Is there a travelling wave? |
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KLINKE, R. |
Ototoxic side effects of diuretics. |
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KLINKE, R. |
Testing strategy for ototoxic side effects. |
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KLINKE, R.: |
Das Ohr - eine Schallquelle. |
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KLINKE, R.: |
Neurotransmitters in the cochlea and the cochlear nucleus. |
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KLINKE, R. |
Auditory prosthesis: Basic physiology. |
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STRACK, G. |
Evoked cochlear responses in Caiman crocodilus. |
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SMOLDERS, J. |
Quantitative investigation of temperature effects in primary auditory fibres of Caiman crocodilus. |
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HARTMANN, R. |
Comparison of auditory single fibre responses during acoustic and electrical stimulation of the intact cat cochlea. |
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CAIRD, D. |
Binaural time coding in the cat superior olive. |
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SMOLDERS, J. |
Mechanical frequency analysis in the cochlear duct of Caiman crocodilus. |
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TOPP, G. |
Cochlear prosthesis: Activity of single auditory fibres with electrical stimulation of the cat cochlea. |
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SCHERMULY, L. |
Tuning properties of pigeon primary auditory afferents depend on temperature. |
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EVANS, E.F. |
The effects of intracochlear cyanide and tetrodotoxin on the properties of single cochlear nerve fibres in the cat. |
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EVANS, E.F. |
The effects of intracochlear and systemic Furosemide on the properties of single cochlear nerve fibres in the cat. |
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KLINKE, R.: |
Physiology of the sense of equilibrium, hearing and speech. |
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HARTMANN, R. |
Activity of single auditory fibres evoked by electrical stimulation of the cochlea. |
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SCHERMULY, L. |
Little ototoxic effect of Furosemide on the pigeon inner ear. |
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KLINKE, R. |
Ototoxic side effects of loop diuretics: Furosemide, Piretanide, Bumetanide, Azosemide and Ozolinone in the cat. |
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KLINKE, R. |
Hearing. |
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CAIRD, D. |
Cat superior olivary complex (SOC): The basis of binaural information processing. |
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KLINKE, R.: |
Fisiologia del senso dell'equilibrio, dell'udito e della parola. |
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HARTMANN, R. |
Comparison of activity of single auditory afferents with acoustical and electrical stimulation of the cochlea. |
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KLINKE, R.: |
Hearing in reptiles and birds. |
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CAIRD, D. |
Field potentials (AFPs) in the acending auditory pathway and the brain-stem evoked potential (BSEP) during dichotic stimulation. |
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CAIRD, D. |
Processing of binaural stimuli by cat superior olivary complex neurons. Exp. Brain Res. 52, 385-399 (1983) |
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HARTMANN, R. |
Animal experiments on effects of electrical stimulation on the auditory nerve. |
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GUMMER, A.W. |
Influence of temperature on primary-like units in the guinea pig cochlear nucleus. |
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HARTMANN, R. |
Acoustic simulation of single channel and multichannel auditory prostheses. |
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HARTMANN, R. |
Electrical stimulation of the cat cochlea - discharge pattern of single auditory fibres. |
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HARTMANN, R. |
Discharge patterns of primary auditory fibres with electrical stimulation of the cochlea. |
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KLINKE, R. |
Hearing mechanisms in caiman and pigeon. |
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GUMMER, A.W. |
Mechanical vibration in the pigeon ear. |
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CAIRD, D. |
Aspects of binaural coding in cat inferior colliculus (IC). |
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TOPP, G. |
Comparison of single fibre responses with acoustical and electrical stimulation of the cochlea. |
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SMOLDERS, J. |
Effects of temperature on the properties of primary auditory fibres of the spectacled caiman, caiman crocodilus L. |
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HARTMANN, R. |
Elektrostimulation des Innenohres, Vergleich der Impulsmuster bei akustischer und elektrischer Reizung. |
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CAIRD, D. |
High frequency binaural cells in the cat inferior colliculus (IC). |
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KLINKE, R.: |
„Hören“ für Gehörlose. |
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KLINKE, R.: |
Fiziologija slucha. Fiziologija cuvstva ravnovesija. |
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KLINKE, R.: |
Physiologie des Gleichgewichtssinns, des Hörens und des Sprechens. |
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SCHERMULY, L. |
Change of characteristic frequency of pigeon primary auditory afferents with temperature. |
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KLINKE, R.: |
Functions of the inner ear - present concepts. |
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GUMMER, A.W. |
The mechanics of frequency tuning in the pigeon ear. |
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CAIRD, D. |
Binaural patterns in gerbil auditory cortex, visualised with 14C-deoxyglucose. |
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WILSON, J.P. |
Mechanics of the basilar membrane in caiman crocodilus. |
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CAIRD, D. |
Intra- and extracranially recorded auditory evoked potentials in the cat. I. Source location and binaural interaction. |
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SONTHEIMER, D. |
Intra- and extracranially recorded auditory evoked potentials in the cat. II. Effects of interaural time and intensity differences. |
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GÖTTL, K.H. |
Quantitative evaluation of ototoxic side effects of furosemide, piretanide, bumetanide, azosemide and ozolinone in the cat. A new approach to the problem of ototoxicity. |
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KLINKE, R.: |
Fiziologija slucha, reci i curstva ravnovesija. |
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KLINKE, R.: |
Physiologie des Hörens, Physiologie des Gleichgewichtssinns. |
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CAIRD, D. |
Deoxyglucose uptake in gerbil auditory cortex. |
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GUMMER, A.W. |
The mechanics of the basilar membrane and middle ear in the pigeon. |
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SMOLDERS, J. |
Travelling wave motion along the pigeon basilar membrane. |
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KLINKE, R. |
Inner ear mechanics of the crocodilian and avian basilar papillae in comparison to neuronal data. |
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KLINKE, R.: |
Neurotransmission in the inner ear. |
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KLINKE, R.: |
Ohren für Gehörlose. |
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KLINKE, R.: |
Hörprothesen - ein Schritt aus der Isolation? |
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KLINKE, R.: |
Physiology of Hearing, Physiology of the Sense of Equilibrium. |
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KLINKE, R.: |
Deutschland - ein Pionier der Weltraummedizin. |
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SMOLDERS, J. |
Synchronized responses of primary auditory fibre populations in Caiman crocodilus (L) to single tones and clicks. |
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SMOLDERS, J. |
Basilar membrane tuning in the pigeon ear. |
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KLINKE, R.: |
Der Wahrnehmungsapparat. |
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KLINKE, R. |
Neurophysiologische Grundlagen einer Hörprothese. |
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HARTMANN, R. |
Elektrostimulation des Hörnerven durch Ein- und Mehrkanal-Innenohrimplantate. |
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HARTMANN, R. |
Single fiber recordings from the cat auditory nerve with electrical stimulation of the cochlea at different places. |
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KLINKE, R. |
Supporting cells of the caiman inner ear contain contractile proteins. |
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GUMMER, A.W. |
Physiology of the avian basilar membrane. |
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HARTMANN, R. |
Impulse pattern of the auditory nerve during electrical stimulation of the cochlea at different locations. |
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KLINKE, R. |
Effects of the loop diuretic Torasemide on inner ear function. |
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SCHERMULY, L. |
Infrasound receptors in the pigeon inner ear. |
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SMOLDERS, J. |
Compound action potential frequency threshold curves in pigeon and cat. |
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KLINKE, R.: |
Die Verarbeitung von Schallreizen im Innenohr: Eine Übersicht über neuere Forschungsergebnisse. |
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HARTMANN, R. |
Bau- und Wirkungsprinzip elektronischer Hörhilfen (Cochlea-Implantate) für Gehörlose. |
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CAIRD, D.M. |
The effect of inferior colliculus lesions on auditory evoked potentials. Electroencephal. |
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SMOLDERS, J.W. |
Mechanics of the bird ear. |
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CAIRD, D.M. |
Binaural masking level differences in cat inferior colliculus. |
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GUMMER, A.W. |
Basilar membrane motion in the pigeon, measured with the Mössbauer technique. |
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KLINKE, R.: |
Wort und Klang kommen wieder an. |
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CAIRD, D.M. |
Processing of interaural time and intensity differences in the cat inferior colliculus. |
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HARTMANN, R. |
Impulsmuster des Hörnerven bei akustischer und elektrischer Stimulation. |
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KLINKE, R.: |
Funktion des Innenohres - Neue Konzepte. |
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KLINKE, R.: |
Physiologische Grundlagen des Hörvorganges. |
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HARTMANN, R. |
Impulse pattern in auditory nerve fibres to extra- and intracochlear electrical stimulation. |
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MOORE, E.J. |
Effects of intracochlear infusion of TTX and GDEE on brain-stem auditory evoked potentials. |
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KLINKE, R. |
Quantitative assessment of Torasemide ototoxicity. |
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SCHERMULY, L. |
Single fibre staining of infrasound-sensitive neurones in the pigeon inner ear. |
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KLINKE, R. |
Beeinflußt ein intracochleäres exzitatorisches postsynaptisches Potential die Hirnstammpotentiale? |
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SMOLDERS, J. |
Cochlear potentials and auditory evoked potentials in the caiman (caiman crocodilus L). |
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KLINKE, R.: |
Physiologische Grundlagen eines Cochlea-Implantats. |
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GUMMER, A.W. |
Determinants of high-frequency sensitivity in the bird. |
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KLINKE, R. |
Neurophysiological properties of infrasound sensitive neurones in the pigeon cochlea. |
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KLINKE, R. |
The importance of endocochlear potential (EP) for afferent activity in the auditory nerve. |
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GUMMER, A.W. |
Mechanics of a single-ossicle ear:I. The extrastapedius of the pigeon. |
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GUMMER, A.W. |
Mechanics of a single-ossicle ear: II. The columella footplate of the pigeon. |
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GITTER, A.H. |
Die Energieschwellen von Auge und Ohr in heutiger Sicht. |
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ZIMMERMANN, U. |
Isolation and short-term culture of pigeon hair cells. |
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VOSSIECK, Th. |
Alteration of endocochlear potential changes afferent activity in the auditory nerve. |
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HARNISCH, Ch. |
Die Aktivierbarkeit von Einzelfasern des Hörnerven durch verschiedenartige Elektrodensysteme. |
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VOSSIECK, Th. |
Altering the endocochlear potential (EP) influences afferent auditory activity. |
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CAIRD, D.M. |
Responses of single cells in the cat inferior colliculus to binaural masking level difference signals. |
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KLINKE, R.: |
Hörvermögen und Gleichgewichtsorgan beim alternden Menschen: Physiologische Grundlagen |
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KLINKE, R.: |
Information transfer in hearing. |
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HARTMANN, R. |
Response characteristics of nerve fibres to patterned electrical stimulation. |
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HARTMANN, R. |
Impulse patterns of auditory nerve fibres to extra- and intracochlear electrical stimulation. |
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SMOLDERS, J.W. |
Cochlear potentials and auditory evoked potentials in the caiman (caiman crocodilus L). |
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SCHERMULY, L. |
Infrasound sensitive neurones in the pigeon cochlear ganglion. |
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KLINKE, R.: |
Gehörlosigkeit - angeboren oder anerzogen? |
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KLINKE, R.: |
Hörentwicklung beim Kleinkind. |
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SCHERMULY, L. |
Origin of infrasound sensitive neurones in the papilla basilaris of the pigeon - an HRP study. |
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VOSSIECK, Th. |
A method for changing the avian endocochlear potential (EP) by current injection. |
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SMOLDERS, J.W. |
Gradients of functional properties of hair cells on the basilar membrane of the pigeon. |
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SCHERMULY, L. |
A previously undescribed hair cell epithelium in the pigeon cochlea, the papilla chaotica. |
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DING, D. |
Frequency mapping on the basilar membrane of the pigeon. |
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KLINKE, R.: |
Properties of the auditory nerve fibres. |
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SCHERMULY, L. |
Furosemide has no effect on endocochlear potential and tuning properties of primary afferent fibres in the pigeon inner ear. |
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KLINKE, R. |
Variation of the endocochlear potential changes afferent activity in the pigeon auditory nerve. |
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CAIRD, D. |
Functional organization of auditory cortical fields in the mongolian gerbil (Meriones unguiculatus): Binaural 2-deoxyglucose patterns. |
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DRENCKHAHN, D. |
Actin, myosin and alpha-actinin containing filament bundles in hyaline cells of caiman cochlea. |
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SCHERMULY, L. |
A previously unknown hair cell epithelium in the pigeon cochlea: The papilla chaotica. |
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DING, D. |
Primary auditory fibres innervating short and intermediate hair cells in the pigeon ear are responsive to sound. |
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DING, D. |
Primary auditory afferents in pigeon originating from short and intermediate hair cells show sensitive tuned responses to sound. |
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VOSSIECK, Th. |
Effects of endocochlear potential shifts on cochlear microphonic in pigeon. |
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SCHERMULY, L. |
Peri-stimulus suppression and post-stimulus ringing in tuned and untuned fibres of the pigeon auditory nerve. |
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RICHTER, C.P. |
The effect of high concentration sodium and potassium solutions in the scala media on pigeon primary afferents. |
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KLINKE, R.: |
Physiology of the avian inner ear. |
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KLINKE, R.: |
Avian hearing mechanisms and performance from infrasound to mid-frequency range. |
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VOSSIECK, Th. |
The influence of DC-polarization of the endocochlear potential on single fibre activity in the pigeon cochlear nerve. |
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VOSSIECK, Th. |
Die Bedeutung des endocochleären Potentials für die Umsetzung des Schallreizes im Innenohr. |
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HARTMANN, R. |
Impulsmuster im Nervus acusticus bei sprachcodierter elektrischer Stimulation der Cochlea. |
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SMOLDERS, J. |
Normal tuning curves from primary afferent fibres innervating short and intermediate hair cells in the pigeon ear. |
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KLINKE, R. |
Afferent fibres from avian short hair cells do respond to sound stimuli. |
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RICHTER, C.-P. |
Time structure in spike trains of pigeon auditory neurones with pink noise stimulation. |
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DAUBITZ, E. |
Effects of 4-aminopyridin (4-AP) and caesium (Cs) applied into the scala media on single fibre activities in the pigeon cochlear ganglion. |
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KLINKE, R.: |
Thermal effects on the vestibular hair cell synapse have to be considered for the explanation of caloric nystagmus. |
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KLINKE, R. |
Biomedizinische Forschung im Würgegriff. |
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KLINKE, R. |
Frühe Veränderungen des Transduktionsprozessen nach intracochleärer Gabe von Streptomycin. |
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KLINKE, R.: |
Das Hörorgan des Vogels. |
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KLINKE, R. |
Performance of the avian inner ear. |
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KLINKE, R.: |
Temporal processing in the auditory system: Overview and critique. |
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KLINKE, R.: |
Neuere Entwicklungen in der Hörphysiologie. |
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TÖNDER, N. |
Sprachkodierung für Mehrkanal-Hörprothesen auf dem DSP32C-Signalprozessor. |
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KLINKE, R. |
Evoked preferred intervals in pigeon. |
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DIELER, R. |
The fine structure of pigeon auditory hair cells is altered by salicylate application. |
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|
RICHTER, C.-P. |
The effects of TEA and CS on filter properties in pigeon auditory single fibres. |
|
|
SHEHATA-DIELER, W.E. |
Endolymphatic and perilymphatic application of salicylate affects CAP and single fiber threshold in the pigeon. |
|
|
KLINKE, R.: |
Die Physiologie des Innenohrs in heutiger Sicht. |
|
|
KLINKE, R. |
Evozierte Potentiale vom auditorischen Cortex der Katze bei elektrischer Reizung der Cochlea. |
|
|
HEYNERT, S. |
Effects of amiloride on the mechano-electrical transduction process in the inner ear of pigeon. |
|
|
RICHTER, C.-P. |
Non-linearities in neuronal I/O-functions of pigeon auditory nerve fibres. |
|
|
KLINKE, R.: |
Gleichgewichtssinn, Hören, Sprechen. |
|
|
KLINKE, R. |
Auditory single fibre responses with compressed analogue/pulsatile coding in cochlear implants. |
|
|
KLINKE, R. |
Preferred intervals in birds and mammals, a filter response to noise? |
|
|
KNAUTH, M. |
Discharge pattern in the auditory nerve evoked by vowel stimuli: A comparison between acoustical and electrical stimulation. |
|
|
KEPPLER, C. |
The course and morphology of efferent nerve fibres in the papilla basilaris of the pigeon (Columba livia). |
|
|
RICHTER, C.-P. |
Artifact-free application of drugs into the avian endolymphatic space. |
|
|
RICHTER, C.-P. |
Rate-intensity-fuctions of pigeon auditory primary afferents obtained from stimulation at, below and above characteristic frequencies. |
|
|
KLINKE, R. |
Compressed analogue/pulsatile coding in multi-channel cochlear-implants: Single fibre responses. |
|
|
KLINKE, R.: |
Physiologie des Innenohres in heutiger Sicht. |
|
|
HARTMANN, R. |
Evoked potentials from the auditory nerve following sinusoidal electrical stimulation of the cochlea: New possibilities for preoperative testing in cochlear implant patients? |
|
|
PFENNIGDORFF, T. |
Elektrisch evozierte Potentiale vom Hörnerv: Eine präoperative Testmethode für Cochleaimplantationen. |
|
|
SHEHATA-DIELER, W. |
Effects of endolymphatic and perilymphatic application of salicylate in the pigeon. I. Single fiber activity and cochlear potentials. |
|
|
DIELER, R. |
Effects of endolymphatic and perilymphatic application of salicylate in the pigeon. II. Fine structure of auditory hair cells. |
|
|
KLINKE, R. |
Lehrbuch der Physiologie. |
|
|
KLINKE, R.: |
Erregungsübertragung in Zellverbänden; Bauelemente des Nervensystems; Empfindungen – Wahrnehmungen. |
|
|
RICHTER, C.-P. |
In vivo effects of streptomycine and amiloride on the mechano-electrical transduction in pigeon auditory hair cells. |
|
|
ALI-KHAN, S. |
Functional recovery from hair cell distruction in adult pigeon. |
|
|
KLINKE, R.: |
Physiologie auditorischer Verarbeitungsprozesse im ZNS. |
|
|
KLINKE, R. |
Time course of recovery from acoustic trauma or Kanamycine treatment in adult pigeons. |
|
|
RICHTER, C.-P. |
Histological and physiological effects of an increased calcium concentration in pigeon's scala media. |
|
|
KLINKE, R. |
Evoked responses in the auditory cortex of congenitally deaf white cat following electrical stimulation of the cochlea. |
|
|
RICHTER, C.-P. |
Effects of an increased calcium concentration in pigeon's scala media on cochlear function. |
|
|
KLUGE, M. |
Activity in primary auditory afferents: Is there a correlation? |
|
|
SAUER, G. |
Concentrations of potassium, sodium and chloride in pigeon's scala media and scala tympani. |
|
|
RICHTER, C.-P. |
Rate intensity functions of pigeon auditory afferents. |
|
|
KLUGE, M. |
Correlation of activity between avian auditory nerve fibres recorded simultaneously. |
|
|
RICHTER, C.-P. |
Maturation of fundamental activity patterns of pigeon auditory nerve fibres. |
|
|
MÜLLER, M. |
Frequency maps, frequency tuning and the travelling wave. |
|
|
DING-PFENNIGDORFF, D. |
Degeneration and regeneration of hair cells in the adult pigeon following the application of ototoxic drugs: A SEM study. |
|
|
HEID, S. |
Degeneration of the spiral ganglion in the deaf white cat. |
|
|
TILLEIN, J. |
Electrical Stimulation of nerve cells in brain slices: A model for multi-channel-auditory prosthesis. |
|
|
KLINKE, R. |
Evozierte Potentiale vom auditorischen Cortex kongenital tauber weißer Katzen nach elektrischer Reizung der Cochlea. |
|
|
SHEPHERD, R. |
The auditory cortex and auditory deprivation: Experience with cochlear implants in the congenitally deaf. |
|
|
KLINKE, R.: |
Der Gleichgewichtssinn. |
|
|
KLINKE, R.: |
Hören und Sprechen. In: Physiologie des Menschen (R.F. Schmidt, G. Thews, Hrsg.), 26. Aufl., Springer 258-277 (1995) |
|
|
HARTMANN, R. |
Spatial and temporal resolution in multi-channel cochlear implants. |
|
|
POPELAR, J. |
Middle latency responses to acoustical and electrical stimulation of the cochlea in cats. |
|
|
SMOLDERS, J.W.T. |
A functional map of the pigeon basilar papilla: Correlation of the properties of single auditory nerve fibres and their peripheral origin. |
|
|
KLINKE, R.: |
Brauchen wir Forschung? |
|
|
KLINKE, R.: |
Das Hören als zentralnervöser Verarbeitungsprozeß. |
|
|
HARTMANN, R. |
Neuronal activity in the auditory cortex and inferior colliculus of congenitally deaf white cats evoked by electrical cochlear stimulation. |
|
|
HEID, S. |
Projections from cochlear nucleus to inferior colliculus in connatally deaf white cat. |
|
|
RICHTER, C.-P. |
Pigeon endocochlear potential explained by peri- and endolymphatic potassium, sodium chloride and calcium concentrations. |
|
|
MÜLLER, M. |
Discharge properties of pigeon single auditory nerve fibres after recovery from severe acoustic trauma. |
|
|
SAUER, G. |
Concentrations of Na+, K+, Ca++ and Cl- in the pigeon inner ear and the permeabilities of the endolymph-periplymph barrier. |
|
|
KLUGE, M. |
Spontaneous activities of avian auditory nerve fibres modelled by a hidden Markov model. |
|
|
RICHTER, C.-P. |
Effects of streptomycin and amiloride on the function of the pigeon inner ear. |
|
|
SAUER, G. |
Einfluß der Ionenverteilung auf das endocochleäre Potential des Vogels. |
|
|
MOSS, F. |
Will there be noise in their ears? (by invitation) |
|
|
TÖNDER, N. |
Sprachkodierung für Mehrkanal-Hörprothesen auf dem DSP32C-Signalprozessor. |
|
|
KLINKE, R. |
Lehrbuch der Physiologie |
|
|
KLINKE, R.: |
Erregungsübertragung in Zellverbänden; Bauelemente des Nervensystems; Hören und Sprechen: Kommunikation des Menschen; Empfindungen - Wahrnehmungen; Das Vestibularorgan. |
|
|
KLINKE, R.: |
Physiologische Grundlagen des Cochlea-Implantats. (auf Einladung) |
|
|
MÜLLER, M. |
Regeneration after tall hair cell damage following severe acoustic trauma in adult pigeons: Correlation between cochlear morphology, compound action potential responses and single fiber properties in single animals. |
|
|
MÜLLER, M.: |
The cochlear place-frequency map of the adult and developing mongolian gerbil. |
|
|
RICHTER, C.-P. |
Pigeon spontaneous and evoked activities - a renewal process? |
|
|
SMOLDERS, J.W.T. |
Discharge properties of pigeon auditory nerve fibres following severe sound-induced tall hair cell loss and regeneration. |
|
|
TILLEIN, J. |
Spatial resolution of multi-channel auditory prostheses tested with rat brain slices. |
|
|
HARTMANN, R. |
Neuronal activity in the auditory cortex and inferior colliculus of congenitally deaf white cats evoked by electrical cochlear stimulation. |
|
|
HEID, S. |
Quantitative analysis of projections from cochlear nucleus to inferior colliculus in connatally deaf white cats by means of retrograde transport of a fluorescent tracer. |
|
|
MAUß, O. |
Automaticed signal detection for determination of auditory thresholds. |
|
|
RICHTER, C.-P. |
Development of activity patterns in auditory nerve fibres of pigeons. |
|
|
HARTMANN, R. |
Synaptic activity in the adutiroy cortex of deaf white cats as evaluated by current source density. |
|
|
SCHELLER, J. |
Properties of pigeon auditory nerve fibers with high characteristic frequencies determined from the intracranial portion of the auditory nerve. |
|
|
BEHRENDT, M. |
Acoustically evoked behavior in a connatally deaf white cat, provided with a cochlear implant - a model for connatally deafness in infants. |
|
|
FRITZSCH, C. |
Responses in the auditory cortex of the deaf white cat evoked by electrical stimulation of the cochlea. |
|
|
KRAL, A. |
Potential Distribution in the scala tympani with cochlear implant stimulation. |
|
|
MÜLLER, M. |
Hearing in a MPV17 mutant mouse strain. |
|
|
JOEKEN, S. |
Modelling stochastic spike train responses of neurons: an extended Wiener series analysis of pigeon auditory nerve fibers. |
|
|
KLINKE, R. |
Wider eine Welt ohne Worte. |
|
|
SCHELLER, J. |
High frequency hearing in the pigeon: Single unit recordings from the brain stem compared to ganglion cell recordings. |
|
|
DING-PFENNIGDORFF, D. |
Idetification of the hair cell regeneration in the pigeon cochlea following a severe acoustical stimulation. |
|
|
MÜLLER, M. |
Loss of auditory function in MPV17 deficient mice. |
|
|
KRAL, A. |
Spatial resolution of the NUCLEUS-22 cochlear implant. |
|
|
TILLEIN, J. |
The efficiency of electrical stimulation of multi-channel electrodes tested with cortical brain slices. |
|
|
FRITZSCH, C. |
Electrical stimulation of the cochlea evokes place dependent responses in the auditory cortex of the deaf white cat. |
|
|
HEID, S. |
Morphological changes in the auditory brain stem in connatally deaf white cats. |
|
|
BEHRENDT, M. |
Cochlear implants in connatally deaf white cats, a behavioural study. |
|
|
SARKAR, B. |
Thresholds of intracranially recorded auditory field potentials in the pigeon compared with CAP thresholds. |
|
|
MÜLLER, M. |
Discharge properties of pigeon single auditory nerve fibers after recovery from severe acoustic trauma. |
|
|
MEYER z. GOTTESBERGE, A.M. |
Time sequence of cochlear degeneration of the Mpv17 transgenic mice strain. |
|
|
MEYER z. GOTTESBERGE, A.M. |
Mutation of the Mpv17 gene leads to inner ear pathology similar to the alport's syndrome in Mpv17-transgenic mice. |
|
|
KLINKE, R. |
Behavioural responses and cortical activity to electrical cochlear stimulation in the deaf white cat. |
|
|
HEID, S. |
Afferent projection patterns in the auditory brain stem in normal and congenitally deaf white cats. |
|
|
HARTMANN, R. |
Response of the primary auditory cortex to electrical stimulation of the auditory nerve in the congenitally deaf white cat. |
|
|
HARTMANN, R. |
Functional organization of the auditory cortex in the congenitally deaf white cat. (by invitation) |
|
|
KLINKE, R. |
Basic neurophysiology of cochlear implants. (by invitation) |
|
|
MÜLLER, M. |
Frequenzabbildung und Frequenzselektivität in der Cochlea von Säugern und Vögeln. |
|
|
KLINKE, R.: |
Hören als zentralnervöser Verarbeitungsprozeß |
|
|
KLINKE, R. |
Grundlagen für eine dritte Generation von Cochlea-Implantaten: Die Erfordernisse von Seiten des Nervensystems und die biotechnischen Voraussetzungen. |
|
|
MÜLLER, M. |
Loss of auditory function in transgenic Mpv17-deficient mice. |
|
|
SHEPHERD, R.K. |
The central auditory system and auditory deprivation: Experience with cochlear implants in the congenitally deaf. |
|
|
HARTMANN, R. |
Activity in the cortex of deaf white cats evoked by cochlear implants. (by invitation) |
|
|
HEID, S. |
Changes on cell sizes in the auditory brain stem nuclei in connatally deaf white cats. |
|
|
EDGE, R. |
Morphological development of the gerbil inner ear. |
|
|
SUDAVICIUS, T. |
Hearing loss induced by coadministration of kanamycin and ethacrynic adic: Dose response curves in the guinea pig. |
|
|
DING-PFENNIGDORFF, D. |
Pattern of hair cell loss and regeneration after severe acoustic overstimulation in the pigeon. |
|
|
MÜLLER, M. |
Hair cell regeneration after local application of a single dose of gentamicin at the round window of the cochlea in the pigeon. |
|
|
RICHTER, C.-P. |
Basilar membrane micro-mechanics measured in the gerbil inner ear. |
|
|
RICHTER, C.-P. |
Are inner hair cell stereocilia attached to Henson’s stripe? |
|
|
KLINKE, R. |
Chronic cochlear implantation in the deaf white cat. |
|
|
FELIX, H. |
Sequence of neuronal degeneration in trasgenic Mpv17-deficient mice. |
|
|
HARTMANN, R. |
Electrophysiological and behavioural studies in congenitally deaf white cats. |
|
|
KRAL, A. |
Spatial separation of excitation with monopolar, bipolar and tripolar electrical cochlear stimulation. |
|
|
MÜLLER, M. |
Hearing loss and hair cell regeneration in the pigeon after a single dose of gentamycin at the round window. |
|
|
TILLEIN, J. |
Influence of currents on the acoustically evoked responses in the auditory nerve of normal cats. |
|
|
SUDAVICIUS, T. |
Dose response curves of hearing loss in the guinea pig following intravenous coadministration of kanamycin and ethacrynic acid. |
|
|
SMOLDERS, J. |
Response properties of pigeon auditory nerve fibres innervating regenerated hair cells. |
|
|
KLINKE, R. |
Die Kanaltrennung bei Cochlea-Implantaten unter monopolarer, bipolarer und tripolarer Reizung. |
|
|
WINTER, K.-F. |
A stimulator with wireless power and signal transmission for implantation in animal experimentation and other applications. |
|
|
HEID, S. |
A model for prelingual deafness, the congenitally deaf white cat. Population statistics and degenerative changes. |
|
|
TÖNDER, N. |
A versatile system for the generation and the development of speech coding strategies in cochlear implants. |
|
|
RICHTER, C.-P. |
Basilar membrane vibration in the gerbil hemicochlea. |
|
|
MÜLLER, M. |
Hair cell regeneration after local application of gentamicin at the round window of the cochlea in the pigeon. |
|
|
MÜLLER, M. |
Functional recovery of pigeon primary auditory neurons following gentamicin-induced hair cell loss and regeneration is incomplete. |
|
|
DING-PFENNIGDORFF, D. |
Hair cell loss and regeneration after severe acoustic overstimulation in the adult pigeon. |
|
|
KRAL, A. |
Spatial resolution of cochlear implants: The electrical field and excitation of auditory afferents. |
|
|
KLINKE, R.: |
Hören lernen: Es geht nicht ohne frühkindliche Erfahrungen. |
|
|
EDGE, R.M. |
Morphology of the unfixed cochlea. |
|
|
KLINKE, R.: |
Hören lernen: Die Notwendigkeit frühkindlicher Hörerfahrungen. |
|
|
KRAL, A. |
Cochlear implantation in the connatally deaf cat leads to functional maturation of the auditory cortex. |
|
|
RENG, D. |
Glutamate receptor subunits and ototoxicity of AMPA in the pigeon inner ear. |
|
|
KLINKE, R. |
Maturation of neuronal function in the auditory cortex following chronic cochlear implantation in congenitally deaf cats. |
|
|
HOIDIS, S. |
Ongoing degeneration of auditory ganglion cells after regeneration from severe acoustic trauma in the pigeon. |
|
|
KRAL, A. |
Synaptic activity in the auditory cortex of congenitally deaf cats and its maturation by chronic electrical stimulation. |
|
|
KRAL, A. |
Cortical Reorganization induced by cochlear implantation in congenitally deaf cats. |
|
|
RENG, D. |
Functional recovery of hearing after damage to the hair cell-neural synapses in the pigeon. |
|
|
SMOLDERS, J. |
The upper frequency range in pegeon hearing: Response properties in auditory nerve and cochlear nucleus – is tuning different in birds? |
|
|
KRAL, A. |
Monitoring of anaesthesia in neurophysiological experiments. |
|
|
WURTH, N. |
Morphology of neurons in the primary auditory cortex (AI) in normal and congenitally deaf white cats – study of DiI labelled cells. |
|
|
HARTMANN, R. |
Cochlear implantation in deaf cats: Effects on cortical synaptic activity. |
|
|
KRAL, A. |
Control of anaesthesia in neurophysiological experiments in animals. |
|
|
RENG, D. |
AMPA receptor sub-units and ototoxicity of AMPA in the pigeon inner ear. |
|
|
HOIDIS, S. |
Degeneration of auditory ganglion cells continues despite regeneration from sound induced hair cell loss in the pigeon. |
|
|
TILLEIN, J. |
Extracochlear chronical electrical stimulation of the normal hearing guinea pig. |
|
|
v. ILBERG, C. |
Electric-acoustic-stimulation (EAS) of the auditory system: New Technology for severe hearing loss. |
|
|
SAUER, G. |
Sodium, potasium, chloride and calcium concentrations, measured in pigeons perilymph and endolymph. |
|
|
KLINKE, R.: |
Hören ist möglich – zur Bedeutung des Hörens für die kindliche Gesamtentwicklung. |
|
|
MÜLLER, M. |
Responses of auditory nerve fibers innervating regenerated hair cells after local application of gentamicin at the round window of the cochlea in the pigeon. |
|
|
KLINKE, R.: |
Kinder durch Fluglärm beeinträchtigt. |
|
|
KRAL, A. |
Reifung der Hörrinde connatal gehörloser Katzen durch Cochlea Implantate. |
|
|
RENG, D. |
AMPA-type glutamate receptor subunits are expressed in the avian cochlear hair cells and ganglion cells. |
|
|
KLINKE, R. |
Fisiologia. |
|
|
KLINKE, R.: |
Hören lernen: Die Notwendigkeit frühkindlicher Hörerfahrungen |
|
|
SMOLDERS, J.: |
Functional recovery in the avian ear after hair cell regeneration |
|
|
KLINKE, R. |
Recruitment of auditory cortex in congenitally deaf cats by cochlear implantation. |
|
|
MÜLLER, M. |
Auditory nerve fiber responses to salicylate revisited. |
|
|
KRAL, A. |
Deficits in primary auditory cortex caused by congenital auditory deprivation. |
|
|
SUDAVICIUS, T. |
NT-3 reduces hearing loss following aminoglycoside ototoxicity in the guinea pig. |
|
|
FELIX, H. |
Degeneration pattern of the Mpv-17-negative mouse strain: Physiological and morphological correlation. |
|
|
HEID, S. |
Morphology of the cochlea and the spiral ganglion in cochlear-implanted congenitally deaf cats. |
|
|
TILLEIN, J. |
Extracochlear chronical electrical stimulation of the normal hearing guinea pig. |
|
|
THIERFELDER, C. |
fMRI in cochlear-implanted congenitally deaf cats. |
|
|
KLINKE, R. |
Lehrbuch der Physiologie. |
|
|
KRAL, A. |
Congenital auditory deprivation reduces synaptic activity within the auditory cortex in a layer-specific manner. |
|
|
KLINKE, R.: |
Sprache für gehörlose Kinder. |
|
|
KLINKE, R.: |
Gastkommentar “Kein Schlagwort sondern Realität”. |
|
|
GIRAUD, A.L. |
Functional reorganisation after cochlear implantation. |
|
|
JOHNSRUDE, I.S. |
Functional Imaging of the Auditory System: The Use of Positron Emission Tomography. |
|
|
GIRAUD, A.L. |
Differential recruitment of the speech comprehension system in healthy subjects and rehabilitated cochlear implant patients. |
|
|
GIRAUD, A.L. |
Representation of the temporal envelope in the human auditory cortex. |
|
|
GIRAUD, A.-L. |
Cochlear implant users activate visual areas when listening to sounds. |
|
|
GIRAUD, A.L. |
Réorganisation functionelle après implantation cochléaire. Etudes en tomographie par emission de positons. |
|
|
CHÉRY-CROZE, S. |
Evidence of a change in effectiveness of the efferent olivocochlear system in the presence of phantom auditory perception (tinnitus). |
|
|
KLINKE, R.: |
Ein Eiweißmotor im Innenohr. |
|
|
KRAL, A.: |
Temporal code and speech recognition. |
|
|
KLINKE, R.: |
Hörbar machen: Sprache für gehörlose Kinder |
|
|
KRAL, A. |
Active cortical Area shrinks with age in congenital auditory deprivation. |
|
|
KLINKE, R. |
Cochlear implants and the maturation of the auditory cortex in congenitally deaf cats. |
|
|
KIEFER, J. |
Fundamental aspects and clinical applications of combined electrical and acoustical stimulation of the auditory system (EAS) in humans. |
|
|
PFENNIGDORFF, T. |
Neuronal response patterns of the auditory nerve with electro-acoustical stimulation. |
|
|
TRUY, E. |
Functional reorganisation after cochlear implantation in deafened adults. |
|
|
JOHNSURDE, I.S. |
Functional imaging of the auditory system: The use of positron emission tomography. |
|
|
TILLEIN, J. |
Does extracochlear electrical stimulation interferes with auditory processing of a normal hearing cochlea? Results from acute and chronic animal experiments. |
|
|
KRAL, A. |
Efficiency of the cochlea implant stimulation: I. Placement in the cochlea. |
|
|
KRAL, A. |
Efficiency of the cochlea implant stimulation: I. Configuration of the stimulating electrodes. |
|
|
SMOLDERS, J.: |
Die Regenerationsfähigkeit der Cochlea. |
|
|
KLINKE, R.: |
Physiologie des Innenohres. |
|
|
RENG, D. |
Ototoxicity of AMPA in the pigeon inner ear. |
|
|
MENGER, N. |
Differences in susceptibility to noise induced hearing loss in four laboratory mouse strains. |
|
|
TILLEIN, J. |
Response patterns of cat single auditory nerve fibers to simultaneous electric acoustic stimulation. |
|
|
KRAL, A. |
Auditory developmental plasticity in cats: A sensitive period of 6 months. |
|
|
KRAL, A. |
A sensitive period in the development of cat auditory system. |
|
|
BRAUN, S. |
Postnatal development of GABA-immunopositive cells in auditory cortex of normal hearing and congenitally deaf cats. |
|
|
HARTMANN, R. |
Spontaneous and evoked activity in the auditory cortex: Telemetric recording from awake cats. |
|
|
HEID, S. |
Morphology of the auditory pathway in congenitally deaf white cats equipped with cochlear implants. |
|
|
BIEBEL, U.W. |
The mouse strain 129Sv is more resistant to acoustic injury than other mouse strains. |
|
|
GIRAUD A.L.: |
Étude des processus adaptatifs chez le sujet porteur d’un implant cochléaire. |
|
|
KRAL, A. |
Deprivation of auditory cortex and effects of chronic cochlear electrostimulation. |
|
|
RENG, D. |
Functional recovery of hearing following AMPA-induced reversible disruption of hair-cell-afferent synapses in the avian inner ear. |
|
|
KLINKE, R. |
Plastic changes in the auditory cortex of congenitally deaf cats following cochlear implantation. |
|
|
KRAL, A. |
Neurofyziologické predoklady vedomia. Neurophysiological preconditions of consciousness. |
|
|
VOLLMER, M. |
Auditory detection and discrimination in deaf cats: Psychophysical and neural thresholds for intracochlear electrical signals. |
|
|
KRAL, A. |
Delayed maturation and sensitive periods in the auditory cortex. |
|
|
KLINKE, R. |
Sprachanbahnung über elektronische Ohren – so früh wie möglich |
|
|
GIRAUD, A.L. |
Cross-modal plasticity underpins language recovery after cochlear implantation. |
|
|
GIRAUD, A.L. |
Functional plasticity of language-related brain areas after cochlear implantation. |
|
|
GIRAUD, A.L. |
The constraints functional neuroimaging places on classical models of auditory word processing. |
|
|
STERZER, P. |
Neural correlates of spontaneous direction reversals in ambiguous apparent visual-motion. |
|
|
GIRAUD, A.L. |
Imaging plasticity in cochlear implant patients. |
|
|
GIRAUD, A.L. |
Dissociating effort and success in speech comprehension: an fMRI study. |
|
|
KLINKE, R. |
Lehrbuch der Physiologie. |
|
|
KLINKE, R.: |
Erregungsübertragung in Zellverbänden; Bauelemente des Nervensystems; Hören und Sprechen: Kommunikation des Menschen; Gleichgewichts-, Lage- und Bewegungssinn; Empfindungen - Wahrnehmungen; Höhere Funktionen des Zentralnervensystems. |
|
|
THIERFELDER, C. |
Longitudinal fMRI studies in cochlear implanted congenitally deaf cats (CDCs). |
|
|
KRAL, A. |
No evidence for cross-modal reorganization of AI field in congenitally deaf cats. |
|
|
TILLEIN, J. |
Potential distribution and efficiency of electrical stimulation with multi-channel-electrodes in brain slices. |
|
|
BIEBEL, U.W. |
Thyroxine substitution rescues hearing in pax 8 mice lacking thyroid hormones. |
|
|
KRAL, A. |
Hearing after congenital deafness: Central auditory plasticity and sensory deprivation. |
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HARTMANN, R. |
Hearing with auditory prostheses (cochlear implants). |
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KLINKE, R. |
Responses of the auditory cortex to cochlear implantation in congenitally deaf cat. |
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KRAL, A. |
Sensitive period in the auditory cortex of congenitally deaf cats. |
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KRAL, A. |
Cortical auditory maturation in naive and cochlear-implanted congenitally deaf cats. |
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HARTMANN, R. |
Aktivierung der zentralen Hörbahn durch Cochlea-Implantate. |
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BIEBEL, U. |
Evidence for interactions across frequency channels in the inferior colliculus of awake chinchilla. |
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JOHNSRUDE, I.S. |
The use of positron emission tomography to image function in the auditory system. |
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GIRAUD, A.L. |
The contribution of visual areas in speech comprehension: A PET study in cochlear implants patients and normal-hearing subjects. |
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HARTMANN, R. |
Ototoxic side-effects of the IKs-channel blocker HMR1556. |
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KRAL, A. |
Maturation of field AI in congenitally deaf cats. |
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TILLEIN, J. |
Effects of simultaneous electric and acoustic stimulation (EAS) on temporal response patterns of cat single auditory nerve fibers. |
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HERMINGHAUS, S. |
Speech encoding during binaural and dichotic stimulus application. |
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VOLLMER, M. |
Neuronal responses in cat inferior colliculus to combined electrical and acoustical stimulation of the cochlea. |
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KLINKE, R. |
Lehrbuch der Physiologie. |
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MÜLLER, M. |
Auditory nerve fibre responses to salicylate revisted. |
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KRAL, A. |
Absence of cross-modal reorganization in the primary auditory cortex of congenitally deaf cats. |
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EGER, E. |
A supramodal number representation in the human parietal cortex. |
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THIERRY, G. |
Hemispheric dissociation in accessing the human semantic system. |
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KRIEGSTEIN, K. von |
Modulation of neural responses to speech by directing attention to voices or semantic content. |
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PRICE, C.J. |
Cortical localisation of the visual and auditory word form areas: A reconsideration of the evidence. |
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PREIBISCH, C. |
Evidence for compensation for stuttering by the right frontal operculum. |
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TILLEIN, J. |
Neuronal responses in cat auditory nerve and inferior colliculus to combined electric / acoustic stimulation. |
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KIEFER, J. |
Combined electric/acoustic stimulation: Clinical results. |
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HARTMANN, R. |
Correlated activity in cat auditory cortex by electrical cochlear stimulation. |
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KRAL, A. |
Functional maturation of the auditory cortex deprived from hearing experience. |
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TILLEIN, J. |
Temporal response patterns of cat single auditory nerve fibers with simultaneous electric and acoustic stimulation (EAS). |
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BIEBEL, U.W. |
Noise trauma in the 129/S4 mouse, a strain with „tough“ ears. |
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GIRAUD, A.L. |
Severity of stuttering correlates with basal ganglia activity: potential therapeutic implications. |
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v. KRIEGSTEIN, K. |
Recognition of known voices recruits the fusiform face area. |
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NEUMANN, K. |
The nature and treatment of stuttering as revealed by fMRI. A within- and between-group comparison, J. Fluency Disorders, in press. |
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TILLEIN, J. |
Interactions between electrical and acoustical auditory nerve fiber responses of intracochlear implanted cats with residual hearing. |
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CHRIST, S. |
Hearing loss in athyroid pax8 knockout mice and effects of thyroxine substitution |
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KIEFER, J. |
Application of carbon dioxide and erbium:yttrium-aluminum-garnet lasers in inner ear surgery: an experimental study. |
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HUBKA, P. |
Desynchronization in deprived auditory cortex revealed by independent component analysis of field potentials. |
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MÜLLER, M. |
A physiological place-frequency map of the cochlea in the mouse. |
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BIEBEL, U. |
Changes in chinchilla inferior colliculus responses after inner hair cell loss. |
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HARTMANN, R. |
Central responses to electrical stimulation. In: Cochlear Implants. Pp. 213-285, Springer New York 2004 |
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KRAL, A. |
Postnatal cortical development in congenital auditory deprivation. |
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KIEFER, J. |
Conservation of low-frequency hearing in cochlear implantation. |
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KRIEGSTEIN, K.V. |
Distinct functional substrates along the right superior temporal sulcus for the processing of voices. |
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GIRAUD, A.L. |
Contributions of sensory input, auditory search and verbal comprehension to cortical activity during speech processing. |
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KLINKE, R. |
Schlafen bei geschlossenen Fenster – ein angemessener Schutz vor Fluglärm? |
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MÜLLER, M. |
A physiological place-frequency map of the cochlea in the CBA/J mouse. |
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SMOLDERS, J.: |
Functional recovery of hearing after inner ear trauma. |
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KLINKE, R. |
Plastic changes in the primary auditory cortex in cochlear implanted deaf cats. |
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HUBKA, P. |
Input desynchronization and impaired columnar activation in deprived auditory cortex revealed by independent component analysis. |
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KRAL, A. |
Postnatal cortical development in congenital auditory deprivation. |
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KIEFER, J. |
Combined electric and acoustic stimulation of the auditory system: Results of a clinical study. |
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KRAL, A. |
Postnatal cortical development in congenital auditory deprivation. |
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KLINKE, R. |
Plastic changes in the primary auditory cortex in cochlear implanted deaf cats. |
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HUBKA, P. |
Input desynchronization and impaired columnar activation in deprived auditory cortex revealed by independent component analysis. |
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Laer, L. van |
Mice lacking Dfna5 show a diverging number of cochlear fourth row outer hair cells. |
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MÜLLER, M. |
Shift in the cochlear place-frequency map after noise damage in the mouse. |
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