Beschreibung
413 S. mit Abb. Gebraucht, aber gut erhalten. - Content: Creutzfeldt O.,Introduction -- Functional and structural conditions for transmission of auditory signals in the nervous system: Klinke R., Basic mechanisms of auditory processing in the cochlea -- Palmer A.R., Evans E.F., On the peripheral coding of the level of individual frequency components of complex sounds at high sound levels -- De Boer E., Universal mechanical response curves for the cochlea -- Moore J.K., Osen K.K., The human cochlea nuclei -- Miller A.R., Coding of complex sounds in the auditory nervous system -- Meininger V., Baudrimont M., Embryological evolution and typology of cells of the inferior colliculus -- Merzenich M.M., Andersen R.A., J.H., Functional and topographic organization of the auditory cortex -- The representation of complex natural sounds in the auditory system: Johannesma P., Aertsen A., Neural image of sound in the grassfrog -- Aertsen A., Johannesma P., Spectro-temporal analysis of auditory neurons in the grassfrog -- Scheich H., Bonke D., Langner G., Tonotopy and analysis of wide-band calls in field L of the guinea fowl -- Langner G., Bonke D., Scheich H., Selective responses of neurons to vowel sounds in the auditory neostriatum of the mynah bird -- Leppelsack H.-J., The increase of response selectivity within the avian -- auditory pathway -- Hellweg F.-C, Creutzfeldt 0., Schreiner Chr., Encoding of complex sounds by thalamic and cortical neurons -- Koch R., Piper H.M., Time segmentation in central analysis of complex signals -- Schreiner Chr., Temporal suppression and speech processing -- Newman J.D., Symmes D., Feature detection by single units in squirrel monkey auditory cortex -- Müller-Preuss P., Processing of self-produced vocalizations by single neurons in the auditory cortex of the squirrel monkey (Saimiri Sciureus) -- Finkenzeller P., Thumfart W., Fellner E., Encoding processes of speech sounds in the auditory system -- Brown W.S., Lehmann D., Verb and noun meaning of homophone word activate different cortical generators: a topographical study of evoked potential fields -- Brain mechanisms of speech perception and production -- Jürgens U., Anatomical and functional cerebral organization of phonation -- in animals -- Kornhuber H.H., Brunner R.J., Wallesch C.W., Basal ganglia participation in aphasia -- Grözinger B., Kornhuber H.H., Kriebel J., Participation of mesial cortex in speech: evidence from cerebral potentials preceding speech production in man -- Whitaker H.A., Electrical stimulation mapping of language cortex -- Ojemann G., Mateer C., Human language cortex: identification of common sites for sequencing motor activity and speech discrimination -- Poeck K., Studies on language comprehension in hemispherectomy, split brain and asphasic patients. A possible contribution to the knowledge of the physiological mechanisms of speech comprehension -- Brüser E., Todt D., Timing in speech production: aspects of (German) hesitation vowels -- Morath M., Inborn vocalizations of the human baby and communicative -- value for the mother -- Psychoacoustic elements in language: Schroeder M.R., What acoustic stimulation can teach us about physiological mechanisms underlying speech perception -- Duifhuis H., Willmens L.F., An outline of pitch analysis in speech: a hearing theory approach -- Hess W.J., Pitch determination of speech signals - a survey -- Droogleever-Fortuyn J., Ritsma R.J., Virtual pitch and our own voice -- Terhardt E., On the perception of spectral information in speech -- Mehrgardt S., Perceptual difference limens in pair-comparison of complex -- (speech-related) signals -- Linguistic elements in speech perception: Bailey P., Aspects of categorical processing of speech sounds in man: on the determinants of phonetic category boundaries -- Ainsworth W.A., Selective adaptation of acoustic and phonetic feature sensitive detectors -- Haggard M.P., Speech sounds in realtion to speech processing -- Darwin C.J., Perceptual group.
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