Published in J Neurophysiol on April 01, 1984
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Heat-induced pain diminishes vibrotactile perception: a touch gate. Somatosens Mot Res (1994) 0.97
Frequency distribution of central masking. J Acoust Soc Am (1968) 0.96
Vibrotactile frequency for encoding a speech parameter. J Acoust Soc Am (1977) 0.96
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Vibrotactile intensity discrimination measured by three methods. J Acoust Soc Am (1990) 0.95
Subjective magnitude of tactile roughness. Somatosens Mot Res (1999) 0.95
On intensity characteristics of sensory receptors: a generalized function. Kybernetik (1973) 0.93
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Acoustic impedance of pathological ears. ASHA Monogr (1970) 0.93
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Vibrotacile masking of Pacinian and non-Pacinian channels. J Acoust Soc Am (1983) 0.93
Efferent optic nerve fibers mediate circadian rhythms in the Limulus eye. Science (1977) 0.92
The effects of skin temperature on the detection and discrimination of tactile stimulation. Somatosens Mot Res (1997) 0.92
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Cochlear mechanisms of frequency and intensity coding. I. The place code for pitch. Hear Res (1997) 0.91
Tectorial membrane: a possible sharpening effect on the frequency analysis in the cochlea. Acta Otolaryngol (1979) 0.90
Comparison of sound-transmission and cochlear-microphonic characteristics in Mongolian gerbil and guinea pig. J Acoust Soc Am (1977) 0.90
Cochlear waves: interaction between theory and experiments. J Acoust Soc Am (1974) 0.90
Psychophysical evidence for a triplex system of cutaneous mechanoreception. Sens Processes (1979) 0.89
Group and individual relations between sensation magnitudes and their numerical estimates. Percept Psychophys (1983) 0.88
Vibrotactile temporal summation: probability summation or neural integration? Somatosens Mot Res (1999) 0.88
The effects of aging on information-processing channels in the sense of touch: II. Temporal summation in the P channel. Somatosens Mot Res (1994) 0.88
Cochlear mechanisms of frequency and intensity coding. II. Dynamic range and the code for loudness. Hear Res (1998) 0.87
On the relations of intensity jnd's to loudness and neural noise. J Acoust Soc Am (1986) 0.87
Vibrotactile forward masking: effects of the amplitude and duration of the masking stimulus. J Acoust Soc Am (1995) 0.86
Effects of hair cell lesions on responses of cochlear nerve fibers. II. Single- and two-tone intensity functions in relation to tuning curves. J Neurophysiol (1980) 0.86
Effect of temporal summation on the human stapedius reflex. Acta Otolaryngol (1971) 0.85
Intensity-dependent peak shift in cochlear transfer functions at the cellular level, its elimination by sound exposure, and its possible underlying mechanisms. Hear Res (1996) 0.84
The effects of aging on information-processing channels in the sense of touch: III. Differential sensitivity to changes in stimulus intensity. Somatosens Mot Res (1996) 0.84
Micromechanics in the theory of cochlear mechanics. Hear Res (1980) 0.83
Just noticeable differences for intensity and their relation to loudness. J Acoust Soc Am (1993) 0.83
Some characteristics of tactile channels. Behav Brain Res (2004) 0.83
CM tuning can be compatible with sharply tuned receptor potentials. Hear Res (1980) 0.83
Intensity and frequency characteristics of pacinian corpuscles. II. Receptor potentials. J Neurophysiol (1984) 0.83
Under which conditions do the skin and probe decouple during sinusoidal vibrations? Exp Brain Res (1999) 0.82
OHC response recruitment and its correlation with loudness recruitment. Hear Res (1995) 0.81
Velocity and displacement responses in auditory-nerve fibers. Science (1973) 0.81
What basilar-membrane tuning says about cochlear micromechanics. Am J Otolaryngol (1982) 0.81
The effects of skin temperature on the psychophysical responses to vibration on glabrous and hairy skin. J Acoust Soc Am (1986) 0.81
The frequency selectivity of information-processing channels in the tactile sensory system. Somatosens Mot Res (2001) 0.80
Sound pressure distribution in the outer ear. Acta Otolaryngol (1973) 0.80
Intensity just-noticeable differences at equal-loudness levels in normal and pathological ears. J Acoust Soc Am (1993) 0.80
Intensity discrimination determined with two paradigms in normal and hearing-impaired subjects. J Acoust Soc Am (1989) 0.80
Intensity and frequency characteristics of pacinian corpuscles. III. Effects of tetrodotoxin on transduction process. J Neurophysiol (1984) 0.79
Central masking and neural activity in the cochlear nucleus. Audiology (1974) 0.78
Are nonlinearities observed in firing rates of auditory-nerve afferents reflections of a nonlinear coupling between the tectorial membrane and the organ of Corti? Hear Res (1986) 0.78
Vibrotactile masking: effects of stimulus onset asynchrony and stimulus frequency. J Acoust Soc Am (1989) 0.78
Normal function of the middle ear and its measurement. Audiology (1982) 0.78
Immunocytochemical identification of proteins within the Pacinian corpuscle. Somatosens Mot Res (2000) 0.78
Cochlear function--an analysis. Acta Otolaryngol (1985) 0.77
Phase opposition between inner and outer hair cells and auditory sound analysis. Audiology (1975) 0.77
Loudness determination at low sound frequencies. J Acoust Soc Am (1968) 0.77
The effects of masking on vibrotactile temporal summation in the detection of sinusoidal and noise signals. J Acoust Soc Am (1994) 0.76
Effects of stimulus duration on the amplitude difference limen for vibrotaction. J Acoust Soc Am (1996) 0.76
The effects of masking on the growth of vibrotactile sensation magnitude and on the amplitude difference limen: a test of the equal sensation magnitude-equal difference limen hypothesis. J Acoust Soc Am (1994) 0.76
Decay in the effect of vibrotactile masking. J Acoust Soc Am (1996) 0.76
Mechanisms of attention in touch. Somatosens Mot Res (1999) 0.76
Some current concepts of cochlear mechanics. Audiology (1983) 0.75
Responses of some neurons of the cochlear nucleus to tone-intensity increments. J Acoust Soc Am (1971) 0.75
Outer hair cells: sharpness of tuning. Acta Otolaryngol (1981) 0.75
Sound analysis in the ear: a history of discoveries. Am Sci (1981) 0.75
The effect of stimulus duration on frequency-response functions in the Pacinian (P) channel. Somatosens Mot Res (1994) 0.75
Georg von Békésy, 1899-1972. J Acoust Soc Am (1972) 0.75
The effects of static indentation on vibrotactile threshold. J Acoust Soc Am (1996) 0.75
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Significance of S. S. Steven's contribution to science. J Acoust Soc Am (1973) 0.75
On acoustic research and its clinical application. Acta Otolaryngol (1968) 0.75
How OHC lesions can lead to neural cochlear hypersensitivity. Acta Otolaryngol (1984) 0.75
A longitudinal study of somesthetic perceptual disorders in an individual with a unilateral thalamic lesion. Pain (1997) 0.75
Middle ear, cochlea, and Tonndorf. Am J Otolaryngol (1981) 0.75
Sharp vibration maximum in the cochlea without wave reflection. Hear Res (1983) 0.75
Absolute and other scales: question of validity. Percept Psychophys (1983) 0.75
Effects of stimulus duration on the response properties of Pacinian corpuscles: implications for the neural code. J Acoust Soc Am (1992) 0.75
Enhanced cochlear responses after sound exposure. Hear Res (1997) 0.75
Low cost Video Scaler and Gray Scale Integrator. IEEE Trans Biomed Eng (1994) 0.75
On the critical band in the acoustic stapedius reflex. J Acoust Soc Am (1973) 0.75
Assessment of vibrotactile sensitivity in patients with carpal tunnel syndrome. J Occup Environ Med (1996) 0.75
Relationships between the variability of magnitude matching and the slope of magnitude level functions. J Acoust Soc Am (1994) 0.75
Low-frequency neural and cochlear-microphonic tuning curves in the gerbil. J Acoust Soc Am (1978) 0.75