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Biomedical subjects

W D Larkin

Publications and source records attributed to W D Larkin.

8 recordsLinked to original sources

Partial masking in electrocutaneous sensation: a model for sensation matching, with applications to loudness recruitment.

A model for partial masking and other threshold-elevation effects is presented in the context of a sensation-matching paradigm. The model is applied to an electrocutaneous experiment in which the subjects adjusted stimulus intensity on the right-hand fingertip to match sensation levels of standard stimuli presented to the left fingertip. Concurrent mechanical stimulation on the right fingertip masked sensation magnitude in a way consistent with the model. Similarities between this tactile masking effect and analogous auditory phenomena are explored. When applied to loudness matching, the model describes the general shape of loudness contours and it shows that the steep slopes observed in auditory masking and "recruitment" can be a consequence of a threshold shift alone, without a supranormal growth in loudness. The model also shows that a small response bias can distort plots of sensation matching, leading to the suggestion that some varieties of loudness recruitment may not have a sensory basis.

Discrimination Learning↗

Electrocutaneous sensitivity: effects of skin temperature.

The effect of human skin temperature on electrocutaneous sensitivity was examined using brief capacitive discharges. Stimuli were designed to ensure that sensory effects would be independent of skin resistance and would reflect underlying neural excitability as closely as possible. Skin temperature was manipulated by immersing the forearm in circulating hot or cold air. Detection thresholds on the arm and fingertip were raised by cooling, but were not altered by heating. Temperature-related sensitivity shifts were described by the same multiplicative factors for both threshold and suprathreshold levels. The temperature coefficient (Q10) for cutaneous sensitivity under these conditions was approximately 1.3.

Electric Stimulation↗

Pitch vulnerability in sensorineural hearing impairment.

Listeners with cochlear impairment were studied in an ABX pitch-matching paradigm. These listeners showed excellent ability to adjust one sinusoid (X) to match the frequency of another (B), except when a leading tone (A) was present. Pitch shifts induced by the leading tone exaggerate the pitch contrast between tones A and B, even in normal-hearing listeners, but the effect in sensorineural listeners is several times larger and indicates a severe vulnerability of pitch. The degree of pitch distortion does not appear to bear any simple relationship to the degree of hearing loss, or to stimulus amplitudes. The effect is obtained at 'comfortable' listening levels. Vulnerability of pitch, rather than a failure in discriminative capacity, may underlie some of the qualitative perceptual difficulties found in sensorineural hearing impairment.

Acoustic Stimulation↗