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- W987066586 abstract "This chapter discusses the adaptation in mechanoreceptors of amphibian skin. The mechanoreceptors in amphibian skin are found to show a wide range in rates of adaptation to constant stimuli. Whereas most of the sensory terminals are free nerve endings, some lamellated corpuscles have recently been found, and these are probably the fast adapting touch receptors. A theory of slip is proposed to explain the delay in mechanical excitation. The behavior of a series visco-elastic model is analyzed. The model predicted that response latency would vary with slope of stimulus. This relationship is studied experimentally on skin receptors, and the slope-latency curves plotted are compared with curves derived from the analysis of the model. Treatment with tissue-destroying enzymes, expected to increase the degree of “slip,” produced changes in slope-latency curves in accord with the theory. Experiments on the excitability changes under long subliminal conditioning pulses demonstrated both a dynamic and a static phase. The chapter discusses the elastic coupling between the tissue and terminal." @default.
- W987066586 created "2016-06-24" @default.
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- W987066586 date "1976-01-01" @default.
- W987066586 modified "2023-09-25" @default.
- W987066586 title "Adaptation in Mechanoreceptors of Amphibian Skin" @default.
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- W987066586 doi "https://doi.org/10.1016/s0079-6123(08)64354-x" @default.
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