An integrative framework of the skin receptors activation: Mechanoreceptors activity patterns versus "labeled lines"
Интегративная концепция активации кожных рецепторов: паттерны активности механорецепторов и «маркированные линии»
2013-03-01
SCID: 54.1/xmvn3382
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cutaneous nerve fibersmechanoreceptors activity patternsskin sensory receptorsspatiotemporal skin deformationspike patterns
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Abstract (AI)
The paper presents a review of electrophysiological data which indicate the integrative mechanisms of information coded in the human and animal peripheral skin receptors. The activity of the skin sensory receptors was examined by applying various natural stimuli. It was revealed that numerous identical receptors respond to various stimuli (mechanical, temperature, and pain ones), but the spike patterns of these receptors were found to be specific for each stimulus. The description of characteristic structures of spike patterns in the cutaneous nerve fibers in response to five major modalities, namely: "touch", "pain", "vibration/breath", "cold", and "heat", is being presented. The recordings of the cutaneous physical state revealed a correlation between the patterns of spatiotemporal skin deformation and the receptors activity. A rheological state of the skin can be changed either in response to external temperature variation or by the sympathetic pilomotor activation. These results indicate that the skin sensory receptors activity may be considered as an integrative process. It depends not only on the receptors themselves, but also on the changes in the surrounding tissue and on the adaptive influence of the central nervous system. A new framework for the sensory channel system related to the skin is proposed on the basis of experimental results.
Key Findings
1
Based on experimental electrophysiological data, a new integrative framework for the skin sensory channel system is proposed.
2
Many identical skin receptors respond to multiple stimulus modalities (mechanical, temperature, pain) rather than being modality-specific.
3
Skin receptor activity is integrative, depending on receptors, surrounding tissue state, and central nervous system adaptive influence.
4
Skin rheological state, altered by external temperature or sympathetic pilomotor activation, modulates receptor activity.
5
Spatiotemporal patterns of skin deformation correlate with receptor activity, linking physical skin state to neural responses.
6
Spike patterns of individual skin receptors are stimulus-specific, differing for touch, pain, vibration/breath, cold, and heat.
Research Object
Peripheral cutaneous (skin) sensory receptors and their afferent nerve fibers in humans and animals
Research Subject
Patterns of receptor spike activity (spatiotemporal firing patterns) across modalities and their dependence on mechanical/thermal/nociceptive stimuli, skin rheological state, and central adaptive influences — i.e., integrative coding versus labeled-line organization
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2013-03-01
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