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Spinal Circuits for Touch, Pain, and Itch
Annual Review of Physiology ( IF 18.2 ) Pub Date : 2018-02-12 00:00:00 , DOI: 10.1146/annurev-physiol-022516-034303
Stephanie C. Koch 1 , David Acton 1 , Martyn Goulding 1
Affiliation  

The exteroceptive somatosensory system is important for reflexive and adaptive behaviors and for the dynamic control of movement in response to external stimuli. This review outlines recent efforts using genetic approaches in the mouse to map the spinal cord circuits that transmit and gate the cutaneous somatosensory modalities of touch, pain, and itch. Recent studies have revealed an underlying modular architecture in which nociceptive, pruritic, and innocuous stimuli are processed by distinct molecularly defined interneuron cell types. These include excitatory populations that transmit information about both innocuous and painful touch and inhibitory populations that serve as a gate to prevent innocuous stimuli from activating the nociceptive and pruritic transmission pathways. By dissecting the cellular composition of dorsal-horn networks, studies are beginning to elucidate the intricate computational logic of somatosensory transformation in health and disease.

中文翻译:


触觉,疼痛和瘙痒的脊髓回路

躯体感觉系统对于反射和适应行为以及响应外部刺激的运动动态控制很重要。这篇综述概述了最近在小鼠中使用遗传方法绘制脊髓回路的努力,这些脊髓回路传递并控制了皮肤体感触觉,疼痛和瘙痒的形态。最近的研究已经揭示了一种潜在的模块化结构,其中伤害性,瘙痒性和无害刺激由不同的分子定义的中间神经元细胞类型处理。这些包括传递无害和痛苦触摸信息的兴奋性种群,以及阻止无害刺激激活伤害性和瘙痒性传播途径的门的抑制性种群。通过解剖背角网络的细胞组成,

更新日期:2018-02-12
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