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中文摘要
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描述(由申请人提供):初级感觉神经元将疼痛和非疼痛的热和机械刺激从外周传递到脊髓。 生理学研究已经确定了许多功能不同的初级感觉神经元亚型(由它们对刺激的反应,髓鞘形成程度和神经支配模式定义),但每种类型如何对行为做出贡献仍然没有很好的理解。每个群体的分子标记的识别,现在允许使用更强大的遗传方法来识别功能重要的分子,映射其中央连接,并确定其在体感感知中的作用。 在这项资助提案中,我们利用我们确定的独特分子标记和这些新的强大工具来阐明由无髓鞘低阈值机械感受器(C-LTMR)激活的中枢回路。 这些细胞被认为可以传递愉悦的触觉和由神经损伤引起的持续性机械疼痛。 我们还将利用我们开发的一种新的转基因报告细胞系来鉴定额外的功能定义的初级感觉群体的分子标记。 标记基因将使我们能够解决躯体感觉生物学的许多方面,以前是不可行的。 这些新方法对于理解躯体感觉处理的基本原理及其在正常条件下和慢性疼痛状态下与感知的关系是绝对必要的。
英文摘要
DESCRIPTION (provided by applicant): Primary sensory neurons transmit painful and non-painful thermal and mechanical stimuli from the periphery to the spinal cord. Physiological studies have identified a number of functionally distinct subtypes of primary sensory neurons (defined by their response to stimuli, degree of myelination and innervation pattern), but how each type contributes to behavior is still not well understood. The identification of molecular markers for each population is now permitting the use of more powerful genetic approaches to identify functionally important molecules, map their central connectivity and determine their role in somatosensory perception. In this grant proposal, we take advantage of a unique molecular marker we identified and these new powerful tools to elucidate the central circuitry activated by unmyelinated low threshold mechanoreceptors (C-LTMRs). These cells are thought to transmit pleasant touch and the persistent mechanical pain that results from nerve injury. We will also take advantage of a new transgenic reporter line we developed to identify molecular markers for additional functionally defined primary sensory populations. Marker genes will allow us to address many aspects of somatosensory biology that were previously not feasible. These new approaches are absolutely essential for understanding the fundamental principles of somatosensory processing and its relation to perception under normal conditions and in chronic pain states.
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Dorsal horn circuits for mechanical allodynia
Dorsal horn circuits for mechanical allodynia
Role of Cholinergic-Glutamatergic Co-transmission in Forebrain Circuits
Role of Cholinergic-Glutamatergic Co-transmission in Forebrain Circuits
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