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首页> 外文期刊>Journal of Neurophysiology >Capsaicin-induced rapid receptive field reorganization in cuneate neurons.
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Capsaicin-induced rapid receptive field reorganization in cuneate neurons.

机译:辣椒素诱导楔形神经元中的快速感受野重组。

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1. To determine whether activity in unmyelinated or thinly myelinated primary afferents affects the organization of cutaneous receptive fields (RFs) in the cuneate nucleus, subcutaneous injections of capsaicin were made into the RFs of cuneate neurons in anesthetized cats. The effects of capsaicin injection on RF size and position, response properties, and spontaneous firing rates were determined during single-unit recordings. 2. Subcutaneous injection of capsaicin (10% dissolved in 70% ethanol) into peripheral RFs produced rapid RF reorganization in all neurons tested (n = 20), even when the original RF remained responsive to tactile stimulation. RF reorganization was marked by the appearance of newly responsive RFs. These RFs appeared as either contiguous expansions of the original RF or as new, noncontiguous fields. Control injections of the vehicle alone never produced RF reorganization (n = 9). RF reorganization was not related to changes in spontaneous activity. 3. Following capsaicin-induced RF reorganization, subcutaneous injections of lidocaine were made into the original RFs (n = 8). These injections produced no additional RF reorganization in seven of the eight neurons, even though in each case the lidocaine injections produced at least partial blocks of responsiveness from within the original RF. 4. In approximately one-half of the neurons (9 of 20), the reorganized RFs had response properties that were different from those of the original RF. This result suggests that, for neurons in the dorsal column nuclei (DCN), physiological mechanisms that normally mask inputs and restrict RF size can give rise to response specificity. 5. The results of these experiments demonstrate that capsaicin-induced RF reorganization, which has been reported previously in ventrobasal thalamus and primary somatosensory cortex, can arise within the dorsal column-medial lemniscal system, at the level of the DCN. The present results also provide evidence that rapid RF reorganization in cuneate neurons can be produced byblockade of a subset of peripheral afferents that are sensitive to capsaicin.
机译:1.为了确定未带髓鞘的或有髓鞘的初级传入神经的活动是否影响楔形核中皮肤感受野的组织,在麻醉猫的楔形神经元的RF中皮下注射了辣椒素。辣椒素注射液对RF大小和位置,响应特性和自发发射速率的影响在单个单位记录期间确定。 2.向周围射频皮下注射辣椒素(10%溶于70%乙醇)到所有受试神经元(n = 20)中,即使最初的射频仍对触觉刺激有反应,射频也会迅速重组。射频重组以新出现的响应射频为标志。这些RF要么显示为原始RF的连续扩展,要么显示为新的非连续场。仅车辆的对照喷射就不会产生RF重组(n = 9)。射频重组与自发活动的变化无关。 3.辣椒素诱导的RF重组后,皮下注射利多卡因进入原始RF(n = 8)。即使在每种情况下,利多卡因注射均在原始RF内产生了至少部分的反应性阻滞,但这些注射并未在八个神经元中的七个神经元中产生额外的RF重组。 4.在大约一半的神经元中(20个中的9个),重组的RF具有与原始RF不同的响应特性。该结果表明,对于背柱核(DCN)中的神经元,通常掩盖输入并限制RF大小的生理机制会引起反应特异性。 5.这些实验的结果表明,辣椒碱诱导的RF重组(先前在腹基底丘脑和初级体感皮层中已有报道)可在DCN水平的背柱-中间背膜系统内出现。本结果还提供了证据,可以通过阻断对辣椒素敏感的外周传入子集来产生楔形神经元中的快速RF重组。

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