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人类腹侧丘脑核团的单神经元分析:躯体感觉反应

Single-unit analysis of the human ventral thalamic nuclear group: somatosensory responses.

作者信息

Lenz F A, Dostrovsky J O, Tasker R R, Yamashiro K, Kwan H C, Murphy J T

机构信息

Division of Neurosurgery, Toronto General Hospital, Ontario, Canada.

出版信息

J Neurophysiol. 1988 Feb;59(2):299-316. doi: 10.1152/jn.1988.59.2.299.

DOI:10.1152/jn.1988.59.2.299
PMID:3351564
Abstract
  1. We have studied the functional and somatotopic properties of 531 single mechanoreceptive thalamic neurons in humans undergoing stereotactic surgery for the control of movement disorders and pain. The majority of these somatosensory cells had small receptive fields (RFs) and were activated in a reproducible manner by mechanical stimuli applied to the skin or deep tissues. These neurons, which we termed "lemniscal," could be further classified into those responding to stimulation of cutaneous (76% of lemniscal sensory cells) or deep (24%) structures. 2. The incidence of neurons having cutaneous or mucosal RFs in the perioral region, thumb, and fingers (66%) was much higher than that of neurons having RFs elsewhere on the body. Most of the deep cells were activated by movements of and/or mechanical stimuli delivered to muscles or tendons controlling the elbow, wrist, and fingers. 3. Sequences of cells spanning several millimeters in the parasagittal plane often exhibited overlapping RFs. However, RFs changed markedly for cells separated by the same distances in the mediolateral direction. This suggests that the cutaneous somatotopic representation of each region of the body is organized into relatively thin sheets of cells oriented in the parasagittal plane. 4. By comparing neuronal RFs in different parasagittal planes in thalamus of individual patients we have identified a mediolateral representation of body surface following the sequence from: intraoral structures, face, thumb through fifth finger to palm, with forearm and leg laterally. 5. Along many trajectories in the parasagittal plane the sequence of cells with overlapping RFs was interrupted by another sequence of cells with RFs corresponding to a different body region. The RFs of the intervening sequence characteristically represented body regions known to be located more medially in thalamus (see 3 above). These findings could be explained if the lamellae postulated above were laterally convex. 6. Cells responding to deep stimulation (deep cells) could be further classified into those responding to joint movement (63%), deep pressure (15%), or both (22%). Deep cells were found usually at the anterior-dorsal border and sometimes at the posterior border of the region containing cells responding to cutaneous stimuli. Although there was some overlap in the RFs, deep cells representing wrist were found medial to those representing elbow, and both of these were found medial to cells representing leg.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了531个接受立体定向手术以控制运动障碍和疼痛的人类单机械感受性丘脑神经元的功能和躯体定位特性。这些躯体感觉细胞大多数具有小的感受野(RFs),并通过施加于皮肤或深部组织的机械刺激以可重复的方式被激活。这些神经元,我们称之为“薄束核的”,可进一步分为对皮肤(薄束核感觉细胞的76%)或深部(24%)结构刺激有反应的神经元。2. 在口周区域、拇指和手指有皮肤或黏膜RFs的神经元发生率(66%)远高于身体其他部位有RFs的神经元。大多数深部细胞通过控制肘部、腕部和手指的肌肉和/或肌腱的运动及/或机械刺激而被激活。3. 在矢状旁平面上跨越几毫米的细胞序列常常表现出重叠的RFs。然而,在内外侧方向上相隔相同距离的细胞,其RFs有显著变化。这表明身体各区域的皮肤躯体定位表征被组织成在矢状旁平面上定向的相对薄的细胞层。4. 通过比较个体患者丘脑中不同矢状旁平面的神经元RFs,我们确定了体表的内外侧表征顺序如下:口腔内结构、面部、从拇指到第五指再到手掌,前臂和腿部在外侧。5. 在矢状旁平面的许多轨迹上,具有重叠RFs的细胞序列被另一序列具有对应不同身体区域RFs的细胞中断。中间序列的RFs典型地代表已知在丘脑中位于更内侧的身体区域(见上文3)。如果上述薄片向外侧凸出,这些发现就能得到解释。6. 对深部刺激有反应的细胞(深部细胞)可进一步分为对关节运动有反应的(63%)、对深部压力有反应的(15%)或对两者都有反应的(22%)。深部细胞通常位于对皮肤刺激有反应的细胞区域的前背侧边界,有时位于后边界。尽管RFs有一些重叠,但代表腕部的深部细胞位于代表肘部的深部细胞的内侧,而这两者都位于代表腿部的细胞的内侧。(摘要截于400字)

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