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一项对猫内侧丘系中单根轴突的研究。

A study of single axons in the cat's medial lemniscus.

作者信息

Brown A G, Gordon G, Kay R H

出版信息

J Physiol. 1974 Jan;236(1):225-46. doi: 10.1113/jphysiol.1974.sp010432.

Abstract
  1. A method was developed for locating the rostral part of the medial lemniscus in anaesthetized cats and then exploring it with a micro-electrode selective for single axons. Records were made from 165 axons, all shown histologically to lie in the lemniscus.2. Almost all lemniscal axons responded at short latency to a shock through surface electrodes over the dorsal columns at C2. The great majority probably belonged to the dorsal column-lemniscal system, though some may have belonged to other (e.g. spinocervicothalamic) systems.3. Resting discharge was seen in almost all axons in the absence of any stimulation, and must have been generated almost entirely in the relevant relay nuclei, particularly since in many axons it was easily depressed or totally inhibited by appropriately placed mechanical stimulation of skin or a shock to the dorsal columns.4. For each fibre held for an adequate length of time, the receptive field, if accessible, was classified as accurately as possible. Fifty-two axons were precisely categorized in this way: many more were studied for long enough to yield useful information.5. One half (twenty-six) of the best categorized axons had receptive fields suggesting excitation by only one type of receptor: fifteen by tylotrich hairs, four by rapidly adapting tactile foot pad receptors, two by claw movement, two by cutaneous touch corpuscles and three by Type II cutaneous receptors. Rigidly held probes driven by electromechanical transducers were used to establish stimulus/response relations. Adjacent or surround inhibition was seen in nearly all these fields, except for the Type II category.6. The other half (twenty-six) of the best categorized axons showed various degrees of inter-receptive excitatory convergence. Five responded to all types of hair, twelve to hair movement and foot-pad displacement, and nine to hair movement combined with inputs from a variety of slowly adapting receptors in skin or deep tissues, thresholds for the latter ranging from light contact to noxious pressure.7. Forty axons responded with a slowly adapting discharge to joint movement, some with properties suggesting that their receptors did not lie in the joint capsule itself. The high threshold of most of these axons to dorsal column stimulation suggested that the relevant primary axons lay either deep in the dorsal column or in some other tract.8. Of axons whose receptive fields were accurately located, 88% lay in forelimb or upper trunk - the remainder in lower trunk, hind limb or tail. The forepaw accounted for 41% of the former group. Axons with receptively ;pure' properties tended to lie in central or deep parts of the main lemniscal mass at the level studied. Axons responding to joint movement tended to lie deep in the main mass and in the ventromedial lemniscal bundle. There was some clustering of axons with identical receptive properties.
摘要
  1. 研究人员开发了一种方法,用于在麻醉猫中定位内侧丘系的嘴侧部分,然后用对单根轴突有选择性的微电极进行探测。共记录了165根轴突,所有这些轴突经组织学检查均显示位于丘系中。

  2. 几乎所有丘系轴突对通过C2水平背柱上的表面电极施加的电刺激都有短潜伏期反应。绝大多数轴突可能属于背柱 - 内侧丘系系统,不过有些可能属于其他(如脊髓颈丘脑)系统。

  3. 在没有任何刺激的情况下,几乎所有轴突都有静息放电,而且这种放电几乎肯定完全是在相关的中继核中产生的,特别是因为在许多轴突中,通过适当放置对皮肤的机械刺激或对背柱的电刺激,这种静息放电很容易被抑制或完全阻断。

  4. 对于每一根被保持足够长时间的纤维,如果可以确定其感受野,就尽可能精确地进行分类。以这种方式精确分类了52根轴突:更多的轴突被研究了足够长的时间以获取有用信息。

  5. 分类最准确的轴突中有一半(26根)的感受野表明仅由一种类型的感受器激发:15根由触须毛激发,4根由快速适应触垫感受器激发,2根由爪子运动激发,2根由皮肤触觉小体激发,3根由II型皮肤感受器激发。使用由机电换能器驱动的刚性固定探针来建立刺激 - 反应关系。除了II型感受器类别外,几乎在所有这些感受野中都观察到了相邻或周围抑制。

  6. 分类最准确的轴突中的另一半(26根)表现出不同程度的感受野间兴奋性会聚。5根对所有类型的毛发有反应,12根对毛发运动和脚垫位移有反应,9根对毛发运动以及来自皮肤或深部组织中各种慢适应感受器的输入有反应,后者的阈值范围从轻触到有害压力。

  7. 40根轴突对关节运动有慢适应放电反应,其中一些轴突的特性表明其感受器并不位于关节囊本身。这些轴突中的大多数对背柱刺激的阈值较高,这表明相关的初级轴突要么位于背柱深部,要么位于其他一些传导束中。

  8. 在其感受野被准确定位的轴突中,88%位于前肢或上躯干——其余位于下躯干、后肢或尾部。前爪占前一组的41%。具有“纯”感受特性的轴突倾向于位于所研究水平的内侧丘系主要团块的中央或深部。对关节运动有反应的轴突倾向于位于主要团块的深部和内侧丘系腹侧束中。具有相同感受特性的轴突存在一定程度的聚集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06a1/1350836/30edd63f08e6/jphysiol00941-0256-a.jpg

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