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对支配人手部关节、肌肉和皮肤的单根传入神经进行微刺激的知觉反应。

Perceptual responses to microstimulation of single afferents innervating joints, muscles and skin of the human hand.

作者信息

Macefield G, Gandevia S C, Burke D

机构信息

Department of Clinical Neurophysiology, Prince Henry Hospital, Sydney, Australia.

出版信息

J Physiol. 1990 Oct;429:113-29. doi: 10.1113/jphysiol.1990.sp018247.

Abstract
  1. Microneurographic techniques were used to isolate single afferent axons within cutaneous and motor fascicles of the median and ulnar nerves at the wrist in thirteen subjects. Of the sixty-five identified afferents, eleven innervated the interphalangeal and metacarpophalangeal joints, sixteen innervated muscle spindles, three innervated Golgi tendon organs and thirty-five supplied the glabrous skin of the hand. 2. Intrafascicular stimulation through the recording microelectrode, using trains of constant-voltage positive pulses (0.3-0.8 V, 0.1-0.2 ms, 1-100 Hz) or constant-current biphasic pulses (0.4-13.0 microA, 0.2 ms, 1-100 Hz), evoked specific sensations from sites associated with some afferent species but not others. 3. Microstimulation of eight of the eleven joint afferent sites (73%) evoked specific sensations. With four, subjects reported innocuous deep sensations referred to the relevant joint. With the other four, the subjects reported a sensation of joint displacement that partially reflected the responsiveness of the afferents to joint rotation. 4. Microstimulation of fourteen of the sixteen muscle spindle afferent sites (88%) generated no perceptions when the stimuli did not produce overt movement. However, subjects could correctly detect the slight movements generated when the stimuli excited the motor axons to the parent muscle. 5. With seven of the nine rapidly adapting (type RA or FAI) cutaneous afferents (88%) microstimulation evoked sensations of 'flutter-vibration', and with two of eight slowly adapting (type SAI) afferents (25%) it evoked sensations of 'sustained pressure'. Of the eighteen SAII afferents, which were classified as such by their responses to planar skin stretch, the majority (83%) generated no perceptions, confirming previous work, but three evoked sensations of movements or pressure. 6. The present results suggest a relatively secure transmission of joint afferent traffic to perceptual levels, and it is concluded that the human brain may be able to synthesize meaningful information on joint displacement on the basis of impulses in a single joint afferent. This could partly compensate for the low responsiveness of individual joint afferents within the physiological range of joint displacements. Although single muscle spindle afferents can adequately encode joint position and movement, the results suggest that the brain needs the information from more than one muscle spindle afferent to perceive changes in joint angle.
摘要
  1. 对13名受试者使用微神经图技术,在腕部正中神经和尺神经的皮支和运动束内分离出单根传入轴突。在65根已识别的传入神经中,11根支配指间关节和掌指关节,16根支配肌梭,3根支配高尔基腱器官,35根支配手部无毛皮肤。2. 通过记录微电极进行束内刺激,使用恒定电压正脉冲序列(0.3 - 0.8V,0.1 - 0.2ms,1 - 100Hz)或恒定电流双相脉冲(0.4 - 13.0μA,0.2ms,1 - 100Hz),可从与某些传入神经类型相关的部位诱发特定感觉,但与其他类型无关。3. 对11个关节传入部位中的8个(73%)进行微刺激可诱发特定感觉。其中4个部位,受试者报告有牵涉到相关关节的无害深部感觉。另外4个部位,受试者报告有关节移位的感觉,这部分反映了传入神经对关节旋转的反应性。4. 当刺激未产生明显运动时,对16个肌梭传入部位中的14个(88%)进行微刺激未产生感觉。然而,当刺激兴奋支配母肌的运动轴突产生轻微运动时,受试者能够正确检测到。5. 对9个快速适应(RA型或FAI型)皮肤传入神经中的7个(88%)进行微刺激可诱发“颤振”感觉,对8个缓慢适应(SAI型)传入神经中的2个(25%)进行微刺激可诱发“持续压力”感觉。在18个根据对平面皮肤拉伸的反应分类为SAII的传入神经中,大多数(83%)未产生感觉,这证实了先前的研究,但有3个诱发了运动或压力感觉。6. 目前的结果表明关节传入信息相对可靠地传递到感知水平,并且得出结论,人类大脑可能能够根据单个关节传入神经的冲动合成有关关节移位的有意义信息。这可以部分补偿在关节移位生理范围内单个关节传入神经的低反应性。虽然单个肌梭传入神经能够充分编码关节位置和运动,但结果表明大脑需要来自多个肌梭传入神经的信息才能感知关节角度的变化。

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