首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Human Thalamic Somatosensory Nucleus (Ventral Caudal Vc) as a Locus for Stimulation by INPUTS from Tactile Noxious and Thermal Sensors on an Active Prosthesis
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Human Thalamic Somatosensory Nucleus (Ventral Caudal Vc) as a Locus for Stimulation by INPUTS from Tactile Noxious and Thermal Sensors on an Active Prosthesis

机译:人丘脑体感核(中央尾静脉Vc)为主动假体上来自触觉有毒和热传感器的INPUTS刺激的场所

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摘要

The forebrain somatic sensory locus for input from sensors on the surface of an active prosthesis is an important component of the Brain Machine Interface. We now review the neuronal responses to controlled cutaneous stimuli and the sensations produced by Threshold Stimulation at Microampere current levels (TMIS) in such a locus, the human thalamic Ventral Caudal nucleus (Vc). The responses of these neurons to tactile stimuli mirror those for the corresponding class of tactile mechanoreceptor fiber in the peripheral nerve, and TMIS can evoke sensations like those produced by the stimuli that optimally activate each class. These neuronal responses show a somatotopic arrangement from lateral to medial in the sequence: leg, arm, face and intraoral structures. TMIS evoked sensations show a much more detailed organization into anterior posteriorly oriented rods, approximately 300 microns diameter, that represent smaller parts of the body, such as parts of individual digits. Neurons responding to painful and thermal stimuli are most dense around the posterior inferior border of Vc, and TMIS evoked pain sensations occur in one of two patterns: (i) pain evoked regardless of the frequency or number of spikes in a burst of TMIS; and (ii) the description and intensity of the sensation changes with increasing frequencies and numbers. In patients with major injuries leading to loss of somatic sensory input, TMIS often evokes sensations in the representation of parts of the body with loss of sensory input, e.g., the phantom after amputation. Some patients with these injuries have ongoing pain and pain evoked by TMIS of the representation in those parts of the body. Therefore, thalamic TMIS may produce useful patterned somatotopic feedback to the CNS from sensors on an active prosthesis that is sometimes complicated by TMIS evoked pain in the representation of those parts of the body.
机译:从活动假体表面上的传感器输入的前脑体感官位置是脑机接口的重要组成部分。现在,我们在这样的一个位置(人丘脑腹侧尾核(Vc))中,回顾了对受控皮肤刺激的神经元反应以及阈值刺激在微安培电流水平(TMIS)下产生的感觉。这些神经元对触觉刺激的反应与周围神经中相应类别的触觉机械感受器纤维的反应相似,并且TMIS可以唤起类似刺激的刺激,从而最佳地激活每个类别。这些神经元反应显示出从外侧到内侧的体位排列顺序:腿,臂,脸和口腔内结构。 TMIS引起的感觉显示出直径约300微米的前向后定向杆组织得更为详细,这些杆代表身体的较小部分,例如单个手指的部分。在Vc的后下边界附近,对疼痛和热刺激作出反应的神经元最密集,TMIS引起的疼痛感觉以两种方式之一发生: (ii)感觉的描述和强度随频率和数字的增加而变化。在严重受伤导致躯体感觉输入缺失的患者中,TMIS通常会在感觉输入缺失(例如截肢后的体模)上引起身体部位代表的感觉。一些患有这些伤害的患者在身体的那些部位中持续疼痛和由TMIS引起的疼痛。因此,丘脑TMIS可能会从活动假体上的传感器向CNS产生有用的图案化体位反馈,有时会由于TMIS引起的身体那些部位疼痛而变得复杂。

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