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Computer-aided training sensorimotor cortex functions in humans before the upper limb transplantation using virtual reality and sensory feedback

机译:计算机辅助培训Sensorimotor在使用虚拟现实和感官反馈的上肢移植之前在人体中的函数

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摘要

One of the biggest problems of upper limb transplantation is lack of certainty as to whether a patient will be able to control voluntary movements of transplanted hands. Based on findings of the recent research on brain cortex plasticity, a premise can be drawn that mental training supported with visual and sensory feedback can cause structural and functional reorganization of the sensorimotor cortex, which leads to recovery of function associated with the control of movements performed by the upper limbs. In this study, authors based on the above observations propose the computer-aided training (CAT) system, which generating visual and sensory stimuli, should enhance the effectiveness of mental training applied to humans before upper limb transplantation. The basis for the concept of computer-aided training system is a virtual hand whose reaching and grasping movements the trained patient can observe on the VR headset screen (visual feedback) and whose contact with virtual objects the patient can feel as a touch (sensory feedback). The computer training system is composed of three main components: (1) the system generating 3D virtual world in which the patient sees the virtual limb from the perspective as if it were his/her own hand; (2) sensory feedback transforming information about the interaction of the virtual hand with the grasped object into mechanical vibration; (3) the therapist's panel for controlling the training course. Results of the case study demonstrate that mental training supported with visual and sensory stimuli generated by the computer system leads to a beneficial change of the brain activity related to motor control of the reaching in the patient with bilateral upper limb congenital transverse deficiency.
机译:上肢移植的最大问题之一缺乏确定性是否能够控制移植手的自愿运动。基于最近关于脑皮质可塑性研究的研究结果,可以绘制具有视觉和感官反馈的心理训练可能导致感官电流皮层的结构和功能重组,这导致恢复与执行的运动控制相关的功能由上肢。在本研究中,基于上述观测的作者提出了一种计算机辅助培训(CAT)系统,其产生视觉和感觉刺激,应增强在上肢移植之前应用于人类的精神训练的有效性。计算机辅助培训系统的概念的基础是虚拟手,其到达和抓握运动训练有素的患者可以在VR耳机屏幕(视觉反馈)上观察,并且患者患者的虚拟物体的接触可以感觉到触摸(感官反馈)。计算机培训系统由三个主要组成部分组成:(1)系统生成3D虚拟世界,其中患者从视角下看到虚拟肢体,好像它是他/她自己的手; (2)感觉反馈转换有关虚拟手与掌握物体进入机械振动的信息的信息; (3)治疗师的控制培训课程专家组。案例研究结果表明,计算机系统产生的视觉和感官刺激支持的心理训练导致与患者在患者中的电机控制有关的大脑活动的有益变化,具有双侧上肢先天性横向缺陷。

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