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Coil positioning system for repetitive transcranial magnetic stimulation treatment by ToF camera ego-motion

机译:通过ToF相机自我运动重复经颅磁刺激治疗的线圈定位系统

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Repetitive transcranial magnetic stimulation (rTMS) is a non-invasive method for treating various neurological and psychiatric disorders. With the growing demands of neuropathic pain patients and their increasing numbers, rTMS treatment tools are becoming more necessary. rTMS uses electromagnetic induction to induce weak electric currents by rapidly changing the magnetic field. Targeting the electric current to a specific part of the brain is one treatment for pain relief. This paper focuses on treatment for neuropathic pain caused by a lesion or disease of the central or peripheral nervous system, including stroke, trauma, or surgery. However, the current style of rTMS treatment is still developing and is so technically specialized that only a limited number of hospitals and only a handful of specialists can provide this therapy. The existing rTMS systems use an optical markerbased 3D sensing technique that positions the stimulation coil to target the small region of interest in the brain through coregistration with pre-scanned MRI data. This system requires the patient to be immobilized on a bed. The optical markers for 3D sensing are placed on the patient's head to maintain accurate positioning. We propose a constraints-free, markerless rTMS system, which employs ego-motion, a computation technique to estimate relative 3D motion of a camera to what the camera sees. We use a ToF sensor as a camera, which is capble of capturing shape information from a single viewpoint instantly. The markerless target spot is based on the shape features of the patient's face. This paper shows the process of a prototype system and its potential for achieving an easy-to-handle system framework.
机译:重复经颅磁刺激(rTMS)是一种用于治疗各种神经系统和精神疾病的非侵入性方法。随着对神经性疼痛患者的需求不断增长以及他们的人数不断增加,rTMS治疗工具变得越来越必要。 rTMS使用电磁感应通过快速改变磁场来感应弱电流。将电流定向到大脑的特定部位是缓解疼痛的一种治疗方法。本文重点介绍由中枢或周围神经系统病变或疾病(包括中风,创伤或手术)引起的神经性疼痛的治疗。但是,目前的rTMS治疗方式仍在发展,并且在技术上如此专业化,以致仅少数医院和少数专家可以提供这种疗法。现有的rTMS系统使用基于光学标记的3D传感技术,该技术将刺激线圈放置在目标位置,从而通过与预扫描的MRI数据共心对准目标大脑中的小区域。该系统要求将患者固定在床上。用于3D感测的光学标记器放置在患者的头部上,以保持精确的定位。我们提出了一种无约束,无标记的rTMS系统,该系统采用自我运动,这是一种计算技术,可以估算摄像机相对于摄像机所看到的相对3D运动。我们使用ToF传感器作为相机,可以立即从单个视点捕获形状信息。无标记目标点基于患者面部的形状特征。本文展示了原型系统的过程及其在实现易于使用的系统框架方面的潜力。

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