Zeher Michael J, Armiger Robert S, Burck James M, Moran Courtney, Kiely Janid Blanco, Weeks Sharon R, Tsao Jack W, Pasquina Paul F, Davoodi R, Loeb G
Johns Hopkins Applied Physics Laboratory (JHU/APL), USA.
Stud Health Technol Inform. 2011;163:730-6.
The Revolutionizing Prosthetics 2009 program conducted by the Defense Advanced Research Projects Agency (DARPA) has resulted in a Virtual Integration Environment (VIE) that provides a common development platform for researchers and clinicians that design, model and build prosthetic limbs and then integrate and test them with patients. One clinical need that arose during the VIE development was a feature to easily create and model animations that represent patient activities of daily living (ADLs) and simultaneously capture real-time surface EMG activity from the residual limb corresponding to the ADLs. An application of this feature is being made by the Walter Reed Military Amputee Research Program (MARP) where they are utilizing the VIE to investigate methods of reducing upper extremity amputee phantom limb pain (PLP).
美国国防高级研究计划局(DARPA)开展的“2009年革命性假肢”项目打造出了一个虚拟集成环境(VIE),为设计、建模和制造假肢肢体,然后将其与患者进行集成和测试的研究人员及临床医生提供了一个通用开发平台。在VIE开发过程中出现的一项临床需求是,要有一项功能能够轻松创建和建模代表患者日常生活活动(ADL)的动画,同时捕捉与这些ADL相对应的残肢实时表面肌电图活动。沃尔特·里德军事截肢者研究项目(MARP)正在应用这一功能,他们利用VIE来研究减轻上肢截肢者幻肢痛(PLP)的方法。