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Collaborative Approach in the Development of High‐Performance Brain–Computer Interfaces for a Neuroprosthetic Arm: Translation from Animal Models to Human Control

机译:人工神经高性能脑计算机接口开发中的协作方法:从动物模型到人体控制的翻译

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摘要

Our research group recently demonstrated that a person with tetraplegia could use a brain–computer interface (BCI) to control a sophisticated anthropomorphic robotic arm with skill and speed approaching that of an able‐bodied person. This multiyear study exemplifies important principles in translating research from foundational theory and animal experiments into a clinical study. We present a roadmap that may serve as an example for other areas of clinical device research as well as an update on study results. Prior to conducting a multiyear clinical trial, years of animal research preceded BCI testing in an epilepsy monitoring unit, and then in a short‐term (28 days) clinical investigation. Scientists and engineers developed the necessary robotic and surgical hardware, software environment, data analysis techniques, and training paradigms. Coordination among researchers, funding institutes, and regulatory bodies ensured that the study would provide valuable scientific information in a safe environment for the study participant. Finally, clinicians from neurosurgery, anesthesiology, physiatry, psychology, and occupational therapy all worked in a multidisciplinary team along with the other researchers to conduct a multiyear BCI clinical study. This teamwork and coordination can be used as a model for others attempting to translate basic science into real‐world clinical situations.
机译:我们的研究小组最近证明,四肢瘫痪的人可以使用脑机接口(BCI)来控制复杂的拟人化机械臂,其技能和速度接近健壮的人。这项历时多年的研究例证了将研究从基础理论和动物实验转化为临床研究的重要原理。我们提供的路线图可作为其他临床设备研究领域的示例以及研究结果的更新。在进行多年临床试验之前,先进行多年的动物研究,然后在癫痫监测单元中进行BCI测试,然后进行短期(28天)临床研究。科学家和工程师开发了必要的机器人和手术硬件,软件环境,数据分析技术以及培训范例。研究人员,资助机构和监管机构之间的协调确保了这项研究将在安全的环境中为研究参与者提供有价值的科学信息。最后,来自神经外科,麻醉学,物理,心理学和职业疗法的临床医生都与其他研究人员一起在一个多学科团队中开展了一项为期多年的BCI临床研究。这种团队合作和协调可以用作其他尝试将基础科学转化为现实世界临床情况的模型。

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