课题基金 / 基金详情

Development of a Bidirectional Brain Machine Interface

Development of a Bidirectional Brain Machine Interface
双向脑机接口的开发
批准号:
7056128
负责人:
Lee Miller
金额:
$69.33万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-05-01 至 2009-04-30

项目摘要

项目成果

Lee Miller的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):最近的技术进步使得使用直接从大脑获得的信号实时移动机器人设备成为可能。脑机接口(BMI)的这个领域有办法为瘫痪病人提供运动,为闭锁病人提供交流,并为整个社会更好地了解大脑。为了有效地控制运动,大脑必须能够适当地激活肌肉,并快速准确地监测不断变化的运动。现有的bmi虽然很出色,但在完成这些任务时,对完整的神经系统的模仿却很差。我们提出的工作通过开发一种双向界面来解决这些限制,这种界面以更自然的方式产生运动,并通过对大脑的直接电刺激提供有关运动的反馈。我们的合作伙伴包括西北大学(NU)、芝加哥大学(UC)、马萨诸塞大学、阿默斯特大学(UMass)和自治的墨西哥大学(UNAM)。合伙人拥有生物科学、计算机科学、物理、数学和工程学科的高级学位。米勒(NU)将协调合作关系。他在记录、刺激和行为规范方面有着丰富的经验。Hatsopoulos (UC)处于多电极记录领域的前沿。他是第一个证明灵长类动物在视觉引导下控制BMI的小组的主要成员。Barto (U Mass)在神经网络、机器学习和随机优化方面做了开创性的研究。Fagg(马萨诸塞大学)是一个权威的控制伸手和抓取机器人,学习与环境的互动。他们将共同开发用于引起运动的大脑活动的解码器。Romo (UNAM)在脑电刺激诱导的感知和决策过程研究方面处于世界领先地位。Solla (NU)是神经网络和信息理论方面的专家。有了Romo,她将开发出最佳的程序,在刺激训练中编码信息,向大脑提供反馈。Mussa-Ivaldi (NU)将专注于接口的整体设计和评估。他创造了有史以来第一个神经组织和机器人设备之间的双向界面。
英文摘要
DESCRIPTION (provided by applicant): Recent technological advances have made it possible to move a robotic device in real time, using signals obtained directly from the brain. This field of Brain Machine Interface (BMI) has the means to provide movement for paralyzed patients, communication for locked-in patients, and a better understanding of the brain for all of society. In order to control movement effectively, the brain must be able to activate muscles appropriately, and monitor the evolving movement quickly and precisely. Existing BMIs for, while remarkable, do each of these tasks in poor imitation of the intact nervous system. Our proposed work addresses these limitations by developing a bidirectional interface that produces movement in a more natural way, and provides feedback about the movement by direct, electrical stimulation of the brain. Our partnership includes members at Northwestern Univ (NU), Univ of Chicago (UC), Univ of Mass, Amherst (UMass), and the autonomous Univ of Mexico (UNAM). Partners have advanced degrees in a range of biological science, computer science, physics, mathematics, and engineering disciplines. Miller (NU) will coordinate the partnership. He has extensive experience with a wide range of recording, stimulation and behavioral protocols in behaving monkeys. Hatsopoulos (UC) is at the forefront of the field of multi-electrode recordings. He was a leading member of the first group to demonstrate visually guided BMI control by a primate. Barto (U Mass) has done pioneering research in neural networks, machine learning and stochastic optimization. Fagg (UMass) is an authority in the control of reaching and grasping robots that learn to interact with the environment. Together they will develop the decoders of activity from the brain used to cause movement. Romo (UNAM), is a world leader in studies of the perceptual and decision making processes induced by electrical stimulation of the brain. Solla (NU) is an expert in neural networks and information theory. With Romo, she will develop optimal routines to encode information in stimulus trains to provide feedback to the brain. Mussa-Ivaldi (NU) will focus on the overall design and evaluation of the interfaces. He created the first ever bidirectional interface between neural tissue and a robotic device.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Monkey-to-human transfer of trained iBCI decoders through nonlinear alignment of neural population dynamics
Robust modeling of within- and across-area population dynamics using recurrent neural networks
  • 批准号:
    10263644
  • 项目类别:
  • 资助金额:
    $131.25万
  • 财政年份:
    2021
  • 负责人:
    Lee Miller
  • 依托单位:
A primate model of an intra-cortically controlled FES prosthesis for grasp
A primate model of an intra-cortically controlled FES prosthesis for grasp
海外基金