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Controlled and selective activation of peripheral nerves using a multi -contact self -sizing spiral cuff electrode.

机译:使用多触点自定尺寸螺旋袖带电极可控制和选择性激活周围神经。

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摘要

Four contact, monopolar nerve cuff electrodes were successfully used to selectively activate each of four motor fascicles within a multi-fascicular nerve trunk and to produce the linear addition of the individual torque outputs. Present-day motor prostheses, using either electrodes on the skin surface or implanted on or in a muscle, require a separate electrode and lead for each muscle that is to be activated. As the motor prosthesis field advances, improved performance will require the selective control of many muscles. This work supports the hypothesis that a multiple monopolar contacts in a nerve cuff can activate selectively many muscles. Self-sizing spiral nerve cuff electrodes were used to deliver 10musec rectangular pulses to the cat sciatic nerve. The isometric torque about the ankle was measured in three dimensions: plantar flexion, lateral rotation, and inversion. In the first series of experiments six different animals were each implanted with a twelve contact nerve cuff electrode through which both tripolar and monopolar stimulation was applied. Both the torque output and the repeatability of monopolar and tripolar stimulation were found to be statistically within one standard deviation of each other. In the second series of experiments the torque outputs produced using a nerve cuff electrode with four monopolar contacts were compared to the torque outputs produced by individual cuff electrodes placed on each branch of the sciatic nerve. In each of the 10 cases attempted, multiple contacts were successfully used to achieve the force output of a fascicle not achieved with a single contact. Further, the torque outputs were shown to be a result of the full and selective activation of the corresponding fascicle. In the third series of experiments individual torque outputs produced by activation of different sets of nerve fibers were shown to add linearly when an appropriate delay between stimuli was applied. For each amplitude and location around each nerve tested, the range of delays between 700 and 900musec were shown to be appropriate. The results of this research support the hypothesis that a multiple contact, monopolar nerve cuff can be used to control the net torque output about a joint.
机译:四个接触式单极神经袖带电极已成功用于选择性激活多束神经干内的四个运动束中的每一个,并产生单个扭矩输出的线性相加。当今的运动假体,使用皮肤表面上的电极或植入肌肉中或肌肉中的电极,需要单独的电极并为要激活的每条肌肉引出导线。随着运动假体领域的发展,提高性能将需要选择性控制许多肌肉。这项工作支持这样的假设,即神经套中的多个单极接触可以选择性激活许多肌肉。自定尺寸的螺旋神经袖带电极用于向猫坐骨神经传递10musec矩形脉冲。围绕脚踝的等距扭矩在三个维度上进行测量:plant屈,侧向旋转和内翻。在第一个实验系列中,六只不同的动物分别植入了十二个接触神经套囊电极,通过该电极施加了三极和单极刺激。发现扭矩输出以及单极和三极刺激的可重复性在统计学上均在彼此的一个标准偏差内。在第二系列实验中,将使用具有四个单极触点的神经袖带电极产生的扭矩输出与放置在坐骨神经各分支上的单个袖带电极产生的扭矩输出进行了比较。在尝试的10种情况中的每一种中,成功使用多个接触来实现无法通过单个接触实现的束输出力。此外,扭矩输出显示为相应束的完全和选择性激活的结果。在第三组实验中,当在刺激之间施加适当的延迟时,由不同组神经纤维的激活产生的单个扭矩输出显示为线性增加。对于每个受测神经周围的每个振幅和位置,显示的延迟范围在700至900musec之间是合适的。这项研究的结果支持这样的假设,即多接触单极神经套囊可用于控制关节的净扭矩输出。

著录项

  • 作者

    Tarler, Matthew David.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Biomedical engineering.;Neurosciences.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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