...
首页> 外文期刊>Journal of Neuroscience Methods >A pelvic implant orthosis in rodents, for spinal cord injury rehabilitation, and for brain machine interface research: Construction, surgical implantation and validation
【24h】

A pelvic implant orthosis in rodents, for spinal cord injury rehabilitation, and for brain machine interface research: Construction, surgical implantation and validation

机译:啮齿动物中的骨盆植入物矫形器,用于脊髓损伤的康复和脑机接口的研究:构造,手术植入和验证

获取原文
获取原文并翻译 | 示例

摘要

Background: Rodents are important model systems used to explore spinal cord injury (SCI) and rehabilitation, and brain machine interfaces (BMI). We present a new method to provide mechanical interaction for BMI and rehabilitation in rat models of SCI. New method: We present the design and implantation procedures for a pelvic orthosis that allows direct force application to the skeleton in brain machine interface and robot rehabilitation applications in rodents. We detail the materials, construction, machining, surgery and validation of the device. Results: We describe the statistical validation of the implant procedures by comparing stepping parameters of 8 rats prior to and after implantation and surgical recovery. An ANOVA showed no effects of the implantation on stepping. Paired tests in the individual rats also showed no effect in 7/8 rats and minor effects in the last rat, within the group's variance. Comparison with existing methods: Our method allows interaction with rats at the pelvis without any perturbation of normal stepping in the intact rat. The method bypasses slings, and cuffs, avoiding cuff or slings squeezing the abdomen, or other altered sensory feedback. Our implant osseointegrates, and thus allows an efficient high bandwidth mechanical coupling to a robot. The implants support quadrupedal training and are readily integrated into either treadmill or overground contexts. Conclusions: Our novel device and procedures support a range of novel experimental designs and motor tests for rehabilitative and augmentation devices in intact and SCI model rats, with the advantage of allowing direct force application at the pelvic bones.
机译:背景:啮齿动物是用于探索脊髓损伤(SCI)和康复以及脑机接口(BMI)的重要模型系统。我们提出了一种新的方法,为SCI大鼠模型的BMI和康复提供机械相互作用。新方法:我们介绍了骨盆矫形器的设计和植入程序,该方法可以在脑机接口中直接向骨骼施加力,并在啮齿动物中使机器人康复。我们详细介绍了设备的材料,构造,加工,手术和验证。结果:我们通过比较8只大鼠在植入和手术恢复前后的步进参数来描述植入程序的统计学验证。方差分析显示植入对步进没有影响。在该组的差异范围内,在个别大鼠中进行的配对测试还显示,对7/8只大鼠没有影响,而对最后一只大鼠则有轻微影响。与现有方法的比较:我们的方法允许与大鼠在骨盆处进行交互,而不会干扰完整大鼠的正常踏步。该方法绕过吊带和袖带,避免袖带或吊带挤压腹部或其他改变的感觉反馈。我们的植入物骨整合,因此可以有效地将高带宽机械耦合到机器人。植入物支持四足训练,可轻松集成到跑步机或地面环境中。结论:我们的新颖装置和程序支持完整的和SCI模型大鼠的康复和增强装置的一系列新颖的实验设计和运动测试,其优点是可以直接在骨盆骨上施加力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号