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Advanced modeling environment for developing and testing FES control systems.

机译:用于开发和测试FES控制系统的高级建模环境。

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摘要

Realistic models of neuromusculoskeletal systems can provide a safe and convenient environment for the design and evaluation of controllers for functional electrical stimulation (FES) prior to clinical trials. We have developed a set of integrated musculoskeletal modeling tools to facilitate the model building process. Simulink models of musculoskeletal systems are created using two software packages developed in our laboratory, Musculoskeletal Modeling in Simulink (MMS) and virtual muscle, in addition to one software package available commercially, SIMM (Musculographics Inc., USA). MMS converts anatomically accurate musculoskeletal models generated by SIMM into Simulink(R) blocks. It also removes run-time constraints on kinetic simulations in SIMM, and allows the development of complex musculoskeletal models without writing a line of code. Virtual muscle builds realistic Simulink models of muscles responding to either natural recruitment or FES. Models of sensorimotor control systems can be developed using various Matlab(R) (Mathworks Inc., USA) toolboxes and integrated easily with these musculoskeletal blocks in the graphical environment of Simulink.
机译:神经肌肉骨骼系统的现实模型可以为临床试验之前的功能性电刺激(FES)控制器的设计和评估提供安全便捷的环境。我们已经开发了一套集成的肌肉骨骼建模工具,以促进模型构建过程。除了使用市售的一个软件包SIMM(美国Musculographics Inc.)外,还使用我们实验室开发的两个软件包Simulink中的肌肉骨骼建模(MMS)和虚拟肌肉来创建肌肉骨骼系统的Simulink模型。 MMS将SIMM生成的解剖学上精确的肌肉骨骼模型转换为Simulink(R)模块。它还消除了SIMM中动力学模拟的运行时约束,并且无需编写任何代码即可开发复杂的肌肉骨骼模型。虚拟肌肉建立对自然募集或FES响应的逼真的Simulink肌肉模型。感觉运动控制系统的模型可以使用各种Matlab(R)(Mathworks Inc.,美国)工具箱进行开发,并可以在Simulink图形环境中轻松地与这些肌肉骨骼模块集成。

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