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用于功能性电刺激(FES)的通用控制单元的开发。

Development of a universal control unit for functional electrical stimulation (FES).

作者信息

Brandell B R

出版信息

Am J Phys Med. 1982 Dec;61(6):279-301.

PMID:6983299
Abstract

In collaboration with the College of Engineering the author has developed a laboratory, or clinic, based, battery operated "universal" control system, designed to improve disabled gait in upper motor neuron disabilities, especially stroke, hemiplegia, and cerebral palsy, by applying several channels of FES (Functional Electrical Stimulation) to the lower limb muscles while the patient is walking. The timing of the FES pulses, which can be applied to as many as six of the patient's muscles, is determined by potentiometer controlled one-shot timers, which are triggered by any of three switches in the sole of either shoe. Combinations of inverters, flip flops, AND gates and OR gates in the externally connected logic circuits determine the sequence of delays and pulses applied to the patient's muscles. This paper describes and diagrams some of the logic circuits and as an example of the possible application of the concept of a "universal" control unit reports the modifications of gait induced in a hemiplegic, four year post-stroke, patient. The characteristics of this patient's gait with FES in comparison to its characteristics without FES are demonstrated with motion picture frames, EMG recordings and graphic tracings of her right knee and ankle joint positions. They include more symmetrical timing of her right and left stance and swing phases, increased dorsiflexion of her right ankle in the swing phase, followed by a more distinct heel strike, and improved flexion--extension sequences of the knee and ankle joints and an increased heel rise in the stance phase. The author concludes that the gait characteristics of some hemiplegic patients will improve as they become adapted over a period of weeks or months to a control logic, which lessens their functional limitations by the use of a properly timed and amplified sequence of FES pulses. He suggests that the FES control requirements for individual patients should be determined experimentally with a control system "universally" adaptable to a wide range of disabilities, and that these control parameters could then determine the design of portable units, which may be used on a long term basis. These units would include only the operational options needed to duplicate the gait corrections found to be practicable for each individual patient, by the testing procedure, through a universal logic unit as described in this paper.

摘要

作者与工程学院合作,开发了一种基于实验室或诊所的、由电池供电的“通用”控制系统,旨在通过在患者行走时对下肢肌肉施加多个通道的功能性电刺激(FES),改善上运动神经元损伤,尤其是中风、偏瘫和脑瘫患者的残疾步态。FES脉冲的定时可应用于患者多达六块肌肉,由电位计控制的单稳态定时器确定,这些定时器由任何一只鞋鞋底的三个开关之一触发。外部连接的逻辑电路中的逆变器、触发器、与门和或门的组合决定了施加到患者肌肉的延迟和脉冲序列。本文描述并绘制了一些逻辑电路,并作为“通用”控制单元概念可能应用的一个例子,报告了一名中风后四年的偏瘫患者步态的改善情况。通过电影画面、肌电图记录以及她右膝和踝关节位置图形记录,展示了该患者在有FES和无FES情况下步态的特征。这些特征包括她左右站立和摆动阶段更对称的定时、摆动阶段右踝背屈增加,随后脚跟撞击更明显,以及膝关节和踝关节屈伸序列改善,站立阶段脚跟抬起增加。作者得出结论,一些偏瘫患者的步态特征会随着他们在数周或数月内适应一种控制逻辑而改善,这种控制逻辑通过使用定时适当且放大的FES脉冲序列减少了他们的功能限制。他建议,个体患者的FES控制要求应通过一个“通用”适用于广泛残疾的控制系统进行实验确定,然后这些控制参数可决定便携式设备的设计,这些设备可长期使用。这些设备将只包括通过测试程序,通过本文所述的通用逻辑单元,复制发现对每个个体患者可行的步态矫正所需的操作选项。

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