EMG showed a delayed nerve conduction velocity.
肌电图示周围神经传导速度减慢。
Normal wave figure in EMG was noted in the experimental side.
实验侧肱二头肌和指深屈肌肌电图均呈正常波形;
At last, the well output effect was gotten by the EMG signal of patients.
最后,通过病人的肌电信号,得到了良好的输出结果。
Methods: The ENG and EMG data of 92 patients with idiopathic facial palsy were analy sized.
方法:对92例特发性面瘫患者的神经电图和肌电图检查结果进行分析。
Interfering EMG at muscle constriction contains complex information of neural system and muscle.
肌收缩时发放的干扰型肌电含有神经肌肉的丰富信息。
Parametric Autoregressive (ar) model is the traditional time-domain EMG signal analyzing method.
自回归(AR)参数模型是传统的肌电信号时域分析方法。
Extract and analyse part of neuromuscular signals, design an analyse and disposal software of EMG.
对部分神经肌肉电信号进行了提取分析,设计了肌电图分析处理软件。
Objective: To observe the relation of EMG and muscle paralysis of tick_borne encephalitis patients.
目的:观察森林脑炎病人肌电图运动单元电位的改变与肌肉瘫痪发生率的关系。
It has been evidenced that integrated EMG is linearly associated with force in isometric contractions.
肌肉等长收缩时肌电积分与肌力间已被认定存在着线性关系。
Conclusions Closed-loop EMG feedback electric stimulation can enhance the motor function of hemiplegia.
结论闭环肌电反馈电刺激可促进早期偏瘫患者患肢运动功能恢复。
Luna USES electromyography, or EMG, to identify electrical currents as patients bend their arms or legs.
月神采用肌电图描记法来识别患者弯曲胳膊和腿时的电流。
Objective To study the location diagnostic value of inching test and routine EMG in Cubital Canal Syndrome.
目的研究微移试验与神经电图对肘管综合征的定位诊断价值。
And it also offer EMG standard figure, normal value data, nerve and muscle select scheme etc, for reference.
同时系统给出肌电图标准图形、正常值数据、神经和肌肉选择方案及诊断标准等,可供随时参考。
Surface electromyography (SEMG) has been proved to be a successful method of non-invasive measurement of EMG.
表面肌电信号(SEMG)是使用方便且无痛苦的表面电极测得的肌电信号。
Few researchers have investigated the EMG activation levels of shoulder muscles during PNF diagonal exercises.
极少数的研究者通过肌电图来研究了在PNF对角线运动中肩部肌肉的活化水平。
Objective To compare the EMG of children with peripheral nerve injuries before and after rehabilitation treatment.
目的观察儿童神经损伤后采用康复治疗的肌电变化。
Then, in 1987, the company released the shell guide to environmental management (EMG), and in 1992 revised reprint.
接着,在1987年,壳牌公司发布了环境管理指南(EMG),并于1992年修订再版。
Conclusions: EMG and MCV are reliable and effective methods to diagnose and judge the degree of peripheral nerve injury.
结论:对周围神经损伤的定位和损伤程度的诊断,EMG和MCV是可靠和有效的方法。
The key determinant of respiration function is based on respiration mode, whose information is provided by respiration EMG.
判定呼吸功能的关键在于呼吸模式的建立,呼吸肌电信号具有建立呼吸模式所需的信息。
Design an analyse and process database of EMG signals for carry on effective analysis to the characteristic of EMG signals.
为了对肌电信号的特性进行更有效的分析,设计了肌电信号分析处理数据库。
So while false positives from the signal are possible, the combination of EEG and EMG data makes a false positive much less likely.
因此尽管可能出现假阳性信号,但是脑电图和肌电图的组合可以将假阳性的几率大幅降低。
The EMG average amplitude was increased with the increase of the trunk rotation angle without significant difference (P>0.05).
随躯干旋转角度的增加,竖脊肌肌电幅度呈升高的趋势,但差异无统计学意义(P>0.05)。
Objective To access the curative effect of EMG feedback nerve rehabilitation instrument on convalescents with acute cerebral infarction.
目的评价肌电反馈神经康复重建仪对急性脑梗死恢复期肌力康复的疗效。
Conclusion. Surface EMG can be used successfully in distinguishing chronic pain patients and controls, and efficacy of treatment regimes.
结论:表面肌电图可以成功的鉴别慢性疼痛和正常人,可以有效的用来评估治疗结果。
Objective:To study the characteristics of surface electromyogram(EMG) signals and to realize the quantitative analysis during muscle fatigue.
目的:研究肌肉疲劳过程中表面肌电信号的特征,实现疲劳状态的定量描述。
Objective To investigate the routine needle electromyography (EMG) findings and its diagnostic value in patients with myasthenia gravis (MG).
目的研究重症肌无力(MG)患者常规针极肌电图(EMG)表现及其诊断价值。
The paper suggested that EMG and MCV were reliable and effective methods in level diagnosis and judgment of degree on injured peripheral nerves.
本文认为对周围神经损伤的定位和损伤程度的判断EMG和MCV是可靠和有效的方法。
Objective:To study the difference of electromyography(EMG) and muscle enzyme(ME) in the progression of polymyositis(PM) and dermatomyositis(DM).
目的:探讨多发性肌炎和皮肌炎起病不同时间的肌电图与肌酶的演变规律。
These muscle movements are detected by electromyography (EMG) sensors on the skin, and the signals are translated into movements by the prosthetic.
皮肤上的肌电图扫描感受器检测这些肌肉运动,然后信号通过假肢转换成运动。
These muscle movements are detected by electromyography (EMG) sensors on the skin, and the signals are translated into movements by the prosthetic.
皮肤上的肌电图扫描感受器检测这些肌肉运动,然后信号通过假肢转换成运动。
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