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首页> 外文期刊>Neurorehabilitation and neural repair >Hemiparetic stepping to the beat: asymmetric response to metronome phase shift during treadmill gait.
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Hemiparetic stepping to the beat: asymmetric response to metronome phase shift during treadmill gait.

机译:偏瘫步伐:跑步机步态对节拍器相移的不对称响应。

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BACKGROUND: Walking in time with a metronome is associated with improved spatiotemporal parameters in hemiparetic gait; however, the mechanism linking auditory and motor systems is poorly understood. OBJECTIVE: Hemiparetic cadence control with metronome synchronization was examined to determine specific influences of metronome timing on treadmill walking. METHODS: A within-participant experiment examined correction processes used to maintain heel strike synchrony with the beat by applying perturbations to the timing of a metronome. Eight chronic hemiparetic participants (mean age = 70 years; standard deviation = 12) were required to synchronize heel strikes with metronome pulses set according to each individual's comfortable speed (mean 0.4 m/s). During five 100-pulse trials, a fixed-phase baseline was followed by 4 unpredictable metronome phase shifts (20% of the interpulse interval), which amounted to 10 phase shifts on each foot. Infrared cameras recorded the motion of bilateral heel markers at 120 Hz. Relative asynchrony between heel strike responses and metronome pulses was used to index compensation for metronome phase shifts. RESULTS: Participants demonstrated compensation for phase shifts with convergence back to pre-phase shift asynchrony. This was significantly slower when the error occurred on the nonparetic side (requiring initial correction with the paretic limb) compared with when the error occurred on the paretic side (requiring initial nonparetic correction). CONCLUSIONS: Although phase correction of gait is slowed when the phase shift is delivered to the nonparetic side compared with the paretic side, phase correction is still present. This may underlie the utility of rhythmic auditory cueing in hemiparetic gait rehabilitation.
机译:背景:节拍器及时走动与偏瘫步态时空参数的改善有关。然而,人们对听觉和运动系统之间的联系机制知之甚少。目的:研究节拍器同步控制下的半程踏频控制,以确定节拍器计时对跑步机行走的特定影响。方法:参加者内部实验检查了校正过程,该校正过程用于通过对节拍器的定时施加扰动来保持脚跟打击与节拍同步。要求八名慢性半肝病患者(平均年龄= 70岁;标准差= 12)将脚跟打击与根据每个人的舒适速度(平均0.4 m / s)设置的节拍器脉冲同步。在五次100脉冲试验中,固定相位基线之后是4个不可预测的节拍器相移(占脉冲间隔的20%),每英尺共10个相移。红外热像仪记录了120 Hz时双侧脚后跟标记的运动。脚跟打击响应和节拍器脉冲之间的相对异步被用于索引节拍器相移的补偿。结果:参与者证明了相移补偿,并收敛到预相移异步。当错误发生在非坐骨侧(需要对肢体进行初次矫正)时,与发生错误的坐骨神经侧(需要进行初次非坐骨矫正)相比,速度要慢得多。结论:尽管相移传递到非特征侧时步态的相位校正比拟侧要慢,但是仍然存在相位校正。这可能是节奏性听觉提示在偏瘫步态康复中的作用。

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