首页> 外文期刊>Journal of Rehabilitation and Assistive Technologies Engineering >Cortical brain activity in transfemoral or knee-disarticulation prosthesis users performing single- and dual-task walking activities
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Cortical brain activity in transfemoral or knee-disarticulation prosthesis users performing single- and dual-task walking activities

机译:经粉的皮质脑活动或膝关节血液假肢用户进行单一和双任务步行活动

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Introduction Walking with a prosthesis while performing secondary tasks increases demand on cognitive resources, compromising balance and gait. This study investigated effects of a secondary task on patterns of brain activity and temporospatial gait parameters in individuals using a prosthesis with or without a microprocessor-controlled prosthetic knee(MPK) and controls. Methods A cross-sectional study with repeated measures was performed. Twenty-nine individuals with amputations and 16 controls were recruited. Functional near-infrared spectroscopy was used to evaluate changes in oxygenated and de-oxygenated haemoglobin in the prefrontal cortex and temporospatial variables during single-and dual-task walking. Results Differences in brain activity were observed within the MPK-group and controls without changes in temporospatial parameters. The Trail-Walking test was associated with highest levels of brain activity in both groups. No differences were observed between single- and dual-task walking in the non-MPK-group (p??0.05). The Non-MPK and the MPK-group recorded higher levels of brain activity than controls during single-task walking and poorer results on temporospatial variables compared to controls. Conclusions For the MPK-group and controls, introduction of a secondary task led to an increase in brain activity. This was not seen in the Non-MPK-group. Significant differences in brain activity were observed in the absence of changes in temporospatial parameters.
机译:简介在执行二次任务的同时,在执行二级任务的同时,对认知资源的需求增加,损害平衡和步态。本研究研究了二次任务对使用具有微处理器控制的假体膝盖(MPK)和对照的假体的个体脑活动和颞缺乏间隙参数的影响。方法进行重复措施的横截面研究。招募了二十九个有截肢和16个控件的人。使用功能近红外光谱分析来评估单次和双任务步行期间预偏转皮层和透气性变量中的氧化和去氧化血红蛋白的变化。结果在MPK-GROUP和对照中观察到脑活动的差异而无需改变时间空间参数。步行步行测试与两组的最高水平的脑活动相关。在非MPK-GROUP中行走的单一和双任务之间没有观察到差异(P?> 0.05)。非MPK和MPK-Group在单任务步行期间记录更高水平的大脑活动,并且与对照相比,在一次任务步行期间的控制和较差的结果。结论为MPK-Group和对照,引入二次任务导致大脑活动的增加。这在非MPK集团中没有看到这一点。在没有时间空间参数的变化的情况下观察到脑活动的显着差异。

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