论文 · 随机对照试验
功能近红外引导脑机接口促进中风后观察性模仿
Using a functional near-infrared spectroscopy-guided brain-computer interface to facilitate observational imitation after stroke
作者:Jack Jiaqi Zhang, Ruixuan Lin, Roy Rongyue Zeng, Michael Tang, Sofina S Y Chan, Bella Bingbing Zhang, Rui Sun, Georg S Kranz, Stephen C L Lau, Michael Lührs, Kenneth N K Fong, Klaus Mathiak 等 14 人
Ann Phys Rehabil Med · 2026年6月26日 · Zhang 等 14 位作者
不需要生物学背景,多打比方
正在获取全文并生成讲解(拿不到全文就依据摘要)…
已等待 0 秒大约需要 10–20 秒
可以先看别的,做好了会自动出现在这里。
这篇还没有动画
动画会把研究的流程、作用机制和关键结果一步一步演示出来,每一步都标明出自原文哪里。制作大约需要一两分钟。
摘要Abstract
BACKGROUND: A brain-computer interface (BCI) shows promise for facilitating motor imagery (MI) during observational imitation motor relearning of the upper extremity in people after stroke.
OBJECTIVE: To investigate the efficacy and mechanisms of a functional near-infrared spectroscopy (fNIRS)-based BCI in augmenting MI during observational imitation for poststroke upper extremity rehabilitation.
METHODS: A randomized trial was conducted among participants after stroke. In the real fNIRS-BCI group, participants engaged in kinesthetic MI. When the activation level over the corticomotor areas recorded by fNIRS surpassed a predefined threshold, an instructional video showing the target movement was triggered, and participants were instructed to observe and imitate the movement. The sham group received feedback at constant intervals without being contingent on individual brain signals. Upper extremity motor tests and mirror visual feedback (MVF)-induced sensorimotor event-related desynchronization (ERD) were assessed before and after intervention. MI-induced oxygenated hemoglobin (HbO) concentrations were extracted from participants receiving fNIRS-BCI.
RESULTS: Forty-four participants were enrolled. Observational imitation with or without BCI was effective in enhancing upper extremity function. However, there were no between-group differences in upper extremity motor improvement. fNIRS-BCI-driven observational imitation significantly enhanced MVF-induced beta sensorimotor ERD bilaterally more than sham BCI did. In participants receiving fNIRS-BCI, the capacity to upregulate MI-induced HbO over the ipsilesional sensorimotor cortex and supplementary motor area was significantly enhanced post-intervention.
CONCLUSION: fNIRS-BCI shows promise for monitoring real-time brain activity during rehabilitation and enhancing the participants' ability to upregulate corticomotor activity through neurofeedback; however, it did not yield superior benefits in upper extremity measures. fNIRS-BCI may improve brain responsiveness to visual feedback after stroke. Future research should determine how these neurophysiological effects can be translated into better clinical outcomes.
TRIAL REGISTRATION: NCT06503484.
还没有查过关联研究
我会去找这篇研究之前的基础工作、做类似事情的研究,以及之后引用它的研究,并说明每篇为什么相关。