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一种用于表征与行走相关的足底体感刺激的脊髓上处理的磁共振成像兼容系统。

An MRI-Compatible System for Characterizing Supraspinal Processing of Walking-Related Foot-Sole Somatosensory Stimulation.

作者信息

Yue Hao, Shen Bin, Chen Yishu, Zhang Yufeng, Lu Jiaojiao, Li Shaobo, Manor Brad, Fu Weijie, Zhou Junhong

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2025;33:1372-1380. doi: 10.1109/TNSRE.2025.3555852. Epub 2025 Apr 16.

Abstract

Foot soles are the only part in direct contact with the ground during walking. The mechanoreceptors on foot soles continuously obtain somatosensory information (e.g., ground reaction forces) that is delivered to spinal and supraspinal networks. The timely and accurate supraspinal processing of such information, which can be captured by the activation of the supraspinal regions, is critical to the regulation of walking. However, little is known about supraspinal somatosensory processing related to walking. Characterizing the supraspinal response to walking-related somatosensory inputs using MRI is challenging, because individuals are required to stay motionless during MRI scan. We thus developed a stimulation system that simulates the amplitude and timing of foot-sole pressure changes experienced during each step of overground walking, without inducing significant head motion. In the study to examine its validity and reliability of simulation, seven younger adults completed two trials of eight-meter walking. The temporal changes of foot-sole pressure of each step during walking were recorded using a pressure insole and used to program the motion of the system. The results indicated high validity and reliability of the stimulation (rho $= 0.94\sim 0.98$ , p<0.0001). Phantom imaging test revealed that the signal-to-noise ratio of the MR image when the system working was similar to when the system was off, suggesting excellent MRI compatibility. Finally, block-designed test indicated that, compared to rest, multiple supraspinal regions (e.g., postcentral gyrus) were activated (p<0.005) by foot-sole stimulation. This MRI-compatible system provides a novel approach to characterizing the supraspinal sensorimotor control of walking via MRI.

摘要

足底是行走过程中与地面直接接触的唯一部位。足底的机械感受器不断获取体感信息(如地面反作用力),并将其传递至脊髓和脊髓上网络。脊髓上网络对这类信息的及时、准确处理(可通过脊髓上区域的激活来捕捉)对于行走的调节至关重要。然而,关于与行走相关的脊髓上体感处理却知之甚少。使用磁共振成像(MRI)来表征脊髓上对与行走相关的体感输入的反应具有挑战性,因为在MRI扫描期间要求个体保持静止不动。因此,我们开发了一种刺激系统,该系统可模拟在地面行走每一步过程中所经历的足底压力变化的幅度和时间,且不会引起明显的头部运动。在一项检验其模拟有效性和可靠性的研究中,七名年轻成年人完成了两次八米行走试验。行走过程中每一步的足底压力随时间的变化通过压力鞋垫进行记录,并用于对系统的运动进行编程。结果表明该刺激具有很高的有效性和可靠性(rho = 0.94至0.98,p<0.0001)。虚拟成像测试显示,系统工作时的磁共振图像信噪比与系统关闭时相似,表明具有出色的MRI兼容性。最后,组块设计测试表明,与静息状态相比,足底刺激可激活多个脊髓上区域(如中央后回)(p<0.005)。这种与MRI兼容的系统为通过MRI表征行走的脊髓上感觉运动控制提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ff5/12067938/cd267b9bff71/nihms-2075340-f0001.jpg

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