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用脚转动圆柱跑步机:一种用于评估下肢运动神经相关因素的磁共振兼容设备。

Turning a cylindrical treadmill with feet: An MR-compatible device for assessment of the neural correlates of lower-limb movement.

机构信息

Graduate School of Health Sciences, Gunma University, 3-39-22 Showa-machi, Maebashi, Gunma 371-8514, Japan; Research and Education Center for Brain Science, Hokkaido University, Kita 15, Nishi 7 Kita-ku, Sapporo 060-8638, Japan.

Faculty of Health Sciences, Hokkaido University, Kita 12, Nishi 5 Kita-ku, Sapporo 060-0812, Japan.

出版信息

J Neurosci Methods. 2018 Sep 1;307:14-22. doi: 10.1016/j.jneumeth.2018.06.006. Epub 2018 Jun 18.

Abstract

BACKGROUND

Locomotion, which is one of the most basic motor functions, is critical for performing various daily-life activities. Despite its essential function, assessment of brain activity during lower-limb movement is still limited because of the constraints of existing brain imaging methods.

NEW METHOD

Here, we describe an MR-compatible, cylindrical treadmill device that allows participants to perform stepping movements on an MRI scanner table. The device was constructed from wood and all of the parts were handmade by the authors.

RESULTS

We confirmed the MR-compatibility of the device by evaluating the temporal signal-to-noise ratio of 64 voxels of a phantom during scanning. Brain activity was measured while twenty participants turned the treadmill with feet in sync with metronome sounds. The rotary speed of the cylinder was encoded by optical fibers. The post/pre-central gyrus and cerebellum showed significant activity during the movements, which was comparable to the activity patterns reported in previous studies. Head movement on the y- and z-axes was influenced more by lower-limb movement than was head movement on the x-axis. Among the 60 runs (3 runs × 20 participants), head movement during two of the runs (3.3%) was excessive due to the lower-limb movement.

COMPARISON WITH EXISTING METHODS

Compared to MR-compatible devices proposed in the previous studies, the advantage of this device may be simple structure and replicability to realize stepping movement with a supine position.

CONCLUSIONS

Collectively, our results suggest that the treadmill device is useful for evaluating lower-limb-related neural activity.

摘要

背景

运动是最基本的运动功能之一,对于进行各种日常活动至关重要。尽管其功能至关重要,但由于现有脑成像方法的限制,对下肢运动时大脑活动的评估仍然有限。

新方法

在这里,我们描述了一种与磁共振兼容的圆柱形跑步机设备,该设备允许参与者在磁共振扫描仪台上进行踏步运动。该设备由木材制成,所有部件均由作者手工制作。

结果

我们通过评估扫描过程中 64 个体素的时间信号噪声比来确认设备的磁共振兼容性。当二十名参与者同步踏轮机与节拍器声音时,我们测量了大脑活动。圆柱体的旋转速度由光纤编码。在运动过程中,后/中央前回和小脑显示出明显的活动,这与以前研究报告的活动模式相似。与下肢运动相比,头部在 y 和 z 轴上的运动受下肢运动的影响更大,而头部在 x 轴上的运动受下肢运动的影响较小。在 60 次运行(3 次运行×20 名参与者)中,由于下肢运动,有两次运行(3.3%)的头部运动过度。

与现有方法的比较

与以前研究中提出的与磁共振兼容的设备相比,该设备的优点可能是结构简单且可复制,可实现仰卧位的踏步运动。

结论

总的来说,我们的结果表明跑步机设备可用于评估与下肢相关的神经活动。

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