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倾斜板平衡任务双侧激活前额叶皮层:半沉浸式虚拟现实环境中的功能近红外光谱研究。

Prefrontal cortex activated bilaterally by a tilt board balance task: a functional near-infrared spectroscopy study in a semi-immersive virtual reality environment.

机构信息

Department of Life, Health and Environmental Sciences, University of L'Aquila, Via Vetoio, 67100, L'Aquila, Italy,

出版信息

Brain Topogr. 2014 May;27(3):353-65. doi: 10.1007/s10548-013-0320-z. Epub 2013 Oct 8.

DOI:10.1007/s10548-013-0320-z
PMID:24101293
Abstract

The aim of this study was to assess the prefrontal cortex (PFC) oxygenation response to a 5-min incremental tilt board balance task (ITBBT) in a semi-immersive virtual reality (VR) environment driven by a depth-sensing camera. It was hypothesized that the PFC would be bilaterally activated in response to the increase of the ITBBT difficulty, given the PFC involvement in the allocation of the attentional resources to maintain postural control. Twenty-two healthy male subjects were asked to use medial-lateral postural sways to maintain their equilibrium on a virtual tilt board (VTB) balancing over a pivot. When the subject was unable to maintain the VTB angle within ± 35° the VTB became red (error). An eight-channel fNIRS system was employed for measuring changes in PFC oxygenated-deoxygenated hemoglobin (O2Hb-HHb, respectively). Results revealed that the number of the performed board sways and errors augmented with the increasing of the ITBBT difficulty. A PFC activation was observed with a tendency to plateau for both O2Hb-HHb changes within the last 2 min of the task. A significant main effect of the level of difficulty was found in O2Hb and HHb (p < 0.001). The study has demonstrated that the oxygenation increased over the PFC while the subject was performing an ITBBT in a semi-immersive VR environment. This increase was modulated by the task difficulty, suggesting that the PFC is bilaterally involved in attention-demanding tasks. This task could be considered useful for diagnostic testing and functional neurorehabilitation given its adaptability in elderly and in patients with movement disorders.

摘要

本研究旨在评估在由深度传感器驱动的半沉浸式虚拟现实 (VR) 环境中,前额叶皮层 (PFC) 对 5 分钟增量倾斜板平衡任务 (ITBBT) 的氧合反应。假设由于 PFC 参与分配注意力资源以维持姿势控制,因此在 ITBBT 难度增加时,PFC 会双侧激活。

要求 22 名健康男性使用内侧-外侧姿势摇摆来保持虚拟倾斜板 (VTB) 上的平衡,VTB 平衡在枢轴上。当主体无法将 VTB 角度保持在 ±35°内时,VTB 变为红色(错误)。使用八通道 fNIRS 系统测量 PFC 含氧去氧血红蛋白 (O2Hb-HHb) 的变化。

结果表明,随着 ITBBT 难度的增加,执行的板摇摆和错误次数增加。在任务的最后 2 分钟内,观察到 PFC 激活,O2Hb-HHb 变化趋于平稳。在 O2Hb 和 HHb 中发现难度水平的显著主要效应 (p<0.001)。

该研究表明,当主体在半沉浸式 VR 环境中执行 ITBBT 时,PFC 的氧合作用增加。这种增加受到任务难度的调节,表明 PFC 双侧参与了需要注意力的任务。鉴于其在老年人和运动障碍患者中的适应性,该任务可被视为用于诊断测试和功能神经康复的有用工具。

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