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Development and evaluation of a MRI-compatible tactile orientation stimulator

机译:兼容MRI的触觉定向刺激器的开发和评估

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Functional magnetic resonance imaging (fMRI) is one of the most recently developed forms of neuroimaging, uses MRI to measure the haemodynamic response related to neural activity. In the present study, we developed a tactile orientation stimulator using under high magnetic environment. The device is MRI-compatible and can serve to investigate the underlying neural mechanisms of tactile orientation cognition and discrimination. The primary components of the tactile orientation presentation system include a computer (system control), seven tactile orientation domes, two ultrasonic motors (tactile stimuli presentation), a motor controller and a reaction key. We evaluated the function, precision and performance of the system in a magnetic field. The results showed that the device performance is unaffected by the magnetic field, nor does the device interfere with the magnetic field, making it usable with fMRI. Furthermore, a simple button press fMRI experiment was conducted using the system. Compared to the baseline, the most prominent activation areas evoked by the button press task were in the primary motor area on the right precentral gyrus, bilateral medial frontal gyrus, putamen and cerebellum. In summary, these results indicated that the brain activation can be reliably detected with the present device.
机译:功能磁共振成像(fMRI)是神经成像的最新形式之一,它使用MRI来测量与神经活动相关的血液动力学反应。在本研究中,我们开发了一种在强磁性环境下使用的触觉定向刺激器。该设备与MRI兼容,可用于研究触觉定向认知和辨别的潜在神经机制。触觉提示系统的主要组件包括一台计算机(系统控制),七个触觉圆顶,两个超声马达(触觉提示),一个马达控制器和一个反应键。我们评估了该系统在磁场中的功能,精度和性能。结果表明,该设备的性能不受磁场的影响,该设备也不会干扰磁场,使其可用于功能磁共振成像。此外,使用该系统进行了简单的按钮按压功能磁共振成像实验。与基线相比,按按钮任务引起的最显着的激活区域是在右前中央回,双侧额叶内侧回,壳核和小脑的主要运动区域。总而言之,这些结果表明可以用本装置可靠地检测出脑部激活。

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