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MR-compatible device for monitoring hand tracing and writing tasks in fMRI with an application to healthy subjects

机译:MR兼容设备,用于监控功能磁共振成像中的手跟踪和书写任务,并应用于健康受试者

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Monitoring devices enable control of the correct execution of a given task during functional magnetic resonance imaging (fMRI) acquisitions and analysis of behavioral features that can influence brain activation patterns. In this report, we describe and validate a low-cost device for monitoring hand tracing and writing tasks during fMRI. The subject holds a light-emitting pen whose light spot is recorded by a fixed camera aligned with the tracing plane. Pen trajectories are extracted by a blob detection algorithm through Laplacian of Gaussian filtering applied to the camera recordings. Following phantom and in vivo experiments which demonstrated MR compatibility, the device was applied to monitor the particular case of the task of continuous and self-paced writing of an “8” figure in 10 healthy subjects. They underwent fMRI examinations during the task under three conditions: spontaneous frequency and figure size, “low” frequency and “small” figure size. The task recordings were analyzed with a dedicated algorithm that computed both frequency and area of the figures “8” writing. The device was judged comfortable by all subjects. fMRI data analysis showed that task frequency influenced the activation within primary sensory motor and premotor frontal cortices, while figure size interfered with the activation in posterior parietal cortex. Both frequency and size parameters modulated activation in the inferior cerebellum. By monitoring writing-tasks executions, this device is expected to broaden the spectrum of applications of fMRI. Indeed, it could allow the investigation of patients suffering from neurological disorders affecting handwriting, such as apraxic disorders, cerebellar disorders, or parkinsonisms. ? 2010 Wiley Periodicals, Inc. Concepts Magn Reson Part A 36A: 139–152, 2010.
机译:监视设备可以在功能磁共振成像(fMRI)采集过程中控制给定任务的正确执行,并对可能影响大脑激活模式的行为特征进行分析。在本报告中,我们描述并验证了一种用于在fMRI期间监视手部追踪和书写任务的低成本设备。被检者手持发光笔,该发光笔的光点由与跟踪平面对齐的固定相机记录。笔迹通过高斯滤波的拉普拉斯算子通过应用于相机记录的斑点检测算法提取。在证明了MR兼容性的幻像和体内实验之后,该设备被用于监视10名健康受试者连续不断地自行完成“ 8”字形书写任务的特殊情况。他们在任务中在以下三个条件下进行了功能磁共振成像检查:自发频率和图形大小,“低”频率和“小”图形大小。使用专用算法分析任务记录,该算法可以计算数字“ 8”书写的频率和面积。所有受试者均认为该设备舒适。 fMRI数据分析显示,任务频率影响初级感觉运动和运动前额叶皮质的激活,而体形大小干扰后顶叶皮质的激活。频率和大小参数均调节下小脑的激活。通过监视写入任务的执行,该设备有望拓宽fMRI的应用范围。确实,它可以允许对患有影响手写的神经系统疾病的患者进行调查,例如肢端异常,小脑疾病或帕金森氏症。 ? 2010 Wiley Periodicals,Inc.概念Magn Reson A部分36A:139-152,2010年。

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