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事件相关的血氧水平依赖性功能磁共振成像中脉冲响应的反卷积

Deconvolution of impulse response in event-related BOLD fMRI.

作者信息

Glover G H

机构信息

Center for Advanced MR Technology at Stanford, Department of Diagnostic Radiology, Stanford, California, 94305-5488, USA.

出版信息

Neuroimage. 1999 Apr;9(4):416-29. doi: 10.1006/nimg.1998.0419.

Abstract

The temporal characteristics of the BOLD response in sensorimotor and auditory cortices were measured in subjects performing finger tapping while listening to metronome pacing tones. A repeated trial paradigm was used with stimulus durations of 167 ms to 16 s and intertrial times of 30 s. Both cortical systems were found to be nonlinear in that the response to a long stimulus could not be predicted by convolving the 1-s response with a rectangular function. In the short-time regime, the amplitude of the response varied only slowly with stimulus duration. It was found that this character was predicted with a modification to Buxton's balloon model. Wiener deconvolution was used to deblur the response to concatenated short episodes of finger tapping at different temporal separations and at rates from 1 to 4 Hz. While the measured response curves were distorted by overlap between the individual episodes, the deconvolved response at each rate was found to agree well with separate scans at each of the individual rates. Thus, although the impulse response cannot predict the response to fully overlapping stimuli, linear deconvolution is effective when the stimuli are separated by at least 4 s. The deconvolution filter must be measured for each subject using a short-stimulus paradigm. It is concluded that deconvolution may be effective in diminishing the hemodynamically imposed temporal blurring and may have potential applications in quantitating responses in eventrelated fMRI.

摘要

在受试者边听节拍器节奏音边进行手指敲击时,测量了感觉运动皮层和听觉皮层中血氧水平依赖(BOLD)反应的时间特征。采用重复试验范式,刺激持续时间为167毫秒至16秒,试验间隔时间为30秒。发现两个皮层系统都是非线性的,即对长刺激的反应不能通过将1秒反应与矩形函数卷积来预测。在短时间范围内,反应幅度仅随刺激持续时间缓慢变化。发现这种特性可以通过对巴克斯顿的球囊模型进行修改来预测。使用维纳反卷积对在不同时间间隔和1至4赫兹频率下的手指敲击短串联片段的反应进行去模糊处理。虽然测量的反应曲线因各个片段之间的重叠而失真,但发现每个频率下的反卷积反应与每个单独频率下的单独扫描结果非常吻合。因此,尽管脉冲反应不能预测对完全重叠刺激的反应,但当刺激间隔至少4秒时,线性反卷积是有效的。必须使用短刺激范式为每个受试者测量反卷积滤波器。得出的结论是,反卷积可能有效地减少血流动力学引起的时间模糊,并且在定量事件相关功能磁共振成像中的反应方面可能有潜在应用。

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