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首页> 外文期刊>NeuroImage >Zoomed functional imaging in the human brain at 7 Tesla with simultaneous high spatial and high temporal resolution.
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Zoomed functional imaging in the human brain at 7 Tesla with simultaneous high spatial and high temporal resolution.

机译:7特斯拉在人脑中的缩放功能成像,同时具有高空间和高时间分辨率。

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Functional neuroimaging in the human brain using noninvasive magnetic resonance methods has the potential of providing highly resolved maps of neuronal activation. Decreasing the voxel size and obtaining simultaneously high temporal resolution is a major challenge and is mainly limited by sensitivity. Here, signal-to-noise gains at high magnetic fields (7 Tesla) and an optimized surface coil setup are combined with a novel approach for zoomed functional imaging in the visual cortex. For echoplanar imaging, the acquisition time and segmentation was shortened fourfold by using a reduced field-of-view. An adiabatic outer-volume suppression method, BISTRO, was used to obliterate signal outside the area-of-interest achieving effective suppression even for inhomogeneous B1-fields. A single-shot acquisition was performed at submillimeter resolution in the human brain, while simultaneously maintaining a high temporal resolution of 125 ms. Functional studies with and without field-of-view reduction were performed. Activation and percent change maps were compared with respect to spatial extent, t values and percentage changes of the BOLD contrast. The detection of functional activation was found to be equal within the inter-series variability for the two acquisition schemes. Thus, single-trial BOLD responses were detected for the first time robustly at a 500 x 500 microm2 in plane and 250 ms temporal resolution, significantly expanding the possibilities of event-related functional imaging in the human brain. The magnetization transfer effect induced by the outer-volume suppression pulses was investigated and found to be increased during neuronal activity.
机译:使用非侵入性磁共振方法在人脑中进行功能性神经成像,具有提供高度解析的神经元激活图的潜力。减小体素尺寸并同时获得高时间分辨率是一个主要挑战,并且主要受到灵敏度的限制。在这里,将高磁场(7 Tesla)下的信噪比增益和优化的表面线圈设置与用于视觉皮层中缩放功能成像的新颖方法相结合。对于回波平面成像,通过使用缩小的视野,将采集时间和分割缩短了四倍。绝热外体积抑制方法BISTRO被用于消除目标区域以外的信号,即使对于不均匀的B1场也能实现有效抑制。在人脑中以亚毫米分辨率执行单次采集,同时保持125 ms的高时间分辨率。进行有或没有视野缩小的功能研究。相对于空间范围,t值和BOLD对比的百分比变化,比较了激活图和百分比变化图。发现在两种采集方案的系列间变异性内,功能激活的检测是相等的。因此,首次在平面上以500 x 500 microm2和250 ms的时间分辨率强大地检测到了单次试验的BOLD响应,从而大大扩展了人脑中与事件相关的功能成像的可能性。研究了由外部抑制脉冲引起的磁化传递效应,并发现其在神经元活动过程中增加。

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