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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Isotropic submillimeter fMRI in the human brain at 7 T: Combining reduced field-of-view imaging and partially parallel acquisitions
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Isotropic submillimeter fMRI in the human brain at 7 T: Combining reduced field-of-view imaging and partially parallel acquisitions

机译:7 T时人脑的各向同性亚毫米fMRI:结合缩小的视野成像和部分平行采集

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摘要

Echo-planar imaging is the most widely used imaging sequence for functional magnetic resonance imaging (fMRI) due to its fast acquisition. However, it is prone to local distortions, image blurring, and signal voids. As these effects scale with echo train length and field strength, it is essential for high-resolution echo-planar imaging at ultrahigh field to address these problems. Partially parallel acquisition methods can be used to improve the image quality of echo-planar imaging. However, partially parallel acquisition can be affected by aliasing artifacts and noise enhancement. Another way to shorten the echo train length is to reduce the field-of-view (FOV) while maintaining the same spatial resolution. However, to achieve significant acceleration, the resulting FOV becomes very small. Another problem occurs when FOV selection is incomplete such that there is remaining signal aliased from the region outside the reduced FOV. In this article, a novel approach, a combination of reduced FOV imaging with partially parallel acquisition, is presented. This approach can address the problems described above of each individual method, enabling high-quality single-shot echo-planar imaging acquisition, with submillimeter isotropic resolution and good signal-to-noise ratio, for fMRI at ultrahigh field strength. This is demonstrated in fMRI of human brain at 7T with an isotropic resolution of 650 μm.
机译:由于其快速获取,回波平面成像是功能磁共振成像(fMRI)使用最广泛的成像序列。但是,它容易出现局部失真,图像模糊和信号空隙。由于这些效应随回波列长度和场强而定,因此解决超高场高分辨率高分辨率回波平面成像至关重要。可以使用部分并行采集方法来改善回波平面成像的图像质量。但是,部分并行采集可能会受到混叠伪影和噪声增强的影响。缩短回波列长度的另一种方法是在保持相同空间分辨率的同时减小视场(FOV)。但是,为了获得显着的加速度,最终的FOV变得非常小。当FOV选择不完整时,会出现另一个问题,使得剩余的信号混叠来自减小的FOV之外的区域。在本文中,提出了一种新颖的方法,将减少的FOV成像与部分并行采集相结合。这种方法可以解决每种方法的上述问题,从而可以在超高场强下进行功能磁共振成像,具有亚毫米各向同性分辨率和良好的信噪比的高质量单次回波平面成像采集。这在7T人脑fMRI中得到证明,各向同性分辨率为650μm。

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