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静息脑血氧水平依赖性功能磁共振成像

Silent BOLD imaging.

作者信息

Loenneker T, Hennel F, Ludwig U, Hennig J

机构信息

FORENAP Association, MR Center, 68250, Rouffach, France.

出版信息

MAGMA. 2001 Oct;13(2):76-81. doi: 10.1007/BF02668155.

Abstract

Pulsed magnetic field gradients in magnetic resonance imaging produce high levels of acoustic noise. In functional magnetic resonance imaging, acoustic scanner noise causes unwanted masking effects. Recently, we proposed a method to perform magnetic resonance imaging experiments undisturbed by acoustic scanner noise by utilizing the property of standard gradient coils to poorly submit acoustic noise in the low frequency range. The silent gradient scheme is now incorporated into a standard T(2)*-weighted sequence. Additionally, simultaneous multi-slice excitation (SIMEX) pulses were implemented to improve the intrinsic low volume coverage of the silent sequence. The proposed silent SIMEX technique was tested and compared with a standard noisy technique using auditory and visual stimulation paradigms. The scanner noise during the silent experiments could be reduced below the range of the ambient noise of the magnet room. This feasibility study shows a trend of decreased activated areas in the noisy experiment for both, the visual and auditory paradigm.

摘要

磁共振成像中的脉冲磁场梯度会产生高强度的声学噪声。在功能磁共振成像中,扫描仪的声学噪声会导致不必要的掩蔽效应。最近,我们提出了一种方法,利用标准梯度线圈在低频范围内不易传递声学噪声的特性,进行不受扫描仪声学噪声干扰的磁共振成像实验。现在,静音梯度方案已被纳入标准的T(2)*加权序列中。此外,还采用了同时多层激发(SIMEX)脉冲来改善静音序列固有的低容积覆盖范围。我们对所提出的静音SIMEX技术进行了测试,并与使用听觉和视觉刺激范式的标准噪声技术进行了比较。静音实验期间的扫描仪噪声可降低到低于磁体室环境噪声的范围。这项可行性研究表明,在视觉和听觉范式的噪声实验中,激活区域均有减少的趋势。

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