首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >In vivo free induction decay based 3D multivoxel longitudinal hadamard spectroscopic imaging in the human brain at 3 T
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In vivo free induction decay based 3D multivoxel longitudinal hadamard spectroscopic imaging in the human brain at 3 T

机译:在3 T时在人脑中基于体内自由感应衰减的3D多体素纵向哈达玛德纵向光谱成像

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摘要

We propose and demonstrate a full 3D longitudinal Hadamard spectroscopic imaging scheme for obtaining chemical shift maps, using adiabatic inversion pulses to encode the spins' positions. The approach offers several advantages over conventional Fourier-based encoding methods, including a localized point spread function; no aliasing, allowing for volumes of interest smaller than the object being imaged; an option for acquiring noncontiguous voxels; and inherent outer volume rejection. The latter allows for doing away with conventional outer volume suppression schemes, such as point resolved spectroscopy (PRESS) and stimulated echo acquisition mode (STEAM), and acquiring non-spin-echo spectra with short acquisition delay times, limited only by the excitation pulse's duration. This, in turn, minimizes T2 decay, maximizes the signal-to-noise ratio, and reduces J-coupling induced signal decay. Results are presented for both a phantom and an in vivo healthy volunteer at 3 T.
机译:我们提出并演示了一个完整的3D纵向Hadamard光谱成像方案,用于获得化学位移图,使用绝热反转脉冲来编码自旋的位置。与传统的基于傅立叶的编码方法相比,该方法具有多个优点,包括局部点扩展函数;无混叠,允许感兴趣的体积小于要成像的对象;获取不连续体素的选项;和固有的外部体积抑制。后者允许取消常规的外部体积抑制方案,例如点分辨光谱(PRESS)和受激回波采集模式(STEAM),并以较短的采集延迟时间采集非自旋回波谱,仅受激发脉冲的限制。持续时间。反过来,这使T2衰减最小,使信噪比最大,并减少了J耦合引起的信号衰减。幻象和体内健康志愿者在3 T时均给出了结果。

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