A 4-channel 3 Tesla phased array receive coil for awake rhesus monkey fMRI and diffusion MRI experiments.

Mark Haig Khachaturian
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引用次数: 17

Abstract

Awake monkey fMRI and diffusion MRI combined with conventional neuroscience techniques has the potential to study the structural and functional neural network. The majority of monkey fMRI and diffusion MRI experiments are performed with single coils which suffer from severe EPI distortions which limit resolution. By constructing phased array coils for monkey MRI studies, gains in SNR and anatomical accuracy (i.e., reduction of EPI distortions) can be achieved using parallel imaging. The major challenges associated with constructing phased array coils for monkeys are the variation in head size and space constraints. Here, we apply phased array technology to a 4-channel phased array coil capable of improving the resolution and image quality of full brain awake monkey fMRI and diffusion MRI experiments. The phased array coil is that can adapt to different rhesus monkey head sizes (ages 4-8) and fits in the limited space provided by monkey stereotactic equipment and provides SNR gains in primary visual cortex and anatomical accuracy in conjunction with parallel imaging and improves resolution in fMRI experiments by a factor of 2 (1.25 mm to 1.0 mm isotropic) and diffusion MRI experiments by a factor of 4 (1.5 mm to 0.9 mm isotropic).

Abstract Image

Abstract Image

Abstract Image

4通道3特斯拉相控阵接收线圈用于清醒猕猴功能磁共振成像和扩散MRI实验。
醒猴fMRI和弥散MRI与传统神经科学技术相结合,具有研究结构和功能神经网络的潜力。大多数猴子的功能磁共振成像和扩散MRI实验都是用单线圈进行的,这种单线圈受到严重的EPI扭曲,限制了分辨率。通过构建用于猴子MRI研究的相控阵线圈,可以使用并行成像实现信噪比和解剖精度的提高(即减少EPI失真)。为猴子构建相控阵线圈的主要挑战是头部大小的变化和空间的限制。本研究将相控阵技术应用于4通道相控阵线圈,该线圈能够提高全脑清醒猴子功能磁共振成像和扩散MRI实验的分辨率和图像质量。相控阵线圈可以适应不同的恒河猴头部大小(4-8岁),适合猴子立体定向设备提供的有限空间,并提供初级视觉皮层的信噪比增益和平行成像的解剖精度,并将fMRI实验的分辨率提高了2倍(1.25 mm至1.0 mm各向同性),扩散MRI实验的分辨率提高了4倍(1.5 mm至0.9 mm各向同性)。
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