Mapping strain in biological tissues using magnetic resonance

M. Sekino, A. Kaneko, S. Ueno
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引用次数: 1

Abstract

Diffusion tensor magnetic resonance (MR) images reflect structure of cell membranes as well as the self-diffusion coefficient of water. A change in the geometry of cell membrane affects diffusion tensor images, which suggests a potential for a new method of strain mapping. In this study, we investigated the effect of strain on diffusion tensor images of muscles using numerical simulation and animal experiments. The finite difference method was used to calculate the signal intensities of diffusion tensor images. To investigate the effect of strain, the aspect ratio of the model was varied from 1.0 to 4.0, which corresponded to varying strain from 0.0 to 1.0. The apparent diffusion coefficient (ADC), the mean diffusivity (MD), and the fractional anisotropy (FA) were calculated for each aspect ratio in the presence and absence of strain. Diffusion tensor images of the isolated frog gastrocnemius muscle were obtained using a 4.7 T MR imaging system. Results indicate that the ADC monotonically increases with strain. The MD decreased with the compression due to a decrease in the cross-sectional area. The FA also decreased with the compression because a decrease in the diffusion tensor parameter D/sub xx/ caused a decrease in diffusion anisotropy.
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利用磁共振绘制生物组织中的应变图
扩散张量磁共振(Diffusion tensor magnetic resonance, MR)图像反映细胞膜的结构以及水的自扩散系数。细胞膜几何形状的变化会影响扩散张量图像,这表明了应变映射新方法的潜力。本研究采用数值模拟和动物实验相结合的方法研究了应变对肌肉扩散张量图像的影响。采用有限差分法计算扩散张量图像的信号强度。为了研究应变的影响,模型的长宽比在1.0 ~ 4.0范围内变化,对应于应变在0.0 ~ 1.0范围内变化。计算了在有应变和无应变情况下,各长宽比的表观扩散系数(ADC)、平均扩散系数(MD)和分数各向异性(FA)。采用4.7 T磁共振成像系统获得离体蛙腓肠肌弥散张量图像。结果表明,ADC随应变单调增加。由于横截面积的减小,MD随压缩而减小。由于扩散张量参数D/sub xx/的减小导致扩散各向异性的减小,FA也随着压缩而减小。
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