Diffusion Tensor Imaging of Rat Rotator Cuff Muscle With Histopathological Correlation: An Exploratory Study.

IF 2.7 4区 医学 Q2 BIOPHYSICS
James Lo, David B Berry, Qingbo Tang, Xin Cheng, Marco Toto-Brocchi, Jiang Du, Samuel R Ward, Yajun Ma, Eric Y Chang
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Abstract

The purpose of this exploratory study was to quantify the relationship between scalar-based measures of diffusion tensor imaging (DTI) and histologically derived microstructural measurements in precisely colocalized rat rotator cuff muscle tissue and to compare the results when imaged at 0.25- and 0.5-mm isotropic resolutions. Four Lewis rats subject to a unilateral chronic massive rotator cuff tear model were evaluated on a 3-T preclinical MRI scanner using spin echo DTI sequences at 0.25- and 0.5-mm isotropic resolutions, and histology was subsequently performed. Fractional anisotropy (FA), mean diffusivity (MD), and radial diffusivity (RD) were calculated. Whole muscle myofiber boundary segmentation was performed, and muscle fiber diameter and cross-sectional area were calculated on slides that passed rigorous histologic quality control. Scatter plots were generated on a pixel-by-pixel basis from meticulously colocalized DTI and histology data. Pearson's correlations were performed. Twenty-two distinct supraspinatus and infraspinatus muscle locations from two rats were included. Negligible correlations were found between DTI metrics, including FA, MD, and RD, and histological measurements, including muscle fiber diameters and cross-sectional areas. Using the most commonly employed spin echo DTI sequences with intermediate diffusion times, there may be negligible sensitivity to direct measures of muscle tissue microstructure. Our findings underscore the need for further research with optimized imaging parameters to enhance our knowledge regarding the capability of DTI to determine important features of muscle microstructure.

大鼠肩袖肌弥散张量成像与组织病理学相关性的探索性研究。
本探索性研究的目的是量化基于标量的扩散张量成像(DTI)测量与精确定位的大鼠肩袖肌肉组织中组织学衍生的显微结构测量之间的关系,并比较0.25和0.5 mm各向同性分辨率成像的结果。在3-T临床前MRI扫描仪上,采用0.25和0.5 mm各向异性分辨率的自旋回波DTI序列对4只单侧慢性大规模肩袖撕裂模型Lewis大鼠进行评估,并随后进行组织学检查。计算分数各向异性(FA)、平均扩散系数(MD)和径向扩散系数(RD)。在经过严格组织学质量控制的载玻片上进行全肌肌纤维边界分割,计算肌纤维直径和横截面积。从精心定位的DTI和组织学数据逐像素生成散点图。进行Pearson相关性分析。包括来自两只大鼠的22个不同的冈上肌和冈下肌位置。DTI指标(包括FA、MD和RD)与组织学测量(包括肌纤维直径和横截面积)之间的相关性可以忽略不计。使用最常用的具有中间扩散时间的自旋回波DTI序列,对肌肉组织微观结构的直接测量可能具有可忽略不计的灵敏度。我们的研究结果强调需要进一步研究优化成像参数,以提高我们对DTI确定肌肉微观结构重要特征的能力的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
NMR in Biomedicine
NMR in Biomedicine 医学-光谱学
CiteScore
6.00
自引率
10.30%
发文量
209
审稿时长
3-8 weeks
期刊介绍: NMR in Biomedicine is a journal devoted to the publication of original full-length papers, rapid communications and review articles describing the development of magnetic resonance spectroscopy or imaging methods or their use to investigate physiological, biochemical, biophysical or medical problems. Topics for submitted papers should be in one of the following general categories: (a) development of methods and instrumentation for MR of biological systems; (b) studies of normal or diseased organs, tissues or cells; (c) diagnosis or treatment of disease. Reports may cover work on patients or healthy human subjects, in vivo animal experiments, studies of isolated organs or cultured cells, analysis of tissue extracts, NMR theory, experimental techniques, or instrumentation.
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