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首页> 外文期刊>PLoS One >Quantitative T2 Combined with Texture Analysis of Nuclear Magnetic Resonance Images Identify Different Degrees of Muscle Involvement in Three Mouse Models of Muscle Dystrophy: mdx, Largemyd and mdx/Largemyd
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Quantitative T2 Combined with Texture Analysis of Nuclear Magnetic Resonance Images Identify Different Degrees of Muscle Involvement in Three Mouse Models of Muscle Dystrophy: mdx, Largemyd and mdx/Largemyd

机译:定量T2与核磁共振图像的纹理分析相结合,可确定三种类型的肌肉营养不良小鼠模型(mdx,Larmyd和mdx / Largemyd)中不同程度的肌肉受累

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摘要

Quantitative nuclear magnetic resonance imaging (MRI) has been considered a promising non-invasive tool for monitoring therapeutic essays in small size mouse models of muscular dystrophies. Here, we combined MRI (anatomical images and transverse relaxation time constant—T2—measurements) to texture analyses in the study of four mouse strains covering a wide range of dystrophic phenotypes. Two still unexplored mouse models of muscular dystrophies were analyzed: The severely affected Largemyd mouse and the recently generated and worst double mutant mdx/Largemyd mouse, as compared to the mildly affected mdx and normal mice. The results were compared to histopathological findings. MRI showed increased intermuscular fat and higher muscle T2 in the three dystrophic mouse models when compared to the wild-type mice (T2: mdx/Largemyd: 37.6±2.8 ms; mdx: 35.2±4.5 ms; Largemyd: 36.6±4.0 ms; wild-type: 29.1±1.8 ms, p0.05), in addition to higher muscle T2 in the mdx/Largemyd mice when compared to mdx (p0.05). The areas with increased muscle T2 in the MRI correlated spatially with the identified histopathological alterations such as necrosis, inflammation, degeneration and regeneration foci. Nevertheless, muscle T2 values were not correlated with the severity of the phenotype in the 3 dystrophic mouse strains, since the severely affected Largemyd showed similar values than both the mild mdx and worst mdx/Largemyd lineages. On the other hand, all studied mouse strains could be unambiguously identified with texture analysis, which reflected the observed differences in the distribution of signals in muscle MRI. Thus, combined T2 intensity maps and texture analysis is a powerful approach for the characterization and differentiation of dystrophic muscles with diverse genotypes and phenotypes. These new findings provide important noninvasive tools in the evaluation of the efficacy of new therapies, and most importantly, can be directly applied in human translational research.
机译:定量核磁共振成像(MRI)被认为是一种有前途的无创工具,可用于监测肌肉营养不良的小型小鼠模型中的治疗论文。在这里,我们将MRI(解剖图像和横向弛豫时间常数T2测量)与纹理分析相结合,研究了涵盖广泛营养不良表型的四种小鼠品系。分析了两个尚未开发的肌营养不良的小鼠模型:与轻度感染的mdx和正常小鼠相比,重度感染的Largemyd小鼠和最近产生且最差的双重突变mdx / Largemyd小鼠。将结果与组织病理学结果进行比较。与野生型小鼠相比,MRI显示三种营养不良的小鼠模型中的肌间脂肪增加和较高的肌肉T2(T2:mdx / Largemyd:37.6±2.8 ms; mdx:35.2±4.5 ms; Largemyd:36.6±4.0 ms;野生-型:29.1±1.8 ms,p <0.05),与mdx相比,mdx / Largemyd小鼠的肌肉T2更高(p <0.05)。 MRI中肌肉T2增加的区域在空间上与确定的组织病理学改变(例如坏死,炎症,变性和再生灶)相关。然而,在3种营养不良的小鼠品系中,肌肉T2值与表型的严重程度无关,因为受到严重影响的Largemyd与轻度mdx和最差的mdx / Largemyd谱系显示相似的值。另一方面,所有已研究的小鼠品系都可以通过纹理分析来明确识别,这反映了肌肉MRI中观察到的信号分布差异。因此,结合的T2强度图和纹理分析是表征和区分具有不同基因型和表型的营养不良性肌肉的有效方法。这些新发现为评估新疗法的有效性提供了重要的非侵入性工具,最重要的是,这些新发现可直接应用于人类转化研究。

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