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新鲜尸体人股骨骨微结构的评估:超高场磁共振成像的临床相关性可能是什么。

Assessment of Bone Microarchitecture in Fresh Cadaveric Human Femurs: What Could Be the Clinical Relevance of Ultra-High Field MRI.

作者信息

Soldati Enrico, Pithioux Martine, Guenoun Daphne, Bendahan David, Vicente Jerome

机构信息

Aix Marseille Univ, CNRS, IUSTI, 13453 Marseille, France.

Aix Marseille Univ, CNRS, CRMBM, 13385 Marseille, France.

出版信息

Diagnostics (Basel). 2022 Feb 8;12(2):439. doi: 10.3390/diagnostics12020439.

Abstract

MRI could be applied for bone microarchitecture assessment; however, this technique is still suffering from low resolution compared to the trabecular dimension. A clear comparative analysis between MRI and X-ray microcomputed tomography (μCT) regarding microarchitecture metrics is still lacking. In this study, we performed a comparative analysis between μCT and 7T MRI with the aim of assessing the image resolution effect on the accuracy of microarchitecture metrics. We also addressed the issue of air bubble artifacts in cadaveric bones. Three fresh cadaveric femur heads were scanned using 7T MRI and µCT at high resolution (0.051 mm). Samples were submitted to a vacuum procedure combined with vibration to reduce the volume of air bubbles. Trabecular interconnectivity, a new metric, and conventional histomorphometric parameters were quantified using MR images and compared to those derived from µCT at full resolution and downsized resolutions (0.102 and 0.153 mm). Correlations between bone morphology and mineral density (BMD) were evaluated. Air bubbles were reduced by 99.8% in 30 min, leaving partial volume effects as the only source of bias. Morphological parameters quantified with 7T MRI were not statistically different ( > 0.01) to those computed from μCT images, with error up to 8% for both bone volume fraction and trabecular spacing. No linear correlation was found between BMD and all morphological parameters except trabecular interconnectivity (R = 0.69 for 7T MRI-BMD). These results strongly suggest that 7T MRI could be of interest for in vivo bone microarchitecture assessment, providing additional information about bone health and quality.

摘要

磁共振成像(MRI)可用于骨微结构评估;然而,与小梁尺寸相比,该技术的分辨率仍然较低。目前仍缺乏关于微结构指标的MRI与X射线显微计算机断层扫描(μCT)之间的清晰对比分析。在本研究中,我们对μCT和7T MRI进行了对比分析,目的是评估图像分辨率对微结构指标准确性的影响。我们还解决了尸体骨中气泡伪影的问题。使用7T MRI和高分辨率(0.051毫米)的μCT对三个新鲜尸体股骨头进行扫描。样本经过真空处理并结合振动以减少气泡体积。使用MR图像对小梁连通性这一新指标和传统组织形态计量学参数进行量化,并与全分辨率以及缩小分辨率(0.102和0.153毫米)下μCT得出的结果进行比较。评估了骨形态与骨密度(BMD)之间的相关性。30分钟内气泡减少了99.8%,仅留下部分容积效应作为唯一的偏差来源。用7T MRI量化的形态学参数与从μCT图像计算得出的参数在统计学上无差异(>0.01),骨体积分数和小梁间距的误差均高达8%。除小梁连通性外,未发现BMD与所有形态学参数之间存在线性相关性(7T MRI与BMD的R = 0.69)。这些结果强烈表明,7T MRI可能对体内骨微结构评估具有重要意义,可为骨健康和质量提供额外信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d7a/8870786/cf79e9b6bf46/diagnostics-12-00439-g001.jpg

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