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基于氯化锰水模的 MRI 技术定量检测腰椎间盘成分和状态的体外评估

In vitro evaluation of a manganese chloride phantom-based MRI technique for quantitative determination of lumbar intervertebral disc composition and condition.

机构信息

Bone and Joint Research Laboratory, Surgical Pathology SA Pathology, Frome Rd, Adelaide, SA 5000, Australia.

出版信息

Eur Spine J. 2011 Mar;20(3):434-9. doi: 10.1007/s00586-010-1664-7. Epub 2010 Dec 24.

Abstract

The application of MRI as a non-invasive, quantitative tool for diagnosing lumbar intervertebral disc degeneration is currently an area of active research. The objective of this study was to examine, in vitro, the efficacy of a manganese chloride phantom-based MRI technique for quantitatively assessing lumbar disc composition and degenerative condition. Sixteen human lumbar discs were imaged ex vivo using T2-weighted MRI, and assigned a quantitative grade based on the relative signal intensities of nine phantoms containing serial concentrations of manganese chloride. Discs were then graded macroscopically for degenerative condition, and water and uronic acid (glycosaminoglycan) contents were determined. MRI ranking exhibited significant and strong negative correlation with nucleus pulposus uronic acid content (r = -0.78). MRI grades were significantly higher for degenerate discs. The technique described presents immediate potential for in vitro studies requiring robust, minimally invasive and quantitative determination of lumbar disc composition and condition. Additionally, the technique may have potential as a clinical tool for diagnosing lumbar disc degeneration as it provides a standardised series of reference phantoms facilitating cross-platform consistency, requires short scan times and simple T2-weighted signal intensity measurements.

摘要

MRI 作为一种非侵入性、定量的诊断腰椎间盘退变的工具,目前是一个活跃的研究领域。本研究旨在体外检查基于氯化锰的 MRI 技术定量评估腰椎间盘成分和退行性病变的效果。16 个人体腰椎间盘进行了离体 T2 加权 MRI 成像,并根据包含系列浓度氯化锰的九个体模的相对信号强度对其进行定量分级。然后对椎间盘进行宏观退变分级,并测定水和糖胺聚糖(氨基葡萄糖聚糖)含量。MRI 分级与髓核尿氨酸含量呈显著负相关(r = -0.78)。退变椎间盘的 MRI 分级明显更高。所描述的技术在需要对腰椎间盘成分和状况进行稳健、微创和定量测定的体外研究中具有直接潜力。此外,该技术可能有作为诊断腰椎间盘退变的临床工具的潜力,因为它提供了一系列标准化的参考体模,便于跨平台一致性,需要短的扫描时间和简单的 T2 加权信号强度测量。

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