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膝关节软骨的多组份 T2* 映射:离体技术可行性。

Multicomponent T2* mapping of knee cartilage: technical feasibility ex vivo.

机构信息

MR Research Center, Department of Radiology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Magn Reson Med. 2010 Nov;64(5):1426-31. doi: 10.1002/mrm.22450.

Abstract

Disorganization of collagen fibers is a sign of early-stage cartilage degeneration in osteoarthritic knees. Water molecules trapped within well-organized collagen fibrils would be sensitive to collagen alterations. Multicomponent effective transverse relaxation (T2*) mapping with ultrashort echo time acquisitions is here proposed to probe short T(2) relaxations in those trapped water molecules. Six human tibial plateau explants were scanned on a 3T MRI scanner using a home-developed ultrashort echo time sequence with echo times optimized via Monte Carlo simulations. Time constants and component intensities of T2* decays were calculated at individual pixels, using the nonnegative least squares algorithm. Four T2*-decay types were found: 99% of cartilage pixels having mono-, bi-, or nonexponential decay, and 1% showing triexponential decay. Short T2* was mainly in 1-6 ms, while long T2* was ∼ 22 ms. A map of decay types presented spatial distribution of these T2* decays. These results showed the technical feasibility of multicomponent T2* mapping on human knee cartilage explants.

摘要

胶原纤维的紊乱是骨关节炎膝关节早期软骨退变的标志。被困在组织良好的胶原原纤维内的水分子对胶原的变化很敏感。本研究提出了一种多组分有效横向弛豫(T2*)映射方法,采用超短回波时间采集来探测这些被困水分子的短 T2 弛豫。使用自行开发的超短回波时间序列,通过蒙特卡罗模拟对 6 个人胫骨平台标本在 3T MRI 扫描仪上进行了扫描。使用非负最小二乘法算法,在各个像素上计算 T2衰减的时间常数和分量强度。发现了 4 种 T2-衰减类型:99%的软骨像素呈单指数、双指数或无指数衰减,1%呈三指数衰减。短 T2主要在 1-6ms 之间,而长 T2约为 22ms。衰减类型图呈现了这些 T2衰减的空间分布。这些结果表明,多组分 T2映射在人膝关节软骨标本上具有技术可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/384c/2965791/bcb425f67a03/nihms-220121-f0001.jpg

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