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评估使用 3.0T 平台上的 cine-PCMRI 进行肌肉骨骼运动跟踪的准确性和精密度。

Assessing the accuracy and precision of musculoskeletal motion tracking using cine-PC MRI on a 3.0T platform.

机构信息

Rehabilitation Medicine Department, National Institutes of Health, Building 10 CRC RM 1-1469, 10 Center Drive MSC 1604, Bethesda, MD 20892-1604, USA.

出版信息

J Biomech. 2011 Jan 4;44(1):193-7. doi: 10.1016/j.jbiomech.2010.08.029. Epub 2010 Sep 21.

Abstract

The rising cost of musculoskeletal pathology, disease, and injury creates a pressing need for accurate and reliable methods to quantify 3D musculoskeletal motion, fostering a renewed interest in this area over the past few years. To date, cine-phase contrast (PC) MRI remains the only technique capable of non-invasively tracking in vivo 3D musculoskeletal motion during volitional activity, but current scan times are long on the 1.5T MR platform (∼ 2.5 min or 75 movement cycles). With the clinical availability of higher field strength magnets (3.0T) that have increased signal-to-noise ratios, it is likely that scan times can be reduced while improving accuracy. Therefore, the purpose of this study is to validate cine-PC MRI on a 3.0T platform, in terms of accuracy, precision, and subject-repeatability, and to determine if scan time could be minimized. On the 3.0T platform it is possible to limit scan time to 2 min, with sub-millimeter accuracy (<0.33 mm/0.97°), excellent technique precision (<0.18°), and strong subject-repeatability (<0.73 mm/1.10°). This represents reduction in imaging time by 25% (42 s), a 50% improvement in accuracy, and a 72% improvement in technique precision over the original 1.5T platform. Scan time can be reduced to 1 min (30 movement cycles), but the improvements in accuracy are not as large.

摘要

肌肉骨骼系统病理学、疾病和损伤的成本不断上升,这就迫切需要准确、可靠的方法来量化 3D 肌肉骨骼运动,因此,近年来人们对该领域重新产生了兴趣。迄今为止,电影相位对比(PC)MRI 仍然是唯一能够在自愿活动期间非侵入性地跟踪体内 3D 肌肉骨骼运动的技术,但目前在 1.5T MR 平台上的扫描时间很长(约 2.5 分钟或 75 个运动周期)。随着具有更高信噪比的更高场强磁体(3.0T)在临床上的可用性,扫描时间有可能在提高准确性的同时缩短。因此,本研究的目的是在 3.0T 平台上验证电影 PC MRI 的准确性、精密度和受试者可重复性,并确定是否可以最小化扫描时间。在 3.0T 平台上,可以将扫描时间限制在 2 分钟以内,具有亚毫米级的精度(<0.33mm/0.97°)、出色的技术精度(<0.18°)和很强的受试者可重复性(<0.73mm/1.10°)。这代表成像时间减少了 25%(42 秒),准确性提高了 50%,技术精度提高了 72%,优于原始的 1.5T 平台。扫描时间可以缩短到 1 分钟(30 个运动周期),但准确性的提高不那么显著。

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