Suppr超能文献

使用超声时间谐波弹性成像对骨骼肌功能进行基于硬度的定量探索性研究。

Explorative study using ultrasound time-harmonic elastography for stiffness-based quantification of skeletal muscle function.

作者信息

Yang Yang, Shahryari Mehrgan, Meyer Tom, Marticorena Garcia Stephan Rodrigo, Görner Steffen, Salimi Majd Mahsa, Guo Jing, Braun Jürgen, Sack Ingolf, Tzschätzsch Heiko

机构信息

Department of Radiology, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt-Universität zu Berlin, Charitéplatz 1, 10117 Berlin, Germany.

Institute of Medical Informatics, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt-Universität zu Berlin, Charitéplatz 1, 10117 Berlin, Germany.

出版信息

Z Med Phys. 2024 Mar 19. doi: 10.1016/j.zemedi.2024.03.001.

Abstract

Time-harmonic elastography (THE) is an emerging ultrasound imaging technique that allows full-field mapping of the stiffness of deep biological tissues. THE's unique ability to rapidly capture stiffness in multiple tissues has never been applied for imaging skeletal muscle. Therefore, we addressed the lack of data on temporal changes in skeletal muscle stiffness while simultaneously covering stiffness of different muscles. Acquiring repeated THE scans every five seconds we quantified shear-wave speed (SWS) as a marker of stiffness of the long head (LHB) and short head (SHB) of biceps brachii and of the brachialis muscle (B) in ten healthy volunteers. SWS was continuously acquired during a 3-min isometric preloading phase, a 3-min loading phase with different weights (4, 8, and 12 kg), and a 9-min postloading phase. In addition, we analyzed temporal SWS standard deviation (SD) as a marker of muscle contraction regulation. Our results (median [min, max]) showed both SWS at preloading (LHB: 1.04 [0.94, 1.12] m/s, SHB: 0.86 [0.78, 0.94] m/s, B: 0.96 [0.87, 1.09] m/s, p < 0.001) and the increase in SWS with loading weight to be muscle-specific (LHB: 0.010 [0.002, 0.019] m/s/kg, SHB: 0.022 [0.017, 0.042] m/s/kg, B: 0.039 [0.019, 0.062] m/s/kg, p < 0.001). Additionally, SWS during loading increased continuously over time by 0.022 [0.004, 0.051] m/s/min (p < 0.01). Using an exponential decay model, we found an average relaxation time of 27 seconds during postloading. Analogously, SWS SD at preloading was also muscle-specific (LHB: 0.018 [0.011, 0.029] m/s, SHB: 0.021 [0.015, 0.027] m/s, B: 0.024 [0.018, 0.037] m/s, p < 0.05) and increased by 0.005 [0.003, 0.008] m/s/kg (p < 0.01) with loading. SWS SD did not change over loading time and decreased immediately in the postloading phase. Taken together, THE of skeletal muscle is a promising imaging technique for in vivo quantification of stiffness and stiffness changes in multiple muscle groups within seconds. Both the magnitude of stiffness changes and their temporal variation during isometric exercise may reflect the functional status of skeletal muscle and provide additional information to the morphological measures obtained by conventional imaging modalities.

摘要

时谐弹性成像(THE)是一种新兴的超声成像技术,可对深部生物组织的硬度进行全场映射。THE能够快速获取多个组织硬度的独特能力从未应用于骨骼肌成像。因此,我们在涵盖不同肌肉硬度的同时,解决了骨骼肌硬度随时间变化的数据缺乏问题。我们对10名健康志愿者的肱二头肌长头(LHB)、短头(SHB)和肱肌(B)进行了每5秒重复一次的THE扫描,将剪切波速度(SWS)量化为硬度指标。在3分钟的等长预加载阶段、3分钟不同重量(4、8和12千克)的加载阶段以及9分钟的加载后阶段持续采集SWS。此外,我们分析了SWS的时间标准差(SD)作为肌肉收缩调节的指标。我们的结果(中位数[最小值,最大值])显示,预加载时的SWS(LHB:1.04[0.94,1.12]米/秒,SHB:0.86[

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验