Miguez D, Hodson-Tole E F, Loram I, Harding P J
School of Healthcare Science, Manchester Metropolitan University, Manchester, UK.
R Soc Open Sci. 2017 May 31;4(5):170245. doi: 10.1098/rsos.170245. eCollection 2017 May.
Ultrasound (US) imaging is a well-recognized technique for the study of static tissues but its suitability for studying tissue dynamics depends upon accurate frame time information, which may not always be available to users. Here we present methods to quantify the inter-frame interval (IFI) variability, and evaluate different procedures for collecting temporal information from two US-imaging devices. The devices tested exhibited variable IFIs that could only be confirmed by direct measures of timing signals, available by means of electrical signals (triggers) and/or temporal information contained in the software used for the US data collection. Interpolating frame-by-frame measures of dynamic changes within image sequences using individual IFI values provided improved synchronization between measures of skeletal muscle movement and activation; validating US as a valuable technique for the study of musculoskeletal tissue dynamics, when correctly implemented.
超声(US)成像对于静态组织的研究是一种公认的技术,但其对组织动态研究的适用性取决于准确的帧时间信息,而用户可能并非总能获取该信息。在此,我们介绍了量化帧间间隔(IFI)变异性的方法,并评估了从两种超声成像设备收集时间信息的不同程序。测试的设备表现出可变的IFI,这只能通过对定时信号的直接测量来确认,定时信号可通过电信号(触发信号)和/或用于超声数据采集的软件中包含的时间信息获得。使用各个IFI值对图像序列内动态变化进行逐帧测量插值,可改善骨骼肌运动与激活测量之间的同步性;当正确实施时,证实超声是研究肌肉骨骼组织动态的一种有价值的技术。