Protopappas Vasilios C, Baga Dina A, Fotiadis Dimitrios I, Likas Aristidis C, Papachristos Athanasios A, Malizos Konstantinos N
Department of Medical Physics, Medical School, University of Ioannina, Greece.
IEEE Trans Biomed Eng. 2005 Sep;52(9):1597-608. doi: 10.1109/TBME.2005.851507.
An ultrasound wearable system for remote monitoring and acceleration of the healing process in fractured long bones is presented. The so-called USBone system consists of a pair of ultrasound transducers, implanted into the fracture region, a wearable device and a centralized unit. The wearable device is responsible to carry out ultrasound measurements using the axial-transmission technique and initiate therapy sessions of low-intensity pulsed ultrasound. The acquired measurements and other data are wirelessly transferred from the patient-site to the centralized unit, which is located in a clinical setting. The evaluation of the system on an animal tibial osteotomy model is also presented. A dataset was constructed for monitoring purposes consisting of serial ultrasound measurements, follow-up radiographs, quantitative computed tomography-based densitometry and biomechanical data. The animal study demonstrated the ability of the system to collect ultrasound measurements in an effective and reliable fashion and participating orthopaedic surgeons accepted the system for future clinical application. Analysis of the acquired measurements showed that the pattern of evolution of the ultrasound velocity through healing bones over the postoperative period monitors a dynamic healing process. Furthermore, the ultrasound velocity of radiographically healed bones returns to 80% of the intact bone value, whereas the correlation coefficient of the velocity with the material and mechanical properties of the healing bone ranges from 0.699 to 0.814. The USBone system constitutes the first telemedicine system for the out-hospital management of patients sustained open fractures and treated with external fixation devices.
本文介绍了一种用于远程监测和加速长骨骨折愈合过程的可穿戴超声系统。所谓的USBone系统由一对植入骨折区域的超声换能器、一个可穿戴设备和一个中央单元组成。可穿戴设备负责使用轴向传输技术进行超声测量,并启动低强度脉冲超声治疗疗程。采集到的测量数据和其他数据从患者端无线传输到位于临床环境中的中央单元。本文还介绍了该系统在动物胫骨截骨模型上的评估情况。为监测目的构建了一个数据集,包括系列超声测量、随访X光片、基于定量计算机断层扫描的骨密度测量和生物力学数据。动物研究表明,该系统能够以有效且可靠的方式收集超声测量数据,参与研究的骨科医生认可该系统可用于未来的临床应用。对采集到的测量数据进行分析表明,术后愈合过程中超声速度的变化模式监测了动态愈合过程。此外,X光片显示已愈合的骨骼的超声速度恢复到完整骨骼值的80%,而该速度与愈合骨骼的材料和力学性能的相关系数在0.699至0.814之间。USBone系统是首个用于院外管理开放性骨折并使用外固定装置治疗患者的远程医疗系统。