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Application of the Advanced Communications Technology Satellite to teleradiology and real-time compressed ultrasound video telemedicine

机译:先进通信技术卫星在远程放射学和实时压缩超声视频远程医疗中的应用

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摘要

The authors have investigated the application of the NASA Advanced Communications Technology Satellite (ACTS) to teleradiology and telemedicine using the Jet Propulsion Laboratory (JPL)-developed ACTS Mobile Terminal (AMT) uplink. In this experiment, bidirectional 128, 256, and 384 kbps satellite links were established between the ACTS/AMT, the ACTS in geosynchronous orbit, and the downlink terrestrial terminal at JPL. A terrestrial Integrated Digital Services Network (ISDN) link was established from JPL to the University of Washington Department of Radiology to complete the bidirectional connection. Ultrasound video imagery was compressed in real-time using video codecs adhering to the International Telecommunication Union—Telecommunication Standardization Sector (ITU-T) Recommendation H.261. A 16 kbps in-band audio channel was used throughout. A five-point Likert scale was used to evaluate the quality of the compressed ultrasound imagery at the three transmission bandwidths (128, 256, and 384 kbps). The central question involved determination of the bandwidth requirements to provide sufficient spatial and contrast resolution for the remote visualization of fine- and low-contrast objects. The 384 kbps bandwidth resulted in only slight tiling artifact and fuzziness owing to the quantizer step size; however, these motion artifacts were rapidly resolved in time at this bandwidth. These experiments have demonstrated that real-time compressed ultrasound video imagery can be transmitted over multiple ISDN line bandwidth links with sufficient temporal, contrast, and spatial resolution for clinical diagnosis of multiple disease and pathology states to provide subspecialty consultation and education at a distance.
机译:作者研究了使用喷气推进实验室(JPL)开发的ACTS移动终端(AMT)上行链路将NASA先进通信技术卫星(ACTS)在远程放射学和远程医学中的应用。在此实验中,在ACTS / AMT,地球同步轨道上的ACTS和JPL的下行地面终端之间建立了双向128、256和384 kbps卫星链路。建立了从JPL到华盛顿大学放射学系的地面综合数字服务网络(ISDN)链接,以完成双向连接。使用遵循国际电信联盟电信标准化部门(ITU-T)H.261建议书的视频编解码器,实时压缩超声视频图像。整个过程中使用了16 kbps的带内音频通道。五点李克特量表用于评估三个传输带宽(128、256和384 kbps)下压缩超声图像的质量。中心问题涉及确定带宽要求,以便为精细和低对比度对象的远程可视化提供足够的空间和对比度分辨率。由于量化步长,384 kbps带宽仅导致轻微的平铺伪影和模糊性。但是,这些运动伪像已在此带宽下迅速得到及时解决。这些实验表明,实时压缩的超声视频图像可以通过具有足够的时间,对比度和空间分辨率的多个ISDN线路带宽链路进行传输,以用于多种疾病和病理状态的临床诊断,以提供远距离的专业咨询和教育。

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