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超声尼克斯500RP:一款商用超声研究接口。

The Ultrasonix 500RP: a commercial ultrasound research interface.

作者信息

Wilson Thaddeus, Zagzebski James, Varghese Tomy, Chen Quan, Rao Min

机构信息

Department of Radiology, University of Tennessee, Memphis, TN 38163, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2006 Oct;53(10):1772-82. doi: 10.1109/tuffc.2006.110.

Abstract

Unlike researchers in magnetic resonance imaging who have considerable access to high level tools and to data at a very basic level on their scanners, those involved with ultrasound have found little in the way of meaningful and widespread access to even the most basic echo signals in their clinical systems. Interest has emerged, however, in ultrasound research interfaces on commercial scanners to provide access to raw ultrasound data and control of basic research functions. This paper describes initial experience gained on one such ultrasound system. The Ultrasonix 500RP system provides research access to the data at multiple points in the signal processing chain and allows control over most imaging parameters. The Ultrasonix system allows for three methods of research control. One is implemented along with the standard clinical imaging software using "mouseover" screens on the periphery of the application window. These screens are configured by the user to display various signal processing variables, which can be modified in real time. Second, the system can be controlled via a user-written remote control client application interacting through the clinical exam software. Lastly, the user can write a complete application which initializes the basic ultrasound module but need not use the Ultrasonix clinical exam software. All of the modes can be done locally on the scanner itself or via a network, and are based on software developed in C++ with libraries supplied with the scanner. Two examples are presented in this paper from the evaluation of the system in "real world" applications. Measurements of absolute backscatter coefficients and attenuation coefficients versus frequency are shown and elastograms utilizing spatial compounding are described.

摘要

与磁共振成像领域的研究人员不同,他们能够大量使用高级工具,并能在其扫描仪上获取非常基础层面的数据,而从事超声研究的人员发现,即使在临床系统中获取最基本的回波信号都很难做到有意义且广泛可用。然而,人们对商用扫描仪上的超声研究接口产生了兴趣,以便能够获取原始超声数据并控制基础研究功能。本文描述了在这样一个超声系统上获得的初步经验。Ultrasonix 500RP系统能在信号处理链的多个点提供对数据的研究访问,并允许控制大多数成像参数。Ultrasonix系统提供了三种研究控制方法。一种是与标准临床成像软件一起实现的,通过在应用窗口边缘使用“鼠标悬停”屏幕。这些屏幕由用户配置以显示各种信号处理变量,这些变量可以实时修改。第二种方法是,系统可以通过用户编写的远程控制客户端应用程序,通过临床检查软件进行交互来控制。最后,用户可以编写一个完整的应用程序,该程序初始化基本超声模块,但无需使用Ultrasonix临床检查软件。所有这些模式都可以在扫描仪本地或通过网络完成,并且基于用C++开发的软件以及扫描仪提供的库。本文给出了两个在“实际”应用中对该系统进行评估的例子。展示了绝对背向散射系数和衰减系数随频率的测量结果,并描述了利用空间复合技术的弹性成像图。

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