首页> 外文会议>Ultrasonic Imaging and Signal Processing >Using the ATL HDI 1000 to Collect Demodulated RF Data for Monitoring HIFU Lesion Formation
【24h】

Using the ATL HDI 1000 to Collect Demodulated RF Data for Monitoring HIFU Lesion Formation

机译:使用ATL HDI 1000收集解调的RF数据以监测HIFU病变的形成

获取原文

摘要

The ability to accurately track and monitor the progress of lesion formation during HIFU (High Intensity Focused Ultrasound) therapy is important for the success of HIFU-based treatment protocols. To aid in the development of algorithms for accurately targeting and monitoring formation of HIFU induced lesions, we have developed a software system to perform RF data acquisition during HIFU therapy using a commercially available clinical ultrasound scanner (ATL HDI 1000, Philips Medical Systems, Bothell, WA). The HDI 1000 scanner functions on a software dominant architecture, permitting straightforward external control of its operation and relatively easy access to quadrature demodulated RF data. A PC running a custom developed program sends control signals to the HIFU module via GPIB and to the HDI 1000 via Telnet, alternately interleaving HIFU exposures and RF frame acquisitions. The system was tested during experiments in which HIFU lesions were created in excised animal tissue. No crosstalk between the HIFU beam and the ultrasound imager was detected, thus demonstrating synchronization. Newly developed acquisition modes allow greater user control in setting the image geometry and scanline density, and enables high frame rate acquisition. This system facilitates rapid development of signal-processing based HIFU therapy monitoring algorithms and their implementation in image-guided thermal therapy systems. In addition, the HDI 1000 system can be easily customized for use with other emerging imaging modalities that require access to the RF data such as elastographic methods and new Doppler-based imaging and tissue characterization techniques.
机译:在HIFU(高强度聚焦超声)治疗过程中准确跟踪和监测病变形成过程的能力对于基于HIFU的治疗方案的成功至关重要。为协助开发算法,以精确定位和监测HIFU诱发的病变的形成,我们开发了一种软件系统,可使用市售的临床超声扫描仪(ATL HDI 1000,Philips Medical Systems,Bothell, WA)。 HDI 1000扫描仪在软件主导架构上运行,可以对其操作进行直接的外部控制,并且相对容易地访问正交解调的RF数据。运行定制开发程序的PC将控制信号通过GPIB发送到HIFU模块,并通过Telnet发送到HDI 1000,交替地交织HIFU曝光和RF帧采集。在实验中测试了该系统,在该实验中,在切除的动物组织中产生了HIFU损伤。在HIFU束和超声成像仪之间未检测到串扰,因此证明了同步性。新开发的采集模式允许用户在设置图像几何形状和扫描线密度时进行更大的控制,并实现高帧频采集。该系统有助于基于信号处理的HIFU治疗监测算法的快速开发及其在图像引导热疗系统中的实现。此外,可以轻松定制HDI 1000系统,以与其他需要访问RF数据的新兴成像模式一起使用,例如弹性成像方法以及基于多普勒的新成像和组织表征技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号