首页> 外文会议>IEEE International Ultrasonics Symposium >Factors impacting detection of untethered scatterers within viscoelastic background by ARFI Surveillance of Subcutaneous Hemorrhage (ASSH): In silico demonstration
【24h】

Factors impacting detection of untethered scatterers within viscoelastic background by ARFI Surveillance of Subcutaneous Hemorrhage (ASSH): In silico demonstration

机译:通过ARFI监测皮下出血(ASSH)在粘弹性背景下检测不受束缚散射体的因素:计算机模拟

获取原文

摘要

ARFI Surveillance of Subcutaneous Hemorrhage (ASSH) is a method for noninvasively detecting and monitoring subcutaneous bleeding, in vivo. It has been implemented in relevant animal models and in patients undergoing percutaneous coronary catheterization to monitor hemorrhage at sites of vascular injury. In ASSH, regions of hemorrhage are identified by elevated variance in measured ARF-induced tissue acceleration profiles. However, it is well known that increased variance, or ℌjitterH, can be caused by a number of factors nonspecific for the presence of hemorrhage, such as low ultrasonic signal-to-noise ratio (SNR) or small tracking kernel size. To explore the sources of jitter in ASSH, a model of low-reflection-amplitude, untethered scatterers (mimicking red blood cells) within a viscoelastic medium under ARF excitation is developed using FEM simulation and Field II. ASSH profiles are generated with a range of system SNR levels, tracking kernel sizes, and untethered scatterer concentrations and displacement magnitudes. The optimal thresholds for detecting the untethered scatterers are determined using receiver operating characteristic (ROC) curve analysis. The results suggest that, given adequate system SNR (≤ 40 dB) and optimal threshold and kernel selection, ASSH can achieve high performance (≤ 0.9 area under the ROC curve) for detecting untethered scatterers.
机译:ARFI皮下出血监测(ASSH)是一种用于体内无创检测和监测皮下出血的方法。它已在相关动物模型中以及在接受经皮冠状动脉导管插入术以监测血管损伤部位的出血的患者中实施。在ASSH中,通过测量的ARF诱导的组织加速度曲线中方差的升高来识别出血区域。但是,众所周知,方差或“抖动H”的增加可能是由许多对出血的存在非特异性的因素引起的,例如低超声信噪比(SNR)或小的跟踪核尺寸。为了探索ASSH中的抖动源,使用FEM模拟和Field II开发了在ARF激发下的粘弹性介质中的低反射振幅,不受束缚的散射体(模仿红细胞)模型。生成的ASSH配置文件具有一系列系统SNR级别,跟踪内核大小以及不受限制的散射体浓度和位移大小。使用接收器工作特性(ROC)曲线分析确定用于检测不受限制的散射体的最佳阈值。结果表明,在足够的系统SNR(≤40 dB)和最佳阈值和内核选择的情况下,ASSH可以实现高性能(在ROC曲线下≤0.9面积),用于检测不受束缚的散射体。

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