...
首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Effects of non-optimal focusing on dual-frequency ultrasound measurements of bone
【24h】

Effects of non-optimal focusing on dual-frequency ultrasound measurements of bone

机译:非最佳聚焦对骨骼双频超声测量的影响

获取原文
获取原文并翻译 | 示例
           

摘要

In pulse-echo (PE) ultrasound measurements, the use of focused transducers is desirable for quantitative assessment of bone characteristics because of the attenuation in the overlying soft tissues. However, the variable thickness and composition of the soft tissue overlying bone affect the focal depth of the ultrasound beam and induce errors into the measurements. To compensate for the attenuation-related effects caused by the interfering soft tissue (i.e., fat and lean tissue), a dual-frequency ultrasound (DFUS) technique was recently introduced. The aim of this study was to investigate the effect of non-optimal focal depth of the ultrasound beam on the determination of the integrated reflection coefficient (IRC) of bone when overlaid by an interfering layer composed of oil and water. The feasibility of the DFUS-based correction of the IRC was evaluated through numerical simulations and experimental measurements. Even when the interfering layer-bone interface was out of focus, the total thickness of the interfering layer could be accurately determined with the technique. However, based on the simulations, the errors in the determination of the composition of the interfering layer increased (0.004 to 113.8%) with the increase in distance between the interfering layer-bone interface and the focus of the ultrasound beam. Attenuation compensation, based on the true composition of the interfering layer, resulted in an average relative error of 22.3% in the IRC values calculated from the simulations. Interestingly, the attenuation compensation with the interfering layer composition estimated using the DFUS technique resulted in a smaller average relative error of 14.9% in the IRC values. The simulations suggest that DFUS can reduce the errors induced by soft tissue in bone PE ultrasound measurements. The experimental measurements indicate that the accuracy of the IRC measurements is rather similar when using DFUS correction or correction based on the true composition of -n-nthe interfering layer. However, the results suggest that accurate determination of soft tissue composition may be difficult without optimal focusing of the ultrasound beam on the soft tissue-bone interface.
机译:在脉冲回波(PE)超声测量中,由于上面的软组织会衰减,因此需要使用聚焦换能器进行骨特性的定量评估。但是,覆盖在骨头上的软组织的可变厚度和组成会影响超声束的焦深,并导致测量误差。为了补偿由干扰的软组织(即脂肪和瘦组织)引起的与衰减相关的效应,最近引入了双频超声(DFUS)技术。这项研究的目的是研究当由油和水组成的干涉层覆盖时,超声波束的非最佳焦深对确定骨的综合反射系数(IRC)的影响。通过数值模拟和实验测量评估了基于DFUS的IRC校正的可行性。即使当干扰层-骨界面没有聚焦时,也可以使用该技术准确确定干扰层的总厚度。然而,基于模拟,随着干扰层-骨界面与超声束焦点之间距离的增加,确定干扰层组成的误差增加了(0.004至113.8%)。基于干扰层的真实成分进行的衰减补偿会导致模拟计算出的IRC值的平均相对误差为22.3%。有趣的是,使用DFUS技术估算的干扰层组成的衰减补偿导致IRC值的平均相对误差更小,为14.9%。模拟表明,DFUS可以减少由软组织在骨骼PE超声测量中引起的误差。实验测量结果表明,当使用DFUS校正或基于-n-n干扰层真实成分的校正时,IRC测量的准确性相当相似。但是,结果表明,如果无法将超声波束最佳地聚焦在软组织-骨界面上,则很难准确确定软组织的组成。

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