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Image Quality Tissue Heating and Frame Rate Trade-offs in Acoustic Radiation Force Impulse Imaging

机译:声辐射力脉冲成像中的图像质量组织加热和帧速率折衷

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摘要

The real-time application of acoustic radiation force impulse (ARFI) imaging requires both short acquisition times for a single ARFI image and repeated acquisition of these frames. Due to the high energy of pulses required to generate appreciable radiation force, however, repeated acquisitions could result in substantial transducer face and tissue heating. We describe and evaluate several novel beam sequencing schemes which, along with parallel-receive acquisition, are designed to reduce acquisition time and heating. These techniques reduce the total number of radiation force impulses needed to generate an image and minimize the time between successive impulses. We present qualitative and quantitative analyses of the trade-offs in image quality resulting from the acquisition schemes. Results indicate that these techniques yield a significant improvement in frame rate with only moderate decreases in image quality. Tissue and transducer face heating resulting from these schemes is assessed through finite element method modeling and thermocouple measurements. Results indicate that heating issues can be mitigated by employing ARFI acquisition sequences that utilize the highest track-to-excitation ratio possible.
机译:声辐射力脉冲(ARFI)成像的实时应用既需要单个ARFI图像的较短采集时间,又需要重复采集这些帧。但是,由于产生明显的辐射力所需的脉冲能量很高,因此重复采集可能会导致大量换能器表面和组织发热。我们描述和评估了几种新颖的光束定序方案,这些方案与并行接收采集一起,旨在减少采集时间和热量。这些技术减少了生成图像所需的辐射力脉冲的总数,并最大程度地减少了连续脉冲之间的时间。我们提出了定性和定量分析权衡的图像质量的收购计划。结果表明,这些技术可显着提高帧速率,而图像质量仅适度下降。通过有限元方法建模和热电偶测量,可以评估由这些方案导致的组织和换能器表面发热。结果表明,可以通过采用ARFI采集序列来缓解发热问题,该序列利用了可能的最高磁道与激励比。

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