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Correlation of acoustic emissions associated with effects from diagnostic and therapeutic ultrasound.

机译:与超声诊断和治疗相关的声发射的相关性。

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摘要

This research has investigated the correlation of acoustic emissions with associated contrast-mediated ultrasound bio-effects.; The hypothesis that motivated this study was that during exposure with ultrasound, the cavitation occurring in tissue emits acoustical signals, which if correlated with specific bio-effects, could provide a way to monitor the potential bio-effects of exposure. A good bio-effects indicator would find immediate use in research on drug and gene delivery, and could have clinical application in avoiding bio-effects in diagnosis.; Studies conducted to test the hypothesis involved investigation of (i) the influence of pulse repetition frequency (PRF) and number of exposures on cell damage, (ii) the effect of total exposure duration and pulse-to-pulse bubble distribution on acoustic emissions and corresponding cell damage, and (iii) the translation of in vitro effects to an in situ environment.; Exposures were primarily conducted at a peak rarefactional pressure of 2 MPa, 2.25 MHz insonating frequency and pulse length of 46 cycles. PRFs of 1-, 10-, 100-, 500-, and 1000 Hz were compared. High speed photography (2000 fps) was employed for the investigation of pulse-to-pulse bubble distribution while intravital microscopy was used for in situ studies.; A strong correlation was observed between acoustic emissions and bio-effects with the availability of bubbles of resonant size serving as a key link between the two. It was observed that total exposure duration may play an important role in cell damage. Damage increased with increasing total exposure duration from 0 ms to 100 ms with a plateau at above 100 ms. These results were consistent for all studies. There is, therefore, an implication that manipulating these parameters may allow for measurement and control of the extent of bioeffects. Moreover, the correlation of acoustic emission and extravasation observed in in situ studies reveals that cumulative function of the relative integrated power spectrum (CRIPS) of the emissions may find use as a monitoring method related to tissue damage due to contrast-mediated ultrasound in vivo.
机译:这项研究调查了声发射与相关的对比介导的超声生物效应的相关性。推动这项研究的假设是,在超声波照射期间,组织中发生的空化会发出声音信号,如果与特定的生物效应相关,则可以提供一种监测潜在的生物效应的方法。良好的生物效应指标可立即用于药物和基因传递的研究,并可在避免诊断中的生物效应方面具有临床应用。为检验假设而进行的研究涉及以下方面的研究:(i)脉冲重复频率(PRF)和暴露次数对细胞损伤的影响;(ii)总暴露持续时间和脉冲到气泡分布对声发射的影响;以及相应的细胞损伤,以及(iii)将体外效应翻译为原位环境。暴露主要在2 MPa的峰值稀疏压力,2.25 MHz的声波频率和46个周期的脉冲长度下进行。比较了1、10、100、500和1000 Hz的PRF。高速摄影(2000 fps)用于研究脉冲到脉冲的气泡分布,而活体显微镜用于原位研究。观察到声发射与生物效应之间的密切相关,共振大小的气泡的可用性是两者之间的关键环节。据观察,总暴露时间可能在细胞损伤中起重要作用。随着总曝光持续时间从0毫秒增加到100毫秒,并且稳定时间超过100毫秒,伤害增加。这些结果对于所有研究都是一致的。因此,暗示着操纵这些参数可以允许测量和控制生物效应的程度。此外,在原位研究中观察到的声发射与外渗的相关性揭示,发射的相对积分功率谱(CRIPS)的累积功能可能被用作与体内造影剂介导的超声引起的组织损伤相关的监测方法。

著录项

  • 作者

    Samuel, Stanley.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Biomedical.; Biophysics Medical.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;生物物理学;声学;
  • 关键词

  • 入库时间 2022-08-17 11:39:51

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