首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Overview of experimental studies of biological effects of medical ultrasound caused by gas body activation and inertial cavitation.
【24h】

Overview of experimental studies of biological effects of medical ultrasound caused by gas body activation and inertial cavitation.

机译:由气体活化和惯性空化引起的医学超声生物学效应的实验研究概述。

获取原文
获取原文并翻译 | 示例
           

摘要

Ultrasound exposure can induce bioeffects in mammalian tissue by the nonthermal mechanism of gas body activation. Pre-existing bodies of gas may be activated even at low-pressure amplitudes. At higher-pressure amplitudes, violent cavitation activity with inertial collapse of microbubbles can be generated from latent nucleation sites or from the destabilization of gas bodies. Mechanical perturbation at the activation sites leads to biological effects on nearby cells and structures. Shockwave lithotripsy was the first medical ultrasound application for which significant cavitational bioeffects were demonstrated in mammalian tissues, including hemorrhage and injury in the kidney. Lithotripter shockwaves can also cause hemorrhage in lung and intestine by activation of pre-existing gas bodies in these tissues. Modern diagnostic ultrasound equipment develops pressure amplitudes sufficient for inertial cavitation, but the living body normally lacks suitable cavitation nuclei. Ultrasound contrast agents (UCAs)are suspensions of microscopic gas bodies created to enhance the echogenicity of blood. Ultrasound contrast agent gas bodies also provide nuclei for inertial cavitation. Bioeffects from contrast-aided diagnostic ultrasound depend on pressure amplitude, UCA dose, dosage delivery method and image timing parameters. Microvascular leakage, capillary rupture, cardiomyocyte killing, inflammatory cell infiltration, and premature ventricular contractions have been reported for myocardial contrast echocardiography with clinical ultrasound machines and clinically relevant agent doses in laboratory animals. Similar bioeffects have been reported in intestine, skeletal muscle, fat, lymph nodes and kidney. These microscale bioeffects could be induced unknowingly in diagnostic examinations; however, the medical significance of bioeffects of diagnostic ultrasound with contrast agents is not yet fully understood in relation to the clinical setting.
机译:超声暴露可通过气体激活的非热机制在哺乳动物组织中诱导生物效应。预先存在的气体体即使在低压振幅下也可能被激活。在较高的压力振幅下,潜在的成核位点或瓦斯体的失稳可能会产生剧烈的空化活动,并引起微气泡的惯性塌陷。在激活位点的机械扰动导致对附近细胞和结构的生物学影响。冲击波碎石术是第一个医学超声应用,其在哺乳动物组织中表现出明显的空化生物效应,包括出血和肾脏损伤。碎石机冲击波还可以通过激活这些组织中预先存在的气体而导致肺和肠道出血。现代诊断超声设备会产生足以实现惯性空化的压力幅度,但活体通常缺乏合适的空化核。超声造影剂(UCA)是微观气体体的悬浮液,旨在增强血液的回声性。超声造影剂气体体还为惯性空化提供核。造影剂辅助诊断超声的生物效应取决于压力幅度,UCA剂量,剂量输送方法和图像定时参数。已经报道了在临床动物中使用临床超声仪和临床相关剂量的心肌造影超声心动图,发现微血管渗漏,毛细血管破裂,心肌细胞杀伤,炎性细胞浸润和心室过早收缩。在肠道,骨骼肌,脂肪,淋巴结和肾脏中也有类似的生物效应。这些微观生物效应可能在诊断检查中在不知不觉中被诱导。然而,相对于临床环境,用造影剂诊断超声波的生物效应的医学意义尚未完全被理解。

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