Department of Communication Engineering, Tohoku University, 6-6-05 Aoba, Aramaki, Sendai 980-8579, Japan.
J Acoust Soc Am. 2013 Aug;134(2):1724-30. doi: 10.1121/1.4813104.
Ultrasonic imaging has advantages in its self-consistency in guiding and monitoring ultrasonic treatment such as high-intensity focused ultrasound (HIFU) treatment. Changes in ultrasonic backscatter of tissues due to HIFU treatment have been observed, but their mechanism is still under discussion. In this paper, ultrasonic backscatter of excised and degassed porcine liver tissue was observed before and after HIFU exposure using a diagnostic scanner, and its acoustic impedance was mapped using an ultrasonic microscope. The histology of its pathological specimen was also observed using an optical microscope. The observed decrease in backscatter intensity due to HIFU exposure was consistent with a spatial Fourier analysis of the histology, which also showed changes due to the exposure. The observed increase in acoustic impedance due to the exposure was also consistent with the histological change assuming that the increase was primarily caused by the increase in the concentration of hepatic cells.
超声成像是指导和监测高强度聚焦超声(HIFU)等超声治疗的一种方法,具有自身一致性的优势。人们已经观察到 HIFU 治疗引起的组织超声背散射的变化,但它们的机制仍在讨论中。在本文中,使用诊断扫描仪观察了离体去气猪肝组织在 HIFU 暴露前后的超声背散射,并使用超声显微镜绘制了其声阻抗图。还使用光学显微镜观察了其病理标本的组织学。由于 HIFU 暴露导致的背散射强度的观察到的降低与组织学的空间傅里叶分析一致,该分析也显示了由于暴露而引起的变化。由于暴露导致的观察到的声阻抗的增加也与组织学变化一致,假设增加主要是由于肝细胞浓度的增加所致。