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肝组织在加热-冷却循环过程中伴随热凝固的超声特性变化。

Changes in ultrasonic properties of liver tissue in vitro during heating-cooling cycle concomitant with thermal coagulation.

机构信息

Interdisciplinary Postgraduate Program of Biomedical Engineering, Jeju National University, Jeju, Republic of Korea.

出版信息

Ultrasound Med Biol. 2011 Dec;37(12):2000-12. doi: 10.1016/j.ultrasmedbio.2011.06.015.

Abstract

The present work considers the ultrasonic properties of porcine liver tissue in vitro measured during heating concomitant with thermal coagulation followed by natural cooling, so as to provide information about changes in the ultrasonic properties of the tissue after thermal coagulation. The excised liver samples were heated in a degassed water bath up to 75°C and naturally cooled down to 30°C. The tissue was observed to begin thermally coagulating at temperatures lower than 75°C. The ultrasonic parameters considered include the speed of sound, the attenuation coefficient, the backscatter coefficient and the nonlinear parameter of B/A. They were more sensitive to temperature when heating than during natural cooling. All of the parameters were shown to rise significantly on completion of the heating-cooling cycle. At 35°C after thermal coagulation, the B/A value was increased by 96%, the attenuation and backscatter coefficients were increased by 50%∼68% and 33%∼37%, respectively, in the typical frequency ranges of 3 MHz∼5 MHz used for ultrasonic imaging and the speed of sound was increased by 1.4%. The results of this study added to the evidence that tissue characterization, in particular, based on the B/A could be valuable for ultrasonically imaging the thermal lesions following high-intensity focused ultrasound (HIFU) surgery.

摘要

本研究考虑了在体外加热伴随热凝固随后自然冷却过程中测量的猪肝组织的超声特性,以提供关于热凝固后组织超声特性变化的信息。切除的肝组织样本在脱气水浴中加热至 75°C,然后自然冷却至 30°C。观察到组织在低于 75°C 的温度下开始热凝固。所考虑的超声参数包括声速、衰减系数、背散射系数和 B/A 的非线性参数。与自然冷却相比,它们在加热时对温度更敏感。所有参数在完成加热-冷却循环后均显著升高。在热凝固后的 35°C 时,B/A 值增加了 96%,衰减和背散射系数分别增加了 50%∼68%和 33%∼37%,在用于超声成像的典型 3 MHz∼5 MHz 频率范围内,声速增加了 1.4%。本研究的结果增加了证据,即组织特征化,特别是基于 B/A 的特征化,可能对高强度聚焦超声 (HIFU) 手术后的超声热损伤成像有价值。

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