Department of Bioengineering, Stanford University, Stanford, CA, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Jul;58(7):1397-405. doi: 10.1109/TUFFC.2011.1959.
A tissue-mimicking material (TMM) for the acoustic and thermal characterization of high-intensity focused ultrasound (HIFU) devices has been developed. The material is a high-temperature hydrogel matrix (gellan gum) combined with different sizes of aluminum oxide particles and other chemicals. The ultrasonic properties (attenuation coefficient, speed of sound, acoustical impedance, and the thermal conductivity and diffusivity) were characterized as a function of temperature from 20 to 70°C. The backscatter coefficient and nonlinearity parameter B/A were measured at room temperature. Importantly, the attenuation coefficient has essentially linear frequency dependence, as is the case for most mammalian tissues at 37°C. The mean value is 0.64f(0.95) dB·cm(-1) at 20°C, based on measurements from 2 to 8 MHz. Most of the other relevant physical parameters are also close to the reported values, although backscatter signals are low compared with typical human soft tissues. Repeatable and consistent temperature elevations of 40°C were produced under 20-s HIFU exposures in the TMM. This TMM is appropriate for developing standardized dosimetry techniques, validating numerical models, and determining the safety and efficacy of HIFU devices.
已经开发出一种用于高强度聚焦超声(HIFU)设备的声学和热特性表征的组织模拟材料(TMM)。该材料是一种高温水凝胶基质(结冷胶),与不同大小的氧化铝颗粒和其他化学物质结合。超声特性(衰减系数、声速、声阻抗以及热导率和扩散率)作为温度的函数从 20°C 到 70°C 进行了表征。在室温下测量了背散射系数和非线性参数 B/A。重要的是,衰减系数具有基本的线性频率依赖性,这与 37°C 下大多数哺乳动物组织的情况相同。基于 2 至 8 MHz 的测量,在 20°C 时的平均值为 0.64f(0.95) dB·cm(-1)。虽然与典型的人体软组织相比,背散射信号较低,但大多数其他相关物理参数也接近报道值。在 TMM 中进行 20 秒的 HIFU 照射下,可产生可重复且一致的 40°C 温度升高。这种 TMM 适用于开发标准化剂量测定技术、验证数值模型以及确定 HIFU 设备的安全性和有效性。