Guntur Sitaramanjaneya Reddy, Kim Seong-Chan, Choi Min-Joo
Department of Biomedical Engineering, Vignan's Foundation for Science, Technology, and Research, Vadlamudi, Guntur 522213, India.
Interdisciplinary Postgraduate Program in Biomedical Engineering, Jeju National University, 102 Jejudaehak-ro, Jeju-si 63243, Jeju Special Self-Governing Province, Republic of Korea.
Bioengineering (Basel). 2022 Dec 9;9(12):786. doi: 10.3390/bioengineering9120786.
A polyacrylamide polysaccharide hydrogel (PASG) containing a nonionic surfactant of the polyoxyethylene nonylphenyl ethers series (NP14) has been adapted to the fabrication of a reusable cost-effective ultrasonic tissue-mimicking phantom for real-time visualization of the thermal lesions by high intensity focused ultrasound (HIFU) irradiation. The constructed NP14 (40% in /) PASG is optically transparent at room temperatures, and it turns out to be opaque white as heated over the clouding points of about 55 °C and returns to its original transparent state after cooling. The acoustic property of the proposed phantom is similar to those of human liver tissues, which includes the acoustic impedance of 1.68 Mrayls, the speed of sound of 1595 ± 5 m/s, the attenuation coefficient of 0.52 ± 0.05 dB cm (at 1 MHz), the backscatter coefficient of 0.21 ± 0.09 × 10 sr cm (at 1 MHz), and the nonlinear parameter B/A of 6.4 ± 0.2. The NP14-PASG was tested to assess the characteristic information (sizes, shapes, and locations) of the thermal lesions visualized when exposed to typical HIFU fields (1.1 MHz, focal pressure up to 20.1 MPa, focal intensity 4075 W/cm). The proposed NP14-PASG is expected to replace the existing costly BSA-PASG used for more effective testing of the performance of therapeutic ultrasonic devices based on thermal mechanisms.
一种含有聚氧乙烯壬基苯基醚系列(NP14)非离子表面活性剂的聚丙烯酰胺多糖水凝胶(PASG)已被用于制造一种可重复使用且经济高效的超声组织模拟体模,用于通过高强度聚焦超声(HIFU)照射实时可视化热损伤。所构建的NP14(40%质量分数)PASG在室温下是光学透明的,当加热到约55°C的浊点以上时会变成不透明的白色,冷却后又恢复到原来的透明状态。所提出的体模的声学特性与人体肝脏组织相似,包括声阻抗为1.68 Mrayls、声速为每秒1595±5米、衰减系数为0.52±0.05分贝每厘米(在1兆赫时)、背向散射系数为0.21±0.09×10-6平方厘米每球面度(在1兆赫时)以及非线性参数B/A为6.4±0.2。对NP14-PASG进行了测试,以评估在暴露于典型HIFU场(1.1兆赫、焦点压力高达20.1兆帕、焦点强度4075瓦每平方厘米)时可视化的热损伤的特征信息(大小、形状和位置)。预计所提出的NP14-PASG将取代现有的昂贵的BSA-PASG,用于基于热机制的治疗超声设备性能的更有效测试。