Chan Arthur H, Fujimoto Victor Y, Moore Donald E, Martin Roy W, Vaezy Shahram
Department of Bioengineering, University of Washington, Seattle, Washington 98105, USA.
Med Phys. 2002 Nov;29(11):2611-20. doi: 10.1118/1.1513990.
A high intensity focused ultrasound (HIFU) device was developed for treating uterine fibroid tumors. This prototype device enables image-guided therapy by aligning a commercially available abdominal ultrasound image probe to a vaginal HIFU transducer so the HIFU focus is in the image plane. The device was designed based on anatomical constraints of the female pelvic structures. HIFU was generated using a 3.5 MHz PZT-8 crystal, 25.4 mm in diameter, bonded to an aluminum lens. Computer simulations were performed to ensure that effective focusing was achievable at a fixed focal depth of 40 mm. Transducer efficiency was empirically determined to be 58%, and the half pressure maximum focal dimensions were 11 mm in length and 1.2 mm in width. A water-filled latex condom surrounding the transducer provided acoustic coupling, a stand-off, and allowed water circulation for transducer cooling. In vitro experiments in a tissue-mimicking gel phantom and in turkey breast demonstrated ultrasound image-guided lesion formation, or tissue necrosis, at the focus due to HIFU induced thermal and cavitation effects. The HIFU treatment site appeared as a hyperechoic spot on the ultrasound image at intensities above 1250 W/cm2. The results of in vitro experiments and in vivo ergonomic testing in six human volunteers indicated that the device has the potential of providing a nonsurgical approach for uterine fibroid treatment. Future in vivo studies in large animal models and fibroids patients are planned.
一种用于治疗子宫肌瘤的高强度聚焦超声(HIFU)设备被研发出来。该原型设备通过将市售的腹部超声图像探头与阴道HIFU换能器对齐,使HIFU焦点位于图像平面内,从而实现图像引导治疗。该设备是根据女性盆腔结构的解剖学限制设计的。HIFU由一个直径25.4毫米的3.5兆赫PZT - 8晶体产生,该晶体粘结在一个铝制透镜上。进行了计算机模拟,以确保在40毫米的固定焦深处能够实现有效聚焦。经实验测定,换能器效率为58%,半压力最大聚焦尺寸长度为11毫米,宽度为1.2毫米。围绕换能器的充水乳胶避孕套提供了声耦合、间隔,并允许水循环以冷却换能器。在组织模拟凝胶体模和火鸡胸肉中进行的体外实验表明,由于HIFU诱导的热效应和空化效应,在焦点处形成了超声图像引导的病变,即组织坏死。当强度高于1250瓦/平方厘米时,HIFU治疗部位在超声图像上表现为高回声点。体外实验结果以及在六名人类志愿者身上进行的体内人体工程学测试表明,该设备有可能为子宫肌瘤治疗提供一种非手术方法。计划在大型动物模型和子宫肌瘤患者身上进行未来的体内研究。