Herickhoff Carl D, Light Edward D, Bing Kristin F, Mukundan Srinivasan, Grant Gerald A, Wolf Patrick D, Smith Stephen W
Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.
Ultrason Imaging. 2009 Apr;31(2):81-100. doi: 10.1177/016173460903100201.
In this study, we investigated the feasibility of an intracranial catheter transducer with dual-mode capability of real-time 3D (RT3D) imaging and ultrasound hyperthermia, for application in the visualization and treatment of tumors in the brain. Feasibility is demonstrated in two ways: first by using a 50-element linear array transducer (17 mm x 3.1 mm aperture) operating at 4.4 MHz with our Volumetrics diagnostic scanner and custom, electrical impedance-matching circuits to achieve a temperature rise over 4 degrees C in excised pork muscle, and second, by designing and constructing a 12 Fr, integrated matrix and linear-array catheter transducer prototype for combined RT3D imaging and heating capability. This dual-mode catheter incorporated 153 matrix array elements and 11 linear array elements diced on a 0.2 mm pitch, with a total aperture size of 8.4 mm x 2.3 mm. This 3.64 MHz array achieved a 3.5 degrees C in vitro temperature rise at a 2 cm focal distance in tissue-mimicking material. The dual-mode catheter prototype was compared with a Siemens 10 Fr AcuNav catheter as a gold standard in experiments assessing image quality and therapeutic potential and both probes were used in an in vivo canine brain model to image anatomical structures and color Doppler blood flow and to attempt in vivo heating.
在本研究中,我们探究了一种具有实时三维(RT3D)成像和超声热疗双模功能的颅内导管换能器用于脑部肿瘤可视化和治疗的可行性。可行性通过两种方式得以证明:其一,使用一个50阵元线性阵列换能器(孔径为17毫米×3.1毫米),搭配我们的容积诊断扫描仪及定制的电阻抗匹配电路,在切除的猪肌肉中实现超过4摄氏度的温度升高;其二,设计并构建一个12F的集成矩阵和线性阵列导管换能器原型,用于联合RT3D成像和加热功能。这种双模导管包含153个矩阵阵列元件和11个线性阵列元件,以0.2毫米的间距切割,总孔径尺寸为8.4毫米×2.3毫米。这个3.64兆赫的阵列在组织模拟材料中2厘米焦距处实现了3.5摄氏度的体外温度升高。在评估图像质量和治疗潜力的实验中,将双模导管原型与西门子10F AcuNav导管作为金标准进行比较,并且这两种探头都用于犬脑体内模型,以成像解剖结构和彩色多普勒血流,并尝试进行体内加热。