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MRI-guided interstitial ultrasound thermal therapy of the prostate: a feasibility study in the canine model.

机译:MRI引导的前列腺间质超声热疗:在犬模型中的可行性研究。

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The feasibility of MRI-guided interstitial ultrasound thermal therapy of the prostate was evaluated in an in vivo canine prostate model. MRI compatible, multielement interstitial ultrasound applicators were developed using 1.5 mm diameter cylindrical piezoceramic transducers (7 to 8 MHz) sectored to provide 180 degrees of angular directional heating. Two in vivo experiments were performed in canine prostate. The first using two interstitial ultrasound applicators, the second using three ultrasound applicators in conjunction with rectal and urethral cooling. In both experiments, the applicators were inserted transperineally into the prostate with the energy directed ventrally, away from the rectum. Electrical power levels of 5-17 W per element (approximately 1.6-5.4 W acoustic output power) were applied for heating periods of 18 and 48 min. Phase-sensitive gradient-echo MR imaging was used to monitor the thermal treatment in real-time on a 0.5 T interventional MRI system. Contrast-enhanced T1-weighted images and vital-stained serial tissue sections were obtained to assess thermal damage and correlate to real-time thermal contour plots and calculated thermal doses. Results from these studies indicated a large volume of ablated (nonstained) tissue within the prostate, extending 1.2 to 2.0 cm from the applicators to the periphery of the gland, with the dorsal margin of coagulation well-defined by the applicator placement and directionality. The shape of the lesions correlated well to the hypointense regions visible in the contrast-enhanced T1-weighted images, and were also in good agreement with the contours of the 52 degrees C threshold temperature and t43 > 240 min. This study demonstrates the feasibility of using directional interstitial ultrasound in conjunction with MRI thermal imaging to monitor and possibly control thermal coagulation within a targeted tissue volume while potentially protecting surrounding tissue, such as rectum, from thermal damage.
机译:在体内犬科动物前列腺模型中评估了MRI引导的前列腺间质超声热疗法的可行性。使用直径为1.5 mm的圆柱形压电陶瓷换能器(7至8 MHz)进行扇形以提供180度的角向加热,从而开发出与MRI兼容的多元素间质超声施加器。在犬前列腺中进行了两次体内实验。第一个使用两个间质超声施加器,第二个使用三个超声施加器结合直肠和尿道冷却。在这两个实验中,将涂药器经会阴地插入前列腺中,能量指向腹侧,远离直肠。在18和48分钟的加热时间中,每个元素5-17 W的电功率水平(大约1.6-5.4 W的声音输出功率)被施加。使用相敏梯度回波MR成像在0.5 T介入MRI系统上实时监测热处理。获得对比度增强的T1加权图像和活体染色的连续组织切片,以评估热损伤并将其与实时热轮廓图和计算的热剂量相关联。这些研究的结果表明,前列腺内有大量消融的(未染色的)组织,从涂抹器到腺体的周围延伸了1.2至2.0厘米,凝血的背缘由涂抹器的位置和方向明确定义。病变的形状与对比增强的T1加权图像中可见的低点区域相关性很好,并且也与52摄氏度阈值温度和t43> 240分钟的轮廓高度吻合。这项研究表明,结合使用定向间隙超声和MRI热成像技术来监视并可能控制目标组织体积内的热凝,同时潜在地保护周围组织(例如直肠)免受热损伤的可行性。

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