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首页> 外文期刊>Physics in medicine and biology. >Experimental investigation of thermal effects in HIFU-based external valvuloplasty with a non-spherical transducer, using high-resolution MR thermometry.
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Experimental investigation of thermal effects in HIFU-based external valvuloplasty with a non-spherical transducer, using high-resolution MR thermometry.

机译:基于HIFU的外部瓣膜成形术热效应的实验研究,具有非球形换能器,使用高分辨率MR温度测压。

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Real-time image-guided extracorporeal high intensity focused ultrasound (HIFU) has been suggested for minimally invasive treatment of valvular dysfunction in the saphenous vein. Local application of heat on the perimeter of the valve zone was previously reported to induce a partial shrinkage of the collagen, which may correct valvular function. In our study, a novel MR compatible HIFU device has been investigated. This device is based on a non-spherical geometry, with two active elements that create a focusing line which is orthogonal to the beam main axis, aiming to cover the valve longitudinally. The prototype performance was characterized by electro-acoustical measurements of the pressure field and by high-resolution MR thermometry. Pressure and thermal fields were found in good agreement with the theoretical predictions. To investigate the therapeutic potential, fresh samples of excised human veins were filled with an agarose gel, embedded in porcine muscle and exposed to HIFU. The power level applied during a fixed duration of 30 s was varied such that the absolute temperature at focus ranged between 52 degrees C and 83 degrees C. Targeting was achieved under MR guidance using a MR compatible XZ positioning system. A dedicated waterproof miniature loop coil was specifically built to achieve high-resolution MRI image-based targeting (0.25 mm x 0.25 mm x 3 mm voxel) and thermometry (0.4 mm x 0.4 mm x 4 mm voxel). The vein wall was clearly identified on MR images before and after HIFU treatment. The thermal buildup created by the non-spherical transducer could be characterized from MR thermometry data. Shrinkage of the vein wall (above 65 degrees C) was determined by absolute temperature and was not a cumulative thermal dose effect.
机译:实时图像引导体外体外强度聚焦超声(HIFU)已经提出了对隐静脉瓣膜静脉功能障碍的微创治疗。先前据报道,局部在阀区的周边上施加热量以诱导胶原蛋白的部分收缩,这可以校正瓣膜功能。在我们研究中,研究了一部小说MR兼容的HIFU设备。该装置基于非球形几何形状,具有两个有源元件,其产生与梁主轴正交的聚焦线,旨在纵向覆盖阀。原型性能的特征在于压力场的电声测量和高分辨率MR温度测量。与理论预测有关的压力和热场。为了研究治疗潜力,将切除的人静脉的新鲜样品填充有琼脂糖凝胶,嵌入猪肌并暴露于HIFU。在固定持续时间为30秒期间施加的功率水平变化,使得在使用MR兼容的XZ定位系统的MR引导下实现焦点的绝对温度范围为52℃和83摄氏度。专门构建专用防水微型环线线圈,以实现基于高分辨率的MRI图像的靶向(0.25mm×0.25mm×3mm voxel)和温度(0.4mm×0.4mm x 4 mm voxel)。在HIFU治疗前后的MR图像上清楚地鉴定了静脉壁。由非球形换能器产生的热堆积可以从MR温度数据的特征表征。静脉壁的收缩(65℃以上)通过绝对温度确定,不是累积的热剂量效应。

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