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Development of an endoluminal high-intensity ultrasound applicator for image-guided thermal therapy of pancreatic tumors

机译:用于胰腺肿瘤的图像引导热疗的腔内高强度超声涂药器的研制

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摘要

An ultrasound applicator for endoluminal thermal therapy of pancreatic tumors has been introduced and evaluated through acoustic/biothermal simulations and ex vivo experimental investigations. Endoluminal therapeutic ultrasound constitutes a minimally invinvasive conformal therapy and is compatible with ultrasound or MR-based image guidance. The applicator would be placed in the stomach or duodenal lumen, and sonication would be performed through the luminal wall into the tumor, with concurrent water cooling of the wall tissue to prevent its thermal injury. A finite-element (FEM) 3D acoustic and biothermal model was implemented for theoretical analysis of the approach. Parametric studies over transducer geometries and frequencies revealed that operating frequencies within 1-3 MHz maximize penetration depth and lesion volume while sparing damage to the luminal wall. Patient-specific FEM models of pancreatic head tumors were generated and used to assess the feasibility of performing endoluminal ultrasound thermal ablation and hyperthermia of pancreatic tumors. Results indicated over 80% of the volume of small tumors (~2 cm diameter) within 35 mm of the duodenum could be safely ablated in under 30 minutes or elevated to hyperthermic temperatures at steady-state. Approximately 60% of a large tumor (~5 cm diameter) model could be safely ablated by considering multiple positions of the applicator along the length of the duodenum to increase coverage. Prototype applicators containing two 3.2 MHz planar transducers were fabricated and evaluated in ex vivo porcine carcass heating experiments under MR temperature imaging (MRTI) guidance. The applicator was positioned in the stomach adjacent to the pancreas, and sonications were performed for 10 min at 5 W/cm2 applied intensity. MRTI indicated over 40°C temperature rise in pancreatic tissue with heating penetration extending 3 cm from the luminal wall.
机译:已经引入了用于胰腺肿瘤腔内热疗法的超声施加器,并通过声学/生物热模拟和离体实验研究对其进行了评估。腔内治疗性超声构成了最小侵入性的保形治疗,并且与超声或基于MR的图像引导兼容。将施加器放置在胃或十二指肠腔中,并通过腔壁进入肿瘤内进行超声处理,同时对壁组织进行水冷以防止其热损伤。实施了有限元(FEM)3D声学和生物热模型,以对该方法进行理论分析。对换能器几何形状和频率的参数研究表明,在1-3 MHz范围内的工作频率可最大程度地增加穿透深度和病变体积,同时不损坏腔壁。生成了针对患者的胰腺头肿瘤的有限元模型,并用于评估进行胰腔内超声热消融和热疗的可行性。结果表明,十二指肠35毫米内80%以上的小肿瘤体积(直径约2厘米)可以在30分钟内安全消融,或在稳态下升至高温。通过考虑沿十二指肠长度方向的多个涂抹器位置以增加覆盖范围,可以安全消融大约60%的大肿瘤(直径约5厘米)模型。制作了包含两个3.2 MHz平面换能器的原型施加器,并在MR温度成像(MRTI)指导下在离体猪M体加热实验中进行了评估。将施用器放置在邻近胰腺的胃中,并以5 W / cm 2 施用强度进行超声处理10分钟。 MRTI表明胰腺组织温度升高40°C以上,并且加热穿透距离腔壁延伸3 cm。

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