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Histotripsy: minimally invasive technology for prostatic tissue ablation in an in vivo canine model.

机译:组织分裂:用于在体内犬模型中进行前列腺组织消融的微创技术。

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OBJECTIVES: Symptoms of benign prostatic hyperplasia affect men increasingly as they age. Minimally invasive therapies for the treatment of benign prostatic hyperplasia continue to evolve. We describe histotripsy, a noninvasive, nonthermal, focused ultrasound technology for precise tissue ablation, and report the initial results of using histotripsy for prostatic tissue ablation in an in vivo canine model. METHODS: An annular 18-element, 750-kHz, phased-array ultrasound system delivered high-intensity (22 kW/cm(2)), ultrasound pulses (15 cycles in 20 ms) at pulse repetition frequencies of 100 to 500 Hz to canine prostates. Eight lateral lobe and nine periurethral treatments were performed in 11 anesthetized dogs. Diagnostic ultrasound transducers provided in-line and transrectal imaging. Retrograde urethrography was performed before and after the periurethral treatments. After treatment, the prostates were grossly examined, sectioned, and submitted for histologic examination. RESULTS: In the lateral lobe treatments, a well-demarcated cavity containing liquefied material was present at the ablation site. Microscopically, the targeted volume was characterized by the presence of histotripsy paste (debris, absent cellular structures). A narrow margin of cellular injury was noted, beyond which no tissue damage was apparent. The periurethral treatments resulted in total urethral ablation or significant urethral wall damage, with visible prostatic urethral defects on retrograde urethrography. Real-time ultrasound imaging demonstrated a dynamic hyperechoic zone at the focus, indicative of cavitation and suggesting effective tissue ablation. CONCLUSIONS: The results of our study have shown that histotripsy is capable of precise prostatic tissue destruction and results in subcellular fractionation of prostate parenchyma. Histotripsy can also produce prostatic urethral damage and thereby facilitate drainage of finely fractionated material per urethra, producing immediate debulking.
机译:目的:随着年龄的增长,良性前列腺增生的症状对男性的影响越来越大。用于治疗前列腺增生的微创疗法不断发展。我们描述了用于精确组织消融的非侵入性,非热性,聚焦超声技术的组织曲霉病,并报告了在犬科动物体内模型中使用组织曲霉菌进行前列腺组织消融的初步结果。方法:环形18元素,750 kHz,相控阵超声系统以100至500 Hz的脉冲重复频率提供高强度(22 kW / cm(2)),超声脉冲(20毫秒内15个循环)。犬的前列腺。在11只麻醉狗中进行了八次旁叶和九次尿道周围治疗。诊断超声换能器提供在线和经直肠成像。逆行尿道造影在尿道周围治疗之前和之后进行。治疗后,对前列腺进行大体检查,切片并进行组织学检查。结果:在旁叶治疗中,消融部位存在界限分明的腔,其中包含液化物质。在显微镜下,目标体积的特征在于组织曲糊的存在(碎片,缺少细胞结构)。注意到狭窄的细胞损伤边缘,在此范围之外没有明显的组织损伤。尿道周围的治疗导致完全的尿道消融或明显的尿道壁损伤,在逆行尿道造影上可见前列腺尿道缺损。实时超声成像在焦点处显示了动态高回声区,表明有气蚀现象并提示有效的组织消融。结论:我们的研究结果表明,组织分裂症能够精确地破坏前列腺组织并导致前列腺实质的亚细胞分级。组织碎裂还可以产生前列腺尿道损伤,从而促进每个尿道细颗粒物质的引流,从而立即减积。

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