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Bloodless Partial Nephrectomy Through Application of Non-Focused High-Intensity Ultrasound

机译:通过应用非聚焦的高强度超声波的无缺损部分肾切除术

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The goal of this study was to evaluate the hemostatic ability of a new interstitial applicator composed of a planar ultrasonic transducer with a reflector, during partial nephrectomy in a porcine model. The new applicator was designed to make effective use of all the acoustic energy to coagulate the renal tissue . Placement of the reflector opposite the transducer allows use of all the acoustic energy for coagulation. Despite the low transmission frequency, it is possible to work at a relatively weak intensity, with the aid of the reflector. As a result, intense cooling of the transducer is no longer needed. The transducer functions at a frequency of 3.78 MHz. A movable brass plate was mounted to the applicator, parallel to the transducer, to reflect energy that was not absorbed during ultrasound wave transmission. Additionally, the plate served to immobilize the kidney during the treatment. Our methodology was to expose the kidneys of 9 pigs through abdominal laparotomy. An initial series of experiments on 5 pigs allowed exposure conditions to be selected. Thermocouples were implanted in the kidneys after exposure at 15, 20, and 25 mm from the renal capsule surface. The remaining 4 pigs underwent ultrasound treatment with the applicator before a bilateral lower pole partial nephrectomy. The treatment consisted of juxtaposing elementary lesions (made at an intensity of 26 W/cm2 for 50 seconds) circumferentially in a subhilar location. The hemostatic efficacy was evaluated just after the shots and during the 30 minutes that followed the sectioning of the kidney's lower pole. In the event of persistent bleeding, an it was possible form an elementary lesion opposite the insufficiently treated zone. For an exposure duration of 50 seconds at 26 W/cm2, the lesions obtained covered the total thickness of the kidney, which varied between 22 and 36 mm. The temperatures observed within the treated tissues were 62°, 59°, and 58°C at 15, 20 and 25 mm respectively from the kidney surface. The system with the reflector allowed uniform temperatures to be obtained through the complete thickness of the kidney. By applying between 6 and 9 elementary lesions, all partial nephrectomies were performed without hemorrhagic problems, except for one partial nephrectomy (1 of 8 kidneys; 12.5%) for which a central artery could not be controlled. In conclusion, our ultrasound applicator is an excellent hemostatic tool allowing effective coagulation of a highly vascularized organ such as the kidney. The experiment will be repeated for a longitudinal study in order to better verify the persistence of hemostasis. The possibility of adapting this applicator ergonomically as well as the possibility to utilize it for laparoscopy is presently under investigation.
机译:本研究的目标是评估新的间隙涂敷器的止血能力,该泄压能力由具有反射器的平面超声换能器组成,在猪模型中的部分肾切除术期间。新涂抹器旨在有效地利用所有声能凝固肾组织。对相对的反射器放置换能器允许使用所有声能进行凝结。尽管传输频率低,但借助反射器,可以以相对较弱的强度工作。结果,不再需要换能器的强烈冷却。换能器以3.78MHz的频率函数。可移动黄铜板安装到涂抹器上,平行于换能器,以反映在超声波传输期间未被吸收的能量。另外,该板在治疗期间服用肾脏固定。我们的方法论是通过腹部剖腹手术暴露9只猪的肾脏。初始一系列关于5只猪的实验允许选择暴露条件。在从肾胶囊表面暴露于15,20和25mm后,在肾脏后植入肾脏中的热电偶。在双侧下极部分肾切除术之前,剩余的4只猪在双侧下杆部分肾切除术前接受超声处理。处理包括在次样地点周向的并置基本病变(在26W / cm2的强度50秒)。在拍摄后和30分钟后评价止血功效,然后在肾脏下杆切断的30分钟后。在持续出血的情况下,可以形成与不充分处理的区域相对的基本病变。在26W / cm 2下曝光持续时间为50秒,所获得的病变覆盖了肾脏的总厚度,其在22至36mm之间变化。在处理的组织内观察到的温度分别在肾脏表面的15,20和25mm处为62°,59°C。具有反射器的系统允许通过肾脏的完全厚度获得均匀的温度。通过施加6至9个基本病变,除了一个没有出血问题的情况下进行所有部分肾切除术,除了一个部分肾切除术(8个肾脏; 12.5%)无法控制中央动脉。总之,我们的超声施用器是一种优异的止血工具,允许有效地凝结高血管化器官,例如肾脏。将对纵向研究重复该实验,以便更好地验证止血的持久性。目前正在研究符合人体工程学的可能性以及利用腹腔镜检查的可能性的可能性。

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