University of North Carolina at Charlotte, Department of Physics and Optical Science, Charlotte, North Carolina, United States.
Medtronic, Boulder, Colorado, United States.
J Biomed Opt. 2017 May 1;22(5):58002. doi: 10.1117/1.JBO.22.5.058002.
Energy-based, radiofrequency (RF) and ultrasonic (US) devices currently provide rapid sealing of blood vessels during laparoscopic procedures. We are exploring infrared lasers as an alternate energy modality for vessel sealing, capable of generating less collateral thermal damage. Previous studies demonstrated feasibility of sealing vessels in an in vivo porcine model using a 1470-nm laser. However, the initial prototype was designed for testing in open surgery and featured tissue clasping and light delivery mechanisms incompatible with laparoscopic surgery. In this study, a laparoscopic prototype similar to devices currently in surgical use was developed, and performance tests were conducted on porcine renal blood vessels, ex vivo. The 5-mm outer-diameter laparoscopic prototype featured a traditional Maryland jaw configuration that enables tissue manipulation and blunt dissection. Laser energy was delivered through a 550 - ? m -core-diameter optical fiber with side-delivery from the lower jaw and beam dimensions of 18 - mm ? length × 1.2 - mm ? width . The 1470-nm diode laser delivered 68 W with 3-s activation time, consistent with vessel seal times associated with RF and US-based devices. A total of 69 fresh porcine renal vessels with mean diameter of 3.3 ± 1.7 ?? mm were tested, ex vivo. Vessels smaller than 5-mm diameter were consistently sealed (48/51) with burst pressures greater than malignant hypertension blood pressure (180 mmHg), averaging 1038 ± 474 ?? mmHg . Vessels larger than 5 mm were not consistently sealed (6/18), yielding burst pressures of only 174 ± 221 ?? mmHg . Seal width, thermal damage zone, and thermal spread averaged 1.7 ± 0.8 , 3.4 ± 0.7 , and 1.0 ±
能量型、射频(RF)和超声(US)设备目前可在腹腔镜手术中快速封闭血管。我们正在探索红外激光作为血管封闭的替代能源模式,其产生的热损伤更小。先前的研究表明,在活体猪模型中使用 1470nm 激光封闭血管是可行的。然而,最初的原型是为开放手术设计的,具有组织夹持和光传输机制,与腹腔镜手术不兼容。在这项研究中,开发了一种类似于目前外科手术中使用的腹腔镜原型,并在离体猪肾血管上进行了性能测试。外径为 5mm 的腹腔镜原型具有传统的马里兰州钳口配置,可实现组织操作和钝性解剖。激光能量通过一个 550μm 芯径的光纤传输,从下颌的侧面输送,光束尺寸为 18mm×1.2mm。1470nm 二极管激光以 68W 的功率和 3s 的激活时间传输,与基于 RF 和 US 的设备的血管密封时间一致。总共测试了 69 根新鲜猪肾血管,平均直径为 3.3±1.7mm,离体。直径小于 5mm 的血管均能被牢固封闭(48/51),爆裂压力大于恶性高血压血压(180mmHg),平均为 1038±474mmHg。直径大于 5mm 的血管不能被牢固封闭(6/18),爆裂压力仅为 174±221mmHg。密封宽度、热损伤区和热扩散平均值分别为 1.7±0.8mm、3.4±0.7mm 和 1.0±0.6mm。