使用波长为 1470 nm 的连续波红外二极管激光器同时进行猪肾血管的活体密封和分切。

IF 2.1 4区 医学 Q3 ENGINEERING, BIOMEDICAL Lasers in Medical Science Pub Date : 2024-06-22 DOI:10.1007/s10103-024-04093-0
Woheeb M Saeed, Jude K Yoshino, Alexandria J Traynham, Nathaniel M Fried
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引用次数: 0

摘要

电外科和超声波设备在外科手术中用于止血密封和切割血管组织。之前的台式研究也证明了红外线激光封堵和切割血管的成功,采用的是连续的两步法。本研究介绍了一种体积更小、与腹腔镜设备兼容的设计,以及同时密封和切割血管的方法,并具有潜在的光学反馈功能。1470 纳米红外二极管激光器在体外密封并分割了 40 条猪肾动脉。在一个透明的方形石英光学室(外尺寸为 2.7 × 2.7 × 25 毫米)中安装了一根往复式侧向发射光纤,在 11 毫米的扫描长度上发射激光能量,入射功率(41-59 瓦)和治疗时间(5-21 秒)各不相同。血管直径从 2.5 毫米到 4.8 毫米不等。对每个切割端(n = 80)进行了血管爆破压力测量,压力超过 360 mmHg 即为成功。所有容器末端都成功密封并一分为二(80/80)。最高入射功率为 59 W,处理时间很短,仅为 5-6 秒。红外激光器可同时密封和分割血管,其治疗时间与传统设备相当,温度和冷却时间则低于传统设备。未来的工作重点是将光纤和腔室集成到标准的 5 毫米外径腹腔镜设备中。根据血管大小定制光纤扫描长度也可减少激光能量沉积,从而降低峰值温度、治疗时间和冷却时间。
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Simultaneous sealing and bisection of porcine renal blood vessels, ex vivo, using a continuous-wave, infrared diode laser at 1470 nm.

Electrosurgical and ultrasonic devices are used in surgical procedures for hemostatic sealing and bisection of vascular tissues. Previous benchtop studies alternatively demonstrated successful infrared laser sealing and cutting of blood vessels, in a sequential, two-step approach. This study describes a smaller, laparoscopic device compatible design, and simultaneous approach to sealing and bisection of vessels, with potential optical feedback. A 1470-nm infrared diode laser sealed and bisected 40 porcine renal arteries, ex vivo. A reciprocating, side-firing, optical fiber, housed in a transparent square quartz optical chamber (2.7 × 2.7 × 25 mm outer dimensions), delivered laser energy over an 11 mm scan length, with a range of incident powers (41-59 W) and treatment times (5-21 s). Vessel diameters ranged from 2.5 to 4.8 mm. Vessel burst pressure measurements were performed on each cut end (n = 80) with success indicated by pressures exceeding 360 mmHg. All vessel ends were successfully sealed and bisected (80/80). The highest incident power, 59 W, yielded short treatment times of 5-6 s. Peak temperatures on the external chamber surface reached 103 oC. Time to cool down to body temperature measured 37 s. Infrared lasers simultaneously seal and bisect blood vessels, with treatment times comparable to, and temperatures and cooling times lower than reported for conventional devices. Future work will focus on integrating the fiber and chamber into a standard 5-mm-outer-diameter laparoscopic device. Customization of fiber scan length to match vessel size may also reduce laser energy deposition, enabling lower peak temperatures, treatment times, and cooling times.

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来源期刊
Lasers in Medical Science
Lasers in Medical Science 医学-工程:生物医学
CiteScore
4.50
自引率
4.80%
发文量
192
审稿时长
3-8 weeks
期刊介绍: Lasers in Medical Science (LIMS) has established itself as the leading international journal in the rapidly expanding field of medical and dental applications of lasers and light. It provides a forum for the publication of papers on the technical, experimental, and clinical aspects of the use of medical lasers, including lasers in surgery, endoscopy, angioplasty, hyperthermia of tumors, and photodynamic therapy. In addition to medical laser applications, LIMS presents high-quality manuscripts on a wide range of dental topics, including aesthetic dentistry, endodontics, orthodontics, and prosthodontics. The journal publishes articles on the medical and dental applications of novel laser technologies, light delivery systems, sensors to monitor laser effects, basic laser-tissue interactions, and the modeling of laser-tissue interactions. Beyond laser applications, LIMS features articles relating to the use of non-laser light-tissue interactions.
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