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钬激光诱导液体喷射解剖器:一种用于解剖器官而不损伤血管的新型原型设备。

Holmium:YAG laser-induced liquid jet dissector: a novel prototype device for dissecting organs without impairing vessels.

作者信息

Hirano T, Uenohara H, Komatsu M, Nakagawa A, Satoh M, Ohyama H, Takayama K, Yoshimoto T

机构信息

Department of Neurosurgery, Tohoku University Graduate School of Medicine, Sendai, Japan.

出版信息

Minim Invasive Neurosurg. 2003 Apr;46(2):121-5. doi: 10.1055/s-2003-39339.

Abstract

BACKGROUND AND OBJECTIVE

Neurosurgery has long required a method for dissecting brain tissue without damaging principal vessels and adjacent tissue, so as to prevent neurological complications after operation. In this study we fabricated such a prototype device and used it in an attempt to resect an animal liver, which, like the brain, contains many vessels.

MATERIALS AND METHODS

The prototype device consisted of a jet nozzle and a suction tube. Pulsed liquid jets at 3 Hz were ejected from the nozzle by a pulsed holmium:YAG (Ho:YAG) laser at an irradiation energy of 230 mJ/pulse. The profile of the liquid jet was observed with a high-speed camera. With this device, liver dissections of anesthetized rabbits were attempted while measuring the local temperature of the target. A histological study of the incised parts was also performed.

RESULTS

The liquid jet was emitted straight from the nozzle at an initial velocity of 38 m/sec. The liver parenchyma was cut with the device while preserving the tiny vessels and keeping the operative field clear. The local temperature rose to no more than 314 K (below the heat damage threshold of brain tissue). In the histological findings, there were no signs of hepatic degeneration or necrosis around the dissected margin.

CONCLUSIONS

The Ho:YAG laser-induced liquid jet dissector can be applied to neurosurgical operations after incorporating some minor improvements.

摘要

背景与目的

长期以来,神经外科手术需要一种在不损伤主要血管和相邻组织的情况下解剖脑组织的方法,以防止术后出现神经并发症。在本研究中,我们制造了这样一种原型设备,并将其用于尝试切除动物肝脏,肝脏与大脑一样含有许多血管。

材料与方法

该原型设备由一个喷嘴和一个吸管组成。通过脉冲钬:钇铝石榴石(Ho:YAG)激光以230 mJ/脉冲的照射能量从喷嘴喷出频率为3 Hz的脉冲液体射流。用高速摄像机观察液体射流的轮廓。使用该设备对麻醉后的兔子进行肝脏解剖,同时测量目标部位的局部温度。还对切开部位进行了组织学研究。

结果

液体射流以38 m/秒的初速度从喷嘴笔直喷出。使用该设备切割肝实质时,可保留微小血管并保持手术视野清晰。局部温度升高不超过314 K(低于脑组织热损伤阈值)。组织学检查结果显示,切开边缘周围没有肝变性或坏死的迹象。

结论

经过一些小的改进后,Ho:YAG激光诱导液体射流分离器可应用于神经外科手术。

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