Graduate School of Engineering, Osaka University, Yamadaoka 2-1, Suita, Osaka, 565-0871, Japan.
Graduate School of Medicine, Osaka University, Yamadaoka 2-2, Suita, Osaka, 565-0871, Japan.
Sci Rep. 2023 Feb 28;13(1):2921. doi: 10.1038/s41598-023-29392-4.
A miniaturized endoscopic laser system with laser steering has great potential to expand the application of minimally invasive laser treatment for micro-lesions inside narrow organs. The conventional systems require separate optical paths for endoscopic imaging and laser steering, which limits their application inside narrower organs. Herein, we present a novel endoscopic image-guided laser treatment system with a thin tip that can access inside narrow organs. The system uses a single fiber bundle to simultaneously acquire endoscopic images and modulate the laser-irradiated area. The insertion and operation of the system in a narrow space were demonstrated using an artificial vascular model. Repeated laser steering along set targets demonstrated accurate laser irradiation within a root-mean-square error of 28 [Formula: see text]m, and static repeatability such that the laser irradiation position was controlled within a 12 [Formula: see text]m radius of dispersion about the mean trajectory. Unexpected irradiation on the distal irradiated plane due to fiber bundle crosstalk was reduced by selecting the appropriate laser input diameter. The laser steering trajectory spatially controlled the photothermal effects, vaporization, and coagulation of chicken liver tissue. This novel system achieves minimally invasive endoscopic laser treatment with high lesion-selectivity in narrow organs, such as the peripheral lung and coronary arteries.
一种具有激光转向功能的微型内窥镜激光系统具有很大的潜力,可以扩展微创激光治疗狭窄器官内微小病变的应用。传统系统需要单独的内窥镜成像和激光转向光路,这限制了它们在更窄器官内的应用。在此,我们提出了一种新型的内窥镜图像引导激光治疗系统,其尖端很细,可以进入狭窄的器官内部。该系统使用单根光纤束同时获取内窥镜图像和调制激光照射区域。在人工血管模型中演示了该系统在狭窄空间中的插入和操作。在设定的目标上进行重复的激光转向,证明了激光照射的准确性,均方根误差为 28 [Formula: see text]m,静态重复性使得激光照射位置可以控制在平均轨迹周围 12 [Formula: see text]m 的半径内。通过选择适当的激光输入直径,可以减少由于光纤束串扰而导致的远端照射平面意外照射。激光转向轨迹可以空间控制鸡肝组织的光热效应、蒸发和凝固。这种新型系统可以在狭窄的器官(如周围肺和冠状动脉)中实现微创内窥镜激光治疗,具有很高的病变选择性。