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准分子激光消融产生的烟羽的屏蔽效应。

Shielding effect of the smoke plume by the ablation of excimer lasers.

作者信息

Szekrényesi Csaba, Kiss Huba, Filkorn Tamás, Nagy Zoltán Zsolt

机构信息

Faculty of Health Sciences, Semmelweis University, Vas u. 17, Budapest, 1088, Hungary.

Department of Ophthalmology, Semmelweis University, Budapest, Hungary.

出版信息

BMC Ophthalmol. 2018 Oct 23;18(1):273. doi: 10.1186/s12886-018-0942-8.

Abstract

BACKGROUND

Shielding and scattering effect of the smoke plume column ejected from the laser ablated material is a well-known phenomenon. Debris evacuation system of the excimer laser equipment removes these particles, but insufficient air flow can result in undesired refractive outcomes of the treatment. The aim of this study was to reveal the effect of the air flow speed on the actual ablation depth.

METHODS

SCWIND AMARIS 500E flying spot excimer laser was tested in this study. A 150 μm phototherapeutic keratectomy (PTK) profile with 8 mm diameter was applied to the surface of polymethyl methacrylate (PMMA) plates. The velocity of the air flow was changed with adjustable air aspiration system. Ablation depth was measured with highly-precise contact micrometer.

RESULTS

The prediction model was statistically significant, F(1,8) = 552.85, p < 0.001, and accounted for approximately 98.7% of variance of ablation (R = 0.987, R = 0.986). Lower air flow speed resulted in a weaker ablation capability of the excimer laser.

CONCLUSION

Air flow generated by the aspiration equipment is a key factor for the predictable outcomes of refractive treatment. Therefore, manufacturer inbuilt debris removal system should be regularly checked and maintained to ensure proper clinical and predictable refractive results.

摘要

背景

激光烧蚀材料喷出的烟羽柱的屏蔽和散射效应是一个众所周知的现象。准分子激光设备的碎屑清除系统可去除这些颗粒,但气流不足可能导致治疗产生不理想的屈光结果。本研究的目的是揭示气流速度对实际消融深度的影响。

方法

本研究对SCWIND AMARIS 500E飞点准分子激光进行了测试。在聚甲基丙烯酸甲酯(PMMA)板表面应用直径为8 mm、150μm的光治疗性角膜切除术(PTK)轮廓。通过可调节的空气抽吸系统改变气流速度。用高精度接触式千分尺测量消融深度。

结果

预测模型具有统计学意义,F(1,8) = 552.85,p < 0.001,约占消融方差的98.7%(R = 0.987,R = 0.986)。较低的气流速度导致准分子激光的消融能力较弱。

结论

抽吸设备产生的气流是屈光治疗可预测结果的关键因素。因此,应定期检查和维护制造商内置的碎屑清除系统,以确保获得良好的临床和可预测的屈光结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fefd/6199794/a332f3ea1b5e/12886_2018_942_Fig1_HTML.jpg

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