Averbukh Edward, Slushetz Yaakov, Levy Jaime, Patal Rani, Mandelbaum Yaakov, Arieli Yoel
Faculty of Medicine, Department of Ophthalmology, Hadassah University Medical Center, Hebrew University, Jerusalem, Israel.
Department of Electro-Optics, Jerusalem College of Technology, Jerusalem, Israel.
Ophthalmol Sci. 2024 Mar 16;4(5):100512. doi: 10.1016/j.xops.2024.100512. eCollection 2024 Sep-Oct.
To evaluate the divergence between the neodymium-doped yttrium aluminum garnet (Nd:YAG) surgical laser and the aiming diode laser beams foci.
Optical analysis and measurements were performed using a Volk Goldmann 3-mirror lens with a Nidek YC-1800 Nd:YAG laser apparatus.
None.
We used the Zemax OpticStudio program for the model of Nd:YAG treatment in a human eye. Additionally, theoretical calculations were performed.
The divergence between the Nd:YAG laser focus and the intersection of the 2 aiming beams inside the eye.
Focal points of the 2 laser beams converge 8 mm behind the cornea. Posterior to this point, the intersection of the diode laser aiming beams lies in front of the focal point of the Nd:YAG treatment laser, with distance between the 2 foci progressively increasing up to 305 microns at 24 mm behind the cornea.
We report the degree of divergence between the 2 lasers' focal points due to the difference in refraction between the corresponding wavelengths. These results have high practical relevance, as they provide a starting point for increasing the accuracy of Nd:YAG laser treatment, particularly when applied to the posterior segment, thereby minimizing the risk of complications. Current Nd:YAG laser devices have the built-in ability to modify the focal point of the aiming beam along the -axis, thus providing possibility for an immediate application of our findings in clinical practice.
The authors have no proprietary or commercial interest in any materials discussed in this article.
评估掺钕钇铝石榴石(Nd:YAG)手术激光与瞄准二极管激光束焦点之间的发散度。
使用带尼德克YC - 1800 Nd:YAG激光设备的 Volk Goldmann三镜透镜进行光学分析和测量。
无。
我们使用Zemax OpticStudio程序建立人眼Nd:YAG治疗模型。此外,还进行了理论计算。
Nd:YAG激光焦点与眼内两瞄准光束交点之间的发散度。
两激光束的焦点在角膜后8毫米处汇聚。在此点之后,二极管激光瞄准光束的交点位于Nd:YAG治疗激光焦点的前方,在角膜后24毫米处两焦点之间的距离逐渐增加至305微米。
我们报告了由于相应波长之间折射差异导致的两激光焦点之间的发散程度。这些结果具有很高的实际意义,因为它们为提高Nd:YAG激光治疗的准确性提供了一个起点,特别是应用于眼后段时,从而将并发症风险降至最低。当前的Nd:YAG激光设备具有沿z轴改变瞄准光束焦点的内置能力,因此有可能将我们的研究结果立即应用于临床实践。
作者对本文讨论的任何材料均无专利或商业利益。