Grippo Tomas M, Sanchez Facundo G, Stauffer Joan, Marcellino George
Department of Glaucoma, Grippo Glaucoma & Cataract Center, Buenos Aires, Argentina.
Department of Ophthalmology, Hospital Alemán, Buenos Aires, Argentina.
Clin Ophthalmol. 2021 Jun 9;15:2411-2419. doi: 10.2147/OPTH.S313875. eCollection 2021.
Since the first peer-reviewed publication on MicroPulse Transscleral Laser Therapy (MP-TLT) in 2010, authors worldwide have used a wide range of treatment parameter combinations with varying clinical efficacy in terms of the magnitude of intraocular pressure reduction, success rate, durability, and safety profile. This has made it difficult to determine the proper parameters necessary to optimize efficacy and safety, and has made comparison of results from one investigation to another difficult. The first goal of this paper is to explain and highlight the impact of the choices of exposure time and the number of sweeps per hemisphere in terms of "sweep velocity" on energy delivery to the eye. These treatment parameters are underreported in the literature. The second goal is to introduce fluence as a "dose" metric, that combines all the treatment parameters and constants into a single number. Fluence may be a better light-dose metric and a more reliable indicator of clinical outcomes compared to total energy.
自2010年关于微脉冲经巩膜激光治疗(MP-TLT)的第一篇经同行评审的论文发表以来,世界各地的作者使用了广泛的治疗参数组合,在降低眼压的幅度、成功率、持久性和安全性方面具有不同的临床疗效。这使得确定优化疗效和安全性所需的适当参数变得困难,也使得一项研究与另一项研究的结果比较变得困难。本文的第一个目标是解释并强调暴露时间的选择以及每半球扫描次数(以“扫描速度”表示)对眼睛能量传递的影响。这些治疗参数在文献中报道较少。第二个目标是引入能量密度作为一种“剂量”指标,它将所有治疗参数和常数组合成一个单一数字。与总能量相比,能量密度可能是更好的光剂量指标,也是更可靠的临床结果指标。