Center for Rehabilitation Medicine, Department of Ophthalmology, Zhejiang Provincial People's Hospital (Affiliated People' Hospital), Hangzhou Medical College, Hangzhou, Zhejiang, China.
He Eye Specialist Hospital, Shenyang, Liaoning, China.
Lasers Med Sci. 2024 Apr 1;39(1):97. doi: 10.1007/s10103-024-04041-y.
To study the effect range of the Nd:YAG laser through various levels of cloudy medium for targets with varying grayscale values in vitro. The coated paper cards with grayscale values of 0, 50, 100, and 150 were used as the laser's targets, which were struck straightly with varying energies using three burst modes (single pulse, double pulse, and triple pulse). Six filters (transmittances of 40, 50, 60, 70, 80, and 90) were applied to simulate various levels of cloudy refractive medium. Image J software was used to measure the diameters and regions of the laser spots. The ranges of the Nd:YAG laser spots increased with energy in the same burst mode (P < 0.05). Under the same amount of energy, the ranges of the Nd:YAG laser spot increased with the grayscale value of the targets (P < 0.05). The greater the transmittance of the filters employed, the larger the range of the Nd: YAG laser spots produced. Assuming that the total pulse energy is identical, the effect ranges of multi-pulse burst modes were significantly larger than those of single-pulse burst mode (P < 0.05). The effect range of a Nd:YAG laser grows with increasing energy and the target's grayscale value. A cloudy refractive medium has a negative impact on the effect range of the Nd: YAG laser. The single pulse mode has the narrowest and safest efficiency range.
研究不同灰度值目标在体外不同混浊程度介质中 Nd:YAG 激光的作用范围。使用灰度值为 0、50、100 和 150 的涂层卡纸作为激光的靶标,采用三种爆发模式(单脉冲、双脉冲和三脉冲)用不同能量直接冲击。使用六种滤光片(透过率分别为 40、50、60、70、80 和 90)模拟不同程度的混浊折射介质。使用 Image J 软件测量激光点的直径和区域。在相同的爆发模式下,Nd:YAG 激光点的范围随能量的增加而增加(P<0.05)。在相同能量下,Nd:YAG 激光点的范围随目标灰度值的增加而增加(P<0.05)。使用的滤光片的透过率越高,产生的 Nd:YAG 激光点的范围越大。假设总脉冲能量相同,多脉冲爆发模式的效果范围明显大于单脉冲爆发模式(P<0.05)。Nd:YAG 激光的作用范围随能量和目标灰度值的增加而增大。混浊折射介质对 Nd:YAG 激光的作用范围有负面影响。单脉冲模式的效率范围最窄且最安全。