Department of Ophthalmology, Christian-Albrechts-University of Kiel, Kiel, Germany.
Medical Laser Center Lübeck, Lübeck, Germany.
Transl Vis Sci Technol. 2024 Apr 2;13(4):26. doi: 10.1167/tvst.13.4.26.
Subdamaging thermal retinal laser therapy has the potential to induce regenerative stimuli in retinal diseases, but validated dosimetry is missing. Real-time optoacoustic temperature determination and control could close this gap. This study investigates a first in vivo application.
Two iterations of a control module that were optically coupled in between a continuous-wave commercial laser source and a commercial slit lamp were evaluated on chinchilla rabbits. The module allows extraction of the temperature rise in real time and can control the power of the therapy laser such that a predefined temperature rise at the retina is quickly achieved and held constant. Irradiations with aim temperatures from 45°C to 69°C were performed on a diameter of 200 µm and a heating time of 100 ms.
We analyzed 424 temperature-guided irradiations in nine eyes of five rabbits. The mean difference between the measured and aim temperature was -0.04°C ± 0.98°C. The following ED50 values for visibility thresholds could be determined: 58.6°C for funduscopic visibility, 57.7°C for fluorescein angiography, and 57.0°C for OCT. In all measurements, the correlation of tissue effect was higher to the temperature than to the average heating laser power used.
The system was able to reliably perform temperature-guided irradiations, which allowed for better tissue effect control than simple power control. This approach could enhance the accuracy, safety, and reproducibility of thermal stimulating laser therapy.
This study is a bridge between preclinical ex vivo experiments and a pilot clinical study.
亚破坏性的视网膜激光热疗有可能在视网膜疾病中引发再生刺激,但目前还缺乏经过验证的剂量学方法。实时光声温度测定和控制可以弥补这一空白。本研究探讨了首次体内应用。
在商用连续波激光源和商用裂隙灯之间,对两个迭代的控制模块进行了评估。该模块允许实时提取温升,并可以控制治疗激光的功率,从而快速实现并保持视网膜预设的温升。以 45°C 至 69°C 的目标温度,对直径为 200 µm 的区域进行了 100 ms 的照射。
我们分析了五只兔子九只眼的 424 次温度引导照射。测量温度与目标温度的平均差值为-0.04°C ± 0.98°C。可以确定以下可见阈值的 ED50 值:眼底镜可见度为 58.6°C,荧光素血管造影为 57.7°C,OCT 为 57.0°C。在所有测量中,组织效应的相关性与使用的平均加热激光功率相比,与温度的相关性更高。
该系统能够可靠地进行温度引导照射,与简单的功率控制相比,能够更好地控制组织效应。这种方法可以提高热刺激激光治疗的准确性、安全性和可重复性。
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