Sorbonne University GRC Urolithiasis No. 20 Tenon Hospital, 75020, Paris, France.
Department of Urology AP-HP, Tenon Hospital, Sorbonne University, 75020, Paris, France.
World J Urol. 2022 Sep;40(9):2313-2321. doi: 10.1007/s00345-022-04090-4. Epub 2022 Aug 7.
Since the construction of the first laser, many companies around the world have contributed to the development of new lasers technologies. To be user-friendly, some companies have developed a pre-setting mode in their laser devices. We aimed to review and compare all laser companies' pre-settings (PS) already established in the market.
An online search of holmium:YAG (Ho:YAG) and thulium fiber laser (TFL) devices was carried out. Manual and PS mode, pulse width and pulse modulation technology data were collected. The PS parameters were collected directly from the brochure devices or by asking the companies consulting agents.
Thirty-nine laser devices were analyzed (33 Ho:YAG and 6 TFL). The power range varies from 15 to 152 W and 35 W to 60 W for Ho:YAG and TFL, respectively. PS are present in 66% of Ho:YAG lasers and the 33% of TFL. Long-pulse modes can be modified in 12 Ho:YAG and 1 TFL lasers. The median (IQR) PS for dusting stones with Ho:YAG laser is 0.4 J (0.2-1), 21.5 Hz (5-120), and 10 W (1.5-28) for energy, frequency and power, respectively; for Ho:YAG fragmentation is 0.8 J (0.3-5), 10 (3-15) Hz and 5 (1.5-50) W for energy, frequency, and power, respectively; and for popcorn is 0.8 J (0.4-1.2), 10 Hz (6-15) and 5 W (4-18) for energy, frequency, and power, respectively. Dusting and fragmentation mode of Rocamed MH01 and EMS LaserClast 35 are programmed according to the stone type. Most of these settings do not depend on the size of the fiber being used nor the location and type of stone. For TFL, the pre-sets are divided in bladder stone, dusting, fine dusting, fragmentation, and ureteral stone.
There is a huge variability regarding pre-sets offered by companies because there is no consensus. Pre-sets should provide a range to work efficacy and safety.
自第一台激光器问世以来,全球许多公司都为新型激光技术的发展做出了贡献。为了方便用户使用,一些公司在其激光设备中开发了预设模式。我们旨在回顾和比较市场上所有激光公司已经建立的预设模式(PS)。
对钬:YAG(Ho:YAG)和铥光纤激光(TFL)设备进行了在线搜索。收集了手动和 PS 模式、脉冲宽度和脉冲调制技术数据。PS 参数直接从设备手册或向公司咨询代理收集。
分析了 39 台激光设备(33 台 Ho:YAG 和 6 台 TFL)。功率范围分别为 Ho:YAG 的 15 至 152W 和 TFL 的 35 至 60W。66%的 Ho:YAG 激光器和 33%的 TFL 激光器都具有 PS。12 台 Ho:YAG 激光器和 1 台 TFL 激光器可以修改长脉冲模式。Ho:YAG 激光碎石的 PS 中位数(IQR)为 0.4J(0.2-1)、21.5Hz(5-120)和 10W(1.5-28),分别为能量、频率和功率;Ho:YAG 碎石的 PS 中位数(IQR)为 0.8J(0.3-5)、10Hz(3-15)和 5W(1.5-50),分别为能量、频率和功率;Ho:YAG 爆米花碎石的 PS 中位数(IQR)为 0.8J(0.4-1.2)、10Hz(6-15)和 5W(4-18),分别为能量、频率和功率。Rocamed MH01 和 EMS LaserClast 35 的碎石和粉尘模式是根据结石类型编程的。这些设置中的大多数都不依赖于所使用光纤的大小,也不依赖于结石的位置和类型。对于 TFL,预设分为膀胱结石、碎石、精细碎石、碎石和输尿管结石。
由于没有共识,各公司提供的预设模式存在很大差异。预设模式应提供一个工作效果和安全性的范围。