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Intrarenal Fluid Temperature During Laser Lithotripsy: A Mini Review by the European Association of Urology
Felipe Pauchard1, Mariela Corrales2, Davide Perri3
1Progressive Endourological Association for Research and Leading Solutions, Paris, France; European Association of Urology Endourology Section, Arnhem, The Netherlands; Urology Department, Hospital Naval Almirante Nef, Viña del Mar, Chile.
Abstract:
Laser lithotripsy involves thermal risks due to heat generated in the surrounding fluid. The concept of thermal dose, which accounts for both temperature and exposure duration, provides a more nuanced understanding of tissue tolerance than fixed temperature thresholds, considering both the magnitude of the temperature increase and the length of exposure to each specific temperature. The concept of a thermal safety distance defines the spatial extent of potential damage, supporting safe power limits of 10 W in the ureter and 20 W in the kidney. Importantly, the type of laser (holmium:YAG, thulium fiber, or thulium:YAG) does not independently affect the rise in temperature, which is primarily driven by the amount of energy absorbed by water in the surrounding tissue. Temperature-related tissue injury can be mitigated by optimizing the flow of the irrigation fluid and the laser power settings and activation patterns. PATIENT SUMMARY: Laser treatment for stones in the kidney or ureter generates heat, which can harm adjacent tissues. The use of low-power settings and proper fluid flow helps in reducing this risk.
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