1.An in vitro experimental study on intrarenal pelvic pressure and intrarenal temperature during F6.3 disposable electronic ureteroscopic lithotripsy
Daxun LUO ; Yuxian WANG ; Haiwen HUANG ; Bo XIAO ; Jianxing LI
Journal of Modern Urology 2026;31(3):272-276
Objective To explore the changes in intrarenal pelvic pressure and intrarenal temperature during F6.3 disposable electronic ureteroscopic lithotripsy through in vitro experiments. Methods Microchannels were established in the upper, middle, and lower calyces of ex vivo porcine kidneys. Spherical calcium oxalate stones(size:0.5 cm×0.5 cm×0.5 cm, 1-2 per target calyx)were placed via the microchannels. Temperature and pressure sensors were connected through sheaths and placed in each calyx. F6.3 disposable electronic ureteroscope combined with super-pulsed thulium fiber laser(pulse energy:0.1 J, frequency:300 Hz, power:30 W)was used for laser lithotripsy. During the procedure, normal saline(25±1)℃ was used for irrigation at a gradient of 10-150 mL/min(increasing by 10 mL/min). The temperature and pressure in the upper, middle, and lower calyces were observed and recorded at different irrigation flow rates, with each experiment repeated five times, and the average value was calculated. The intrarenal temperature and pressure changes within and between the three groups were compared. Results In the ex vivo porcine kidney model, intrarenal pelvic pressure increased linearly with the increase in irrigation flow rate. When the flow rate reached 90 mL/min, the average intrarenal pelvic pressure was(28.8±1.16)mmHg. When the flow rate was increased to 100 mL/min, the pressure exceeded the safety threshold, reaching(31.23±1.12)mmHg. With the increase in irrigation flow rate, intrarenal temperature gradually decreased. When the flow rate reached 20 mL/min, the maximum intrarenal temperature was 45.1 ℃. When the flow rate was increased to 30 mL/min, the maximum intrarenal temperature was 40.9 ℃, which did not exceed the safety threshold(43 ℃). Conclusion The in vitro experiments demonstrated that during F6.3 disposable electronic ureteroscopic lithotripsy, maintaining an irrigation flow rate of 30-90 mL/min kept the intrarenal pelvic pressure and intrarenal temperature within the safety thresholds, indicating that the procedure is safe and reliable.

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