Emiliani E, Territo A, Calderón Cortez J F, Meneghetti I, Subiela J D, Basile G, Angerri O, Palou J J, Breda A
Departamento de Urología, Fundació Puigvert, Universidad Autónoma de Barcelona, Barcelona, Spain.
Departamento de Urología, Fundació Puigvert, Universidad Autónoma de Barcelona, Barcelona, Spain.
Actas Urol Esp (Engl Ed). 2023 Apr;47(3):159-164. doi: 10.1016/j.acuroe.2022.08.002. Epub 2022 Aug 5.
To measure the temperature dynamics at the renal surface and within the urinary tract when using Ho:YAG and Tm:YAG lasers for tissue ablation.
Porcine kidneys were used. Both types of lasers with different configurations and fiber sizes were used through a flexible ureteroscope. The temperature at the renal surface was recorded using a thermal camera while the intrarenal temperature was measured using two thermal probes, the first one at the ureteropelvic junction and the second one at the calyx used for lasering. Temperature was determined at 0.5-1-3-5 and 10 min.
Recordings at the ureteropelvic junction and calyx revealed significant increases when using Tm:YAG with the 273 μm (10 W to 50 W) (p ≤ 0.02) and 550 μm (10 W) fiber (p = 0.04). With Ho:YAG there was a significant increase when using 273 μm (at 10 W and 20 W) (p ≤ 0.03) and 365 μm (10 W) fibers (p = 0.04). Regarding fiber size there was a significant difference when using Tm:YAG (at 20 W and 40 W) (p < 0.05). The thermal camera recorded a mean increase of 8 °C in the UPJ while the remaining areas of the kidney did not undergo significant changes.
Temperature changes were greater when using the Ho:YAG laser with respect to Tm:YAG at similar power settings for tissue ablation. The greatest temperature increase was recorded at the UPJ from where the heat dissipated throughout the kidney.
在使用钬激光(Ho:YAG)和铥激光(Tm:YAG)进行组织消融时,测量肾表面及泌尿道内的温度动态变化。
使用猪肾。通过可弯曲输尿管镜使用具有不同配置和光纤尺寸的两种类型激光。使用热成像仪记录肾表面温度,同时使用两个热探头测量肾内温度,第一个探头置于肾盂输尿管连接处,第二个探头置于用于激光治疗的肾盏处。在0.5、1、3、5和10分钟时测定温度。
在肾盂输尿管连接处和肾盏处的记录显示,使用273μm(10W至50W)(p≤0.02)和550μm(10W)光纤的铥激光时温度显著升高(p = 0.04)。使用钬激光时,使用273μm(10W和20W)(p≤0.03)和365μm(