19 results on '"Panthier, Frédéric"'
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2. Artificial intelligence versus human touch: can artificial intelligence accurately generate a literature review on laser technologies?
3. Optimal deflection techniques for flexible and navigable suction ureteral access sheaths (FANS): a comparative in vitro PEARLS analysis
4. Illumination matters Part II: advanced comparative analysis of flexible ureteroscopes in a kidney model by PEARLS
5. Illumination matters part IV: blackout and whiteout in flexible ureteroscopy - first report on a phenomenon observed by PEARLS
6. Illumination matters Part III: Impact of light obstruction on illuminance from flexible ureteroscopes — a comparative PEARLS analysis
7. From laser-on time to lithotripsy duration: how neural networks can refine “KIDNEY STONE CALCULATOR” predictions for ureteroscopic lithotripsy duration: preliminary results
8. Planning my ureteroscopic laser lithotripsy: how much energy and time should I reasonably expect? Integrating the concept of laser energy consumption (J/mm3)
9. How much energy do we need to ablate 1 cubic millimeter of stone during Thulium Fiber Laser lithotripsy? An in vitro study
10. Thulium:YAG laser: a good compromise between holmium:YAG and thulium fiber laser for endoscopic lithotripsy? A narrative review
11. Pulsed Thulium:YAG laser – What is the lithotripsy ablation efficiency for stone dust from human urinary stones? Results from an in vitro PEARLS study
12. Pulsed thulium:YAG laser—ready to dust all urinary stone composition types? Results from a PEARLS analysis
13. Initial clinical experience with the pulsed solid-state thulium YAG laser from Dornier during RIRS: first 25 cases
14. Reply letter to: False discovery rate in laser studies
15. Evaluation of a free 3D software for kidney stones’ surgical planning: “kidney stone calculator” a pilot study
16. Comparison of the ablation rates, fissures and fragments produced with 150 µm and 272 µm laser fibers with superpulsed thulium fiber laser: an in vitro study
17. How do we assess the efficacy of Ho:YAG low-power laser lithotripsy for the treatment of upper tract urinary stones? Introducing the Joules/mm3 and laser activity concepts
18. How much energy do we need to ablate 1 mm3 of stone during Ho:YAG laser lithotripsy? An in vitro study
19. En bloc greenlight laser enucleation of prostate (GreenLEP): about the first hundred cases
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