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Publications

Year Publication Reference
2023

Initial clinical experience with the pulsed solid-state thulium YAG laser from Dornier during RIRS: first 25 cases

Panthier, F., Solano, C., Chicaud, M. et al. (2023) Initial clinical experience with the pulsed solid-state thulium YAG laser from Dornier during RIRS: first 25 cases. World J Urol 41, 2119–2125. https://doi.org/10.1007/s00345-023-04501-0
2023

Pulsed thulium:YAG laser-ready to dust all urinary stone composition types? Results from a PEARLS analysis

Kwok, JL., Ventimiglia, E., De Coninck, V. et al. (2023) Pulsed thulium:YAG laser—ready to dust all urinary stone composition types? Results from a PEARLS analysis. World J Urol. https://doi.org/10.1007/s00345-023-04549-y
2023

What to expect from the novel pulsed thulium:YAG laser? A systematic review of endourological applications.

Ventimiglia, E., Robesti, D., Bevilacqua, L. et al. (2023) What to expect from the novel pulsed thulium:YAG laser? A systematic review of endourological applications. World J Urol. https://doi.org/10.1007/s00345-023-04580-z
2022

In Vitro Dusting Performance of a New Solid State Thulium Laser Compared to Holmium Laser Lithotripsy

Petzold, R. et al. (2021). In Vitro Dusting Performance of a New Solid State Thulium Laser Compared to Holmium Laser Lithotripsy. J Endourol. 35(2):221-225. https://doi.org/10.1089/end.2020.0525
2022

Gas Bubble Anatomy During Laser Lithotripsy: An Experimental In Vitro Study of a Pulsed Solid-State Tm:YAG and Ho:YAG Device

Petzold, R. et al. (2021). Gas Bubble Anatomy During Laser Lithotripsy: An Experimental In Vitro Study of a Pulsed Solid-State Tm:YAG and Ho:YAG Device. J Endourol, 35(7):1051-1057. https://doi.org/10.1089/end.2020.0526
2022

Retropulsion force in laser lithotripsy—an in vitro study comparing a Holmium device to a novel pulsed solid-state Thulium laser

Petzold, R. et al. (2021). Retropulsion force in laser lithotripsy—an in vitro study comparing a Holmium device to a novel pulsed solid-state Thulium laser. World J Urol, 39(9):3651–3656. https://doi.org/10.1007/s00345-021-03668-8
2022

Experimental ex-vivo performance study comparing a novel, pulsed thulium solid-state laser, chopped thulium fibre laser, low and high-power holmium:YAG laser for endoscopic enucleation of the prostate

Yilmaz, M. et al. (2022). Experimental ex-vivo performance study comparing a novel, pulsed thulium solid-state laser, chopped thulium fibre laser, low and high-power holmium:YAG laser for endoscopic enucleation of the prostate. World J Urol, 40(2):601-606. https://doi.org/10.1007/s00345-021-03825-z
2022

In vitro fragmentation performance of a novel, pulsed Thulium solid-state laser compared to a Thulium fibre laser and standard Ho:YAG

Kraft, L. et al. (2022). In vitro fragmentation performance of a novel, pulsed Thulium solid-state laser compared to a Thulium fibre laser and standard Ho:YAG. Lasers Med Sci, 37(3):2071-2078. https://doi.org/10.1007/s10103-021-03495-8

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The Art of ESWL

In 1980, Dr. Christian Chaussy introduced ESWL as a non-invasive treatment modality for renal stones. This technology has rapidly evolved into the cornerstone of modern stone management, where it remains today.


The Art of ESWL book by Dr. Tailly and Dr. Parmar offers guidance on improving the general practice of ESWL for better treatment outcomes and reducing the incidence and severity of adverse effects and complications.

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