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Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)

INTRODUCTION: Urolift® is a surgical modality to treat lower urinary tract symptoms (LUTS) in patients with enlarged prostates (1). However, the inflammatory process caused by the device usually displaces the prostate’s anatomical landmarks and challenges surgeons performing robotic-assisted radical...

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Autores principales: Moschovas, Marcio Covas, Loy, David Grant, Jaber, Abdel, Saikali, Shady, Rogers, Travis, Kind, Sarah, Patel, Vipul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Urologia 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335883/
https://www.ncbi.nlm.nih.gov/pubmed/36794847
http://dx.doi.org/10.1590/S1677-5538.IBJU.2023.9905
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author Moschovas, Marcio Covas
Loy, David Grant
Jaber, Abdel
Saikali, Shady
Rogers, Travis
Kind, Sarah
Patel, Vipul
author_facet Moschovas, Marcio Covas
Loy, David Grant
Jaber, Abdel
Saikali, Shady
Rogers, Travis
Kind, Sarah
Patel, Vipul
author_sort Moschovas, Marcio Covas
collection PubMed
description INTRODUCTION: Urolift® is a surgical modality to treat lower urinary tract symptoms (LUTS) in patients with enlarged prostates (1). However, the inflammatory process caused by the device usually displaces the prostate’s anatomical landmarks and challenges surgeons performing robotic-assisted radical prostatectomy (RARP). In this video, we will illustrate several technical challenges in patients with Urolift ® who underwent RARP. MATERIAL AND METHODS: We performed a video compilation with several surgical steps illustrating key aspects and critical details of the anterior bladder neck access, lateral bladder dissection from the prostate, and posterior prostate dissection to avoid ureteral and neural bundles injuries. RESULTS: We perform our RARP technique with our standard approach in all patients (2 -6). The beginning of the case is performed like every patient with an enlarged prostate. We first identify the anterior bladder neck and then complete its dissection with Maryland and Scissors. However, extra care must be taken in the anterior and posterior bladder neck approach due to the clips found during the dissection. The challenge starts when opening the lateral sides of the bladder until the base of the prostate. It is crucial to perform the bladder neck dissection beginning at the internal plane of the bladder wall. Such dissection is the easiest way to recognize the anatomical landmarks and potential foreign materials, such as clips, placed during previous surgeries. We cautiously work around the clip to avoid using cautery on the top of the metal clips because energy is transmitted from one edge to the other of the Urolift ®. This can be dangerous if the edge of the clip is close to the ureteral orifices. The clips are usually removed to minimize cautery conduction energy. Finally, after isolating and removing the clips, the prostate dissection and subsequent surgical steps are continued with our conventional technique. Before proceeding, we ensure that all clips are removed from the bladder neck to avoid complications during the anastomosis. CONCLUSIONS: Robotic-assisted radical prostatectomy in patients with Urolift ® is challenging due to modified anatomical landmarks and intense inflammatory processes in the posterior bladder neck. When dissecting the clips placed next to the base of the prostate, it is crucial to avoid cautery because energy conduction to the other edge of the Urolift ® can cause thermal damage to the ureters and neural bundles.
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spelling pubmed-103358832023-07-13 Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®) Moschovas, Marcio Covas Loy, David Grant Jaber, Abdel Saikali, Shady Rogers, Travis Kind, Sarah Patel, Vipul Int Braz J Urol Video Section INTRODUCTION: Urolift® is a surgical modality to treat lower urinary tract symptoms (LUTS) in patients with enlarged prostates (1). However, the inflammatory process caused by the device usually displaces the prostate’s anatomical landmarks and challenges surgeons performing robotic-assisted radical prostatectomy (RARP). In this video, we will illustrate several technical challenges in patients with Urolift ® who underwent RARP. MATERIAL AND METHODS: We performed a video compilation with several surgical steps illustrating key aspects and critical details of the anterior bladder neck access, lateral bladder dissection from the prostate, and posterior prostate dissection to avoid ureteral and neural bundles injuries. RESULTS: We perform our RARP technique with our standard approach in all patients (2 -6). The beginning of the case is performed like every patient with an enlarged prostate. We first identify the anterior bladder neck and then complete its dissection with Maryland and Scissors. However, extra care must be taken in the anterior and posterior bladder neck approach due to the clips found during the dissection. The challenge starts when opening the lateral sides of the bladder until the base of the prostate. It is crucial to perform the bladder neck dissection beginning at the internal plane of the bladder wall. Such dissection is the easiest way to recognize the anatomical landmarks and potential foreign materials, such as clips, placed during previous surgeries. We cautiously work around the clip to avoid using cautery on the top of the metal clips because energy is transmitted from one edge to the other of the Urolift ®. This can be dangerous if the edge of the clip is close to the ureteral orifices. The clips are usually removed to minimize cautery conduction energy. Finally, after isolating and removing the clips, the prostate dissection and subsequent surgical steps are continued with our conventional technique. Before proceeding, we ensure that all clips are removed from the bladder neck to avoid complications during the anastomosis. CONCLUSIONS: Robotic-assisted radical prostatectomy in patients with Urolift ® is challenging due to modified anatomical landmarks and intense inflammatory processes in the posterior bladder neck. When dissecting the clips placed next to the base of the prostate, it is crucial to avoid cautery because energy conduction to the other edge of the Urolift ® can cause thermal damage to the ureters and neural bundles. Sociedade Brasileira de Urologia 2023-02-15 /pmc/articles/PMC10335883/ /pubmed/36794847 http://dx.doi.org/10.1590/S1677-5538.IBJU.2023.9905 Text en https://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Video Section
Moschovas, Marcio Covas
Loy, David Grant
Jaber, Abdel
Saikali, Shady
Rogers, Travis
Kind, Sarah
Patel, Vipul
Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title_full Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title_fullStr Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title_full_unstemmed Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title_short Technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with Urolift(®)
title_sort technical and anatomical challenges to approach robotic-assisted radical prostatectomy in patients with urolift(®)
topic Video Section
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10335883/
https://www.ncbi.nlm.nih.gov/pubmed/36794847
http://dx.doi.org/10.1590/S1677-5538.IBJU.2023.9905
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