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Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications

Recently, 3D models (3DM) gained popularity in urology, especially in nephron-sparing interventions (NSI). Up to now, the application of artificial intelligence (AI) techniques alone does not allow us to obtain a 3DM adequate to plan a robot-assisted partial nephrectomy (RAPN). Integration of AI wit...

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Autores principales: Di Dio, Michele, Barbuto, Simona, Bisegna, Claudio, Bellin, Andrea, Boccia, Mario, Amparore, Daniele, Verri, Paolo, Busacca, Giovanni, Sica, Michele, De Cillis, Sabrina, Piramide, Federico, Zaccone, Vincenzo, Piana, Alberto, Alba, Stefano, Volpi, Gabriele, Fiori, Cristian, Porpiglia, Francesco, Checcucci, Enrico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377834/
https://www.ncbi.nlm.nih.gov/pubmed/37510065
http://dx.doi.org/10.3390/diagnostics13142320
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author Di Dio, Michele
Barbuto, Simona
Bisegna, Claudio
Bellin, Andrea
Boccia, Mario
Amparore, Daniele
Verri, Paolo
Busacca, Giovanni
Sica, Michele
De Cillis, Sabrina
Piramide, Federico
Zaccone, Vincenzo
Piana, Alberto
Alba, Stefano
Volpi, Gabriele
Fiori, Cristian
Porpiglia, Francesco
Checcucci, Enrico
author_facet Di Dio, Michele
Barbuto, Simona
Bisegna, Claudio
Bellin, Andrea
Boccia, Mario
Amparore, Daniele
Verri, Paolo
Busacca, Giovanni
Sica, Michele
De Cillis, Sabrina
Piramide, Federico
Zaccone, Vincenzo
Piana, Alberto
Alba, Stefano
Volpi, Gabriele
Fiori, Cristian
Porpiglia, Francesco
Checcucci, Enrico
author_sort Di Dio, Michele
collection PubMed
description Recently, 3D models (3DM) gained popularity in urology, especially in nephron-sparing interventions (NSI). Up to now, the application of artificial intelligence (AI) techniques alone does not allow us to obtain a 3DM adequate to plan a robot-assisted partial nephrectomy (RAPN). Integration of AI with computer vision algorithms seems promising as it allows to speed up the process. Herein, we present a 3DM realized with the integration of AI and a computer vision approach (CVA), displaying the utility of AI-based Hyper Accuracy Three-dimensional (HA3D(®)) models in preoperative planning and intraoperative decision-making process of challenging robotic NSI. A 54-year-old Caucasian female with no past medical history was referred to the urologist for incidental detection of the right renal mass. Preoperative contrast-enhanced abdominal CT confirmed a 35 × 25 mm lesion on the anterior surface of the upper pole (PADUA 7), with no signs of distant metastasis. CT images in DICOM format were processed to obtain a HA3D(®) model. RAPN was performed using Da Vinci Xi surgical system in a three-arm configuration. The enucleation strategy was achieved after selective clamping of the tumor-feeding artery. Overall operative time was 85 min (14 min of warm ischemia time). No intra-, peri- and post-operative complications were recorded. Histopathological examination revealed a ccRCC (stage pT1aNxMx). AI is breaking new ground in medical image analysis panorama, with enormous potential in organ/tissue classification and segmentation, thus obtaining 3DM automatically and repetitively. Realized with the integration of AI and CVA, the results of our 3DM were accurate as demonstrated during NSI, proving the potentialities of this approach for HA3D(®) models’ reconstruction.
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spelling pubmed-103778342023-07-29 Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications Di Dio, Michele Barbuto, Simona Bisegna, Claudio Bellin, Andrea Boccia, Mario Amparore, Daniele Verri, Paolo Busacca, Giovanni Sica, Michele De Cillis, Sabrina Piramide, Federico Zaccone, Vincenzo Piana, Alberto Alba, Stefano Volpi, Gabriele Fiori, Cristian Porpiglia, Francesco Checcucci, Enrico Diagnostics (Basel) Case Report Recently, 3D models (3DM) gained popularity in urology, especially in nephron-sparing interventions (NSI). Up to now, the application of artificial intelligence (AI) techniques alone does not allow us to obtain a 3DM adequate to plan a robot-assisted partial nephrectomy (RAPN). Integration of AI with computer vision algorithms seems promising as it allows to speed up the process. Herein, we present a 3DM realized with the integration of AI and a computer vision approach (CVA), displaying the utility of AI-based Hyper Accuracy Three-dimensional (HA3D(®)) models in preoperative planning and intraoperative decision-making process of challenging robotic NSI. A 54-year-old Caucasian female with no past medical history was referred to the urologist for incidental detection of the right renal mass. Preoperative contrast-enhanced abdominal CT confirmed a 35 × 25 mm lesion on the anterior surface of the upper pole (PADUA 7), with no signs of distant metastasis. CT images in DICOM format were processed to obtain a HA3D(®) model. RAPN was performed using Da Vinci Xi surgical system in a three-arm configuration. The enucleation strategy was achieved after selective clamping of the tumor-feeding artery. Overall operative time was 85 min (14 min of warm ischemia time). No intra-, peri- and post-operative complications were recorded. Histopathological examination revealed a ccRCC (stage pT1aNxMx). AI is breaking new ground in medical image analysis panorama, with enormous potential in organ/tissue classification and segmentation, thus obtaining 3DM automatically and repetitively. Realized with the integration of AI and CVA, the results of our 3DM were accurate as demonstrated during NSI, proving the potentialities of this approach for HA3D(®) models’ reconstruction. MDPI 2023-07-10 /pmc/articles/PMC10377834/ /pubmed/37510065 http://dx.doi.org/10.3390/diagnostics13142320 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Case Report
Di Dio, Michele
Barbuto, Simona
Bisegna, Claudio
Bellin, Andrea
Boccia, Mario
Amparore, Daniele
Verri, Paolo
Busacca, Giovanni
Sica, Michele
De Cillis, Sabrina
Piramide, Federico
Zaccone, Vincenzo
Piana, Alberto
Alba, Stefano
Volpi, Gabriele
Fiori, Cristian
Porpiglia, Francesco
Checcucci, Enrico
Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title_full Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title_fullStr Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title_full_unstemmed Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title_short Artificial Intelligence-Based Hyper Accuracy Three-Dimensional (HA3D(®)) Models in Surgical Planning of Challenging Robotic Nephron-Sparing Surgery: A Case Report and Snapshot of the State-of-the-Art with Possible Future Implications
title_sort artificial intelligence-based hyper accuracy three-dimensional (ha3d(®)) models in surgical planning of challenging robotic nephron-sparing surgery: a case report and snapshot of the state-of-the-art with possible future implications
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377834/
https://www.ncbi.nlm.nih.gov/pubmed/37510065
http://dx.doi.org/10.3390/diagnostics13142320
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