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基于人工智能的超精确三维(HA3D)模型在具有挑战性的机器人保留肾单位手术的手术规划中的应用:一例报告及当前技术水平概述与可能的未来影响

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.

作者信息

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

机构信息

Division of Urology, Department of Surgery, SS Annunziata Hospital, 87100 Cosenza, Italy.

Department of Oncology, Division of Urology, San Luigi Gonzaga Hospital, University of Turin, 10043 Orbassano, Italy.

出版信息

Diagnostics (Basel). 2023 Jul 10;13(14):2320. doi: 10.3390/diagnostics13142320.

Abstract

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.

摘要

近年来,三维模型(3DM)在泌尿外科领域受到广泛关注,尤其是在保留肾单位手术(NSI)中。目前,仅使用人工智能(AI)技术尚无法获得足以用于规划机器人辅助部分肾切除术(RAPN)的三维模型。将AI与计算机视觉算法相结合似乎很有前景,因为它可以加快这一过程。在此,我们展示了一种通过整合AI和计算机视觉方法(CVA)实现的三维模型,展示了基于AI的超高精度三维(HA3D)模型在具有挑战性的机器人NSI术前规划和术中决策过程中的实用性。一名54岁无既往病史的白种女性因偶然发现右肾肿物被转诊至泌尿外科医生处。术前腹部增强CT证实肾上极前表面有一个35×25mm的病变(帕多瓦评分为7分),无远处转移迹象。处理DICOM格式的CT图像以获得HA3D模型。使用达芬奇Xi手术系统以三臂配置进行RAPN。在选择性夹闭肿瘤供血动脉后实现了剜除策略。总手术时间为85分钟(热缺血时间14分钟)。未记录到术中、围手术期和术后并发症。组织病理学检查显示为ccRCC(pT1aNxMx期)。AI正在医学图像分析领域开辟新天地,在器官/组织分类和分割方面具有巨大潜力,从而能够自动且重复地获得三维模型。通过整合AI和CVA实现的我们的三维模型结果在NSI过程中得到了验证,证明了这种方法在HA3D模型重建方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a2b/10377834/a3b10707ff69/diagnostics-13-02320-g001.jpg

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