Sighinolfi Maria Chiara, Cimadamore Alessia, Cassani Alessandra, Assumma Simone, Sarchi Luca, Filippi Beatrice, Turri Filippo, Reggiani Bonetti Luca, Maiorana Antonino, Eissa Ahmed, Micali Salvatore, Montironi Rodolfo, Rocco Bernardo
ASST Santi Paolo e Carlo, Università di Milano, Milano, Italy.
Department of Urology, Ospedale Policlinico e Nuovo Ospedale Civile S.Agostino Estense Modena, University of Modena and Reggio Emilia, Modena, Italy.
Urologia. 2023 Feb;90(1):146-150. doi: 10.1177/03915603221122731. Epub 2022 Sep 14.
Ex-vivo FCM is a novel digital optical technique that provides images of fresh tissues in a real-time fashion with magnification to subcellular details of a flattened unprocessed sample. Digital images are hematoxylin-eosin-like and can be shared and interpreted remotely. In urology, FCM has been successfully applied for prostate tissue interpretation, either during biopsy and radical prostatectomy. Possible applications of FCM may reflect those of frozen section analysis and can be extended to all fields in which the intra-operative microscopical control is advisable.
This is an investigative prospective case series that aims to explore FCM feasibility in novel surgical settings and provide a depiction of FCM digital images in those fields. The definite purpose is to check the accuracy of surgical specimen during the following interventions: (a) trans-urethral resection of bladder tumors, to confirm the presence of muscular layer; (b) biopsy of a retroperitoneal mass, to check for the location and quality of cores; (c) training in robotic radical prostatectomy, to control surgical margins after a nerve sparing performed by a trainee. To this aim, we collected FCM images during seven surgical procedures. FCM findings were compared to those from the final histopathological analysis and the agreement was assessed.
In all cases, FCM digital images were obtained in the OR. FCM was able to confirm the presence of muscular layer in TURB specimen, the presence of lymphomatous tissue, surgical margins at prostate specimen. FCM intra-operative interpretation was consistent with final histopathology in all cases.
Ex vivo FCM may represent a novel approach to control the quality of specimens, likely to tailor surgical strategy in a real-time fashion. Moreover, digitalization represents a step toward the implementation of telepathology in clinical practice.
体外荧光共聚焦显微镜(FCM)是一种新型数字光学技术,能够实时提供新鲜组织的图像,并可放大至未处理扁平样本的亚细胞细节。数字图像类似苏木精-伊红染色图像,可远程共享和解读。在泌尿外科领域,FCM已成功应用于前列腺组织解读,包括活检和根治性前列腺切除术过程中。FCM的潜在应用可能与冰冻切片分析类似,并可扩展至所有建议进行术中显微镜检查的领域。
这是一项前瞻性研究病例系列,旨在探索FCM在新型手术场景中的可行性,并描绘该技术在这些领域的数字图像。明确目的是在以下干预措施中检查手术标本的准确性:(a)经尿道膀胱肿瘤切除术,以确认肌层的存在;(b)腹膜后肿块活检,以检查取材部位和质量;(c)机器人根治性前列腺切除术培训,以检查实习医生进行保留神经手术后的手术切缘。为此,我们在七台手术过程中收集了FCM图像。将FCM结果与最终组织病理学分析结果进行比较,并评估一致性。
在所有病例中,均在手术室获得了FCM数字图像。FCM能够确认经尿道膀胱肿瘤切除术标本中肌层的存在、前列腺标本中淋巴瘤组织的存在以及手术切缘情况。所有病例中FCM术中解读与最终组织病理学结果一致。
体外FCM可能代表一种控制标本质量的新方法,有望实时调整手术策略。此外,数字化是在临床实践中实施远程病理学的重要一步。