Mahmoud Amr, Bennett Michael
From the Pathology Department, School of Medicine, University College Cork (Dr Mahmoud), and the Pathology Department, National Cancer Screening Service, Cork University Hospital (Dr Bennett), Cork, Ireland.
Arch Pathol Lab Med. 2015 Aug;139(8):1048-51. doi: 10.5858/arpa.2014-0408-OA.
Three-dimensional (3D) printing, a rapidly advancing technology, is widely applied in fields such as mechanical engineering and architecture. Three-dimensional printing has been introduced recently into medical practice in areas such as reconstructive surgery, as well as in clinical research. Three-dimensionally printed models of anatomic and autopsy pathology specimens can be used for demonstrating pathology entities to undergraduate medical, dental, and biomedical students, as well as for postgraduate training in examination of gross specimens for anatomic pathology residents and pathology assistants, aiding clinicopathological correlation at multidisciplinary team meetings, and guiding reconstructive surgical procedures.
To apply 3D printing in anatomic pathology for teaching, training, and clinical correlation purposes.
Multicolored 3D printing of human anatomic pathology specimens was achieved using a ZCorp 510 3D printer (3D Systems, Rock Hill, South Carolina) following creation of a 3D model using Autodesk 123D Catch software (Autodesk, Inc, San Francisco, California).
Three-dimensionally printed models of anatomic pathology specimens created included pancreatoduodenectomy (Whipple operation) and radical nephrectomy specimens. The models accurately depicted the topographic anatomy of selected specimens and illustrated the anatomic relation of excised lesions to adjacent normal tissues.
Three-dimensional printing of human anatomic pathology specimens is achievable. Advances in 3D printing technology may further improve the quality of 3D printable anatomic pathology specimens.
三维(3D)打印作为一项快速发展的技术,在机械工程和建筑等领域得到了广泛应用。最近,三维打印已被引入到整形手术等医学实践以及临床研究中。三维打印的解剖和尸检病理标本模型可用于向本科医学、牙科和生物医学专业学生展示病理实体,也可用于解剖病理学住院医师和病理助理对大体标本检查的研究生培训,在多学科团队会议上辅助临床病理关联,并指导整形手术操作。
将3D打印应用于解剖病理学的教学、培训及临床关联。
使用Autodesk 123D Catch软件(Autodesk公司,加利福尼亚州旧金山)创建3D模型后,采用ZCorp 510 3D打印机(3D Systems公司,南卡罗来纳州罗克希尔)对人体解剖病理标本进行彩色3D打印。
创建的解剖病理标本三维打印模型包括胰十二指肠切除术(惠普尔手术)和根治性肾切除术标本。这些模型准确描绘了所选标本的局部解剖结构,并展示了切除病变与相邻正常组织的解剖关系。
人体解剖病理标本的三维打印是可行的。3D打印技术的进步可能会进一步提高可3D打印的解剖病理标本的质量。