Department of Clinical Medicine, Center of Functionally Integrative Neuroscience, Aarhus University, Palle Juul-Jensen Boulevard 99, 8200, Aarhus N, Denmark.
Department of Forensic Medicine, Aarhus University, Palle Juul-Jensen Boulevard 99, 8200, Aarhus N, Denmark.
Comput Biol Med. 2024 Nov;182:109170. doi: 10.1016/j.compbiomed.2024.109170. Epub 2024 Sep 19.
The findings from forensic autopsies, where cause of death must be established and reported to legal authorities, are reported in paper-based formats. Practitioners are required to map 3D injury findings to 2D space. Here, we design and describe a digital Forensic AuTopsy Annotation tooL (FATAL), that can be used by practitioners to record systematically detailed autopsy findings onto an interactive 3D body model. We employ a user-centred design process involving an expert forensic medicine team. We describe the iteration process and the final functionality determined, based on in-depth analyses of forensic clinical workflows, and feedback on the types of complex cases confronting practitioners. FATAL functions include freehand drawing, a layer system for injury categorisation, trajectory plotting, surface area markings, and point-of-interest marking. Relevant external images, such as investigative report or autopsy photographs, can be loaded into the FATAL tool and assigned to individual annotations. The application streamlines workflows, supports template-driven documentation, and collates all forensic data into a single interface. Findings from the digital tool can be exported to a 2D report (PDF). We highlight the advancements in accuracy, efficiency, and reproducibility afforded by a digital tool for forensic autopsy documentation. Potential applications in forensic medical examinations beyond autopsies are described, along with specific areas for extension, such as supporting touch screen and pen inputs, export for 3D printing models and extending the tool's compatibility with custom 3D body models.
法医解剖的结果必须确定并报告给法律当局,这些结果以纸质格式报告。从业者需要将 3D 损伤发现映射到 2D 空间。在这里,我们设计并描述了一个数字法医解剖标注工具(FATAL),从业者可以使用该工具系统地将详细的解剖结果记录到交互式 3D 人体模型上。我们采用了用户为中心的设计过程,涉及到一个法医医学专家团队。我们根据深入分析法医临床工作流程以及对从业者面临的复杂案例类型的反馈,描述了迭代过程和最终确定的功能。FATAL 的功能包括徒手绘制、损伤分类的图层系统、轨迹绘制、表面积标记和关键点标记。相关的外部图像,如调查报告或解剖照片,可以加载到 FATAL 工具中,并分配给各个注释。该应用程序简化了工作流程,支持模板驱动的文档记录,并将所有法医数据整理到一个界面中。数字工具的结果可以导出到 2D 报告(PDF)中。我们强调了数字工具在法医解剖文档记录方面的准确性、效率和可重复性方面的改进。还描述了法医检查中除解剖外的潜在应用,以及特定的扩展领域,例如支持触摸屏和笔输入、用于 3D 打印模型的导出以及扩展工具与自定义 3D 人体模型的兼容性。