Spiriev Toma, Mitev Atanas, Stoykov Viktor, Dimitrov Nikolay, Maslarski Ivan, Nakov Vladimir
Department of Neurosurgery, Acibadem Cityclinic University Hospital Tokuda, Sofia, BGR.
Anatomy, Department of Anatomy and Histology, Pathology and Forensic Medicine, University Hospital Lozenetz, Medical Faculty, Sofia University, Sofia, BGR.
Cureus. 2022 Jul 11;14(7):e26727. doi: 10.7759/cureus.26727. eCollection 2022 Jul.
Introduction The distinct anatomy of the superficial and deep back muscles is characterized by complex layered courses, fascial planes, specific vascularization, and innervation. Knowledge of these anatomical parameters is important for some surgical approaches, including lumbar disc herniation, cerebrospinal fluid fistula repair, vascularized muscle pedicle flaps, and posterior fossa extra-intracranial bypass. In the present study, we use modern techniques of three-dimensional (3D) surface scanning to help better illustrate the layered anatomy of the back muscles. Material and methods We dissected in layers . Every step of the dissection was 3D scanned using a technique called photogrammetry, which allows the extraction of 3D data from 2D photographs. The 3D data were processed using Blender software, and the 3D photorealistic models were uploaded to a dedicated website for 3D visualization. This allows users to see the 3D models from every desktop or mobile device, as well as augmented (AR) and virtual reality (VR) formats. Results The photorealistic 3D models present the back muscles' anatomy in a volumetric manner, which can be visualized on any computer device. The web 3D features, including AR and VR, allow users to zoom, pan, and rotate the models, which may facilitate learning. Conclusion The technology of photorealistic surface scanning, modern 3D visualization possibilities of web-dedicated formats, as well as advances in AR and VR, have the potential to help with a better understanding of complex anatomy. We believe that this opens the field for further research in the field of medical education.
引言 浅表和深层背部肌肉独特的解剖结构具有复杂的分层走行、筋膜平面、特定的血管分布和神经支配。了解这些解剖学参数对于一些手术入路很重要,包括腰椎间盘突出症、脑脊液瘘修补术、带血管蒂肌皮瓣以及后颅窝颅外搭桥术。在本研究中,我们使用现代三维(3D)表面扫描技术来更好地展示背部肌肉的分层解剖结构。
材料与方法 我们进行分层解剖。解剖的每一步都使用一种称为摄影测量法的技术进行3D扫描,该技术可从二维照片中提取3D数据。使用Blender软件处理3D数据,并将逼真的3D模型上传到专门的网站进行3D可视化。这使用户可以从任何桌面或移动设备上查看3D模型,以及增强现实(AR)和虚拟现实(VR)格式。
结果 逼真的3D模型以立体方式呈现背部肌肉的解剖结构,可以在任何计算机设备上进行可视化。网络3D功能,包括AR和VR,允许用户对模型进行缩放、平移和旋转,这可能有助于学习。
结论 逼真的表面扫描技术、网络专用格式的现代3D可视化可能性以及AR和VR的进步,有可能有助于更好地理解复杂的解剖结构。我们相信这为医学教育领域的进一步研究开辟了道路。