Department of Veterinary Anatomy, College of Veterinary Science, Guru Angad Dev Veterinary and Animal Sciences University, Ludhiana, 141004, Punjab, India.
Anat Sci Int. 2024 Mar;99(2):159-182. doi: 10.1007/s12565-023-00755-1. Epub 2024 Jan 18.
The amalgamation of veterinary anatomy, technology and innovation has led to development of latest technological advancement in the field of veterinary medicine, i.e., three-dimensional (3D) imaging and reconstruction. 3D visualization technique followed by 3D reconstruction has been proven to enhance non-destructive 3D visualization grossly or microscopically, e.g., skeletal muscle, smooth muscle, ligaments, cartilage, connective tissue, blood vessels, nerves, lymph nodes, and glands. The core aim of this manuscript is to document non-invasive 3D visualization methods being adopted currently in veterinary anatomy to reveal underlying morphology and to reconstruct them by 3D softwares followed by printing, its applications, current challenges, trends and future opportunities. 3D visualization methods such as MRI, CT scans and micro-CT scans are utilised in revealing volumetric data and underlying morphology at microscopic levels as well. This will pave a way to transform and re-invent the future of teaching in veterinary medicine, in clinical cases as well as in exploring wildlife anatomy. This review provides novel insights into 3D visualization and printing as it is the future of veterinary anatomy, thus making it spread to become the plethora of opportunities for whole veterinary science.
兽医解剖学、技术和创新的融合导致了兽医医学领域最新技术进步的发展,即三维(3D)成像和重建。事实证明,3D 可视化技术随后的 3D 重建可以增强非破坏性的 3D 宏观或微观可视化,例如骨骼肌、平滑肌、韧带、软骨、结缔组织、血管、神经、淋巴结和腺体。本文的核心目标是记录当前在兽医解剖学中采用的非侵入性 3D 可视化方法,以揭示潜在的形态,并通过 3D 软件进行重建,然后进行打印,介绍其应用、当前挑战、趋势和未来机会。MRI、CT 扫描和微 CT 扫描等 3D 可视化方法也用于揭示微观水平的体积数据和潜在形态。这将为兽医医学的教学、临床病例以及探索野生动物解剖学的未来铺平道路。本综述提供了对 3D 可视化和打印的新见解,因为它是兽医解剖学的未来,因此将成为整个兽医科学的众多机会。