Caon Martin
School of Nursing and Midwifery, Sturt Building, Flinders University, GPO Box 2100, 5001, Adelaide, South Australia, Australia.
Radiat Environ Biophys. 2004 Feb;42(4):229-35. doi: 10.1007/s00411-003-0221-8. Epub 2004 Jan 17.
Computational models of human anatomy are mathematical representations of human anatomy designed to be used in dosimetry calculations. They have been used in dosimetry calculations for radiography, radiotherapy, nuclear medicine, radiation protection and to investigate the effects of low frequency electromagnetic fields. Tomographic medical imaging techniques have allowed the construction of digital three-dimensional computational models based on the actual anatomy of individual humans. These are called voxel models, tomographic models or phantoms. Their usefulness lies in their faithful representation of human anatomy and the flexibility they afford by being able to be scaled in size to match the required human dimensions. Segmenting medical images in order to make voxel models is very time-consuming so semi-automatic segmentation techniques are being developed. Some 21 whole or partial body models currently exist and more are being prepared. These models are listed and discussed.
人体解剖学的计算模型是人体解剖学的数学表示形式,旨在用于剂量学计算。它们已被用于X射线摄影、放射治疗、核医学、辐射防护的剂量学计算,以及研究低频电磁场的影响。断层医学成像技术使得基于个体人类的实际解剖结构构建数字三维计算模型成为可能。这些被称为体素模型、断层模型或体模。它们的有用之处在于对人体解剖结构的忠实呈现,以及通过能够按比例缩放大小以匹配所需人体尺寸所提供的灵活性。为了制作体素模型而对医学图像进行分割非常耗时,因此正在开发半自动分割技术。目前大约有21个全身或局部身体模型,并且更多的正在准备中。这些模型被列出并进行了讨论。