作者: P. LIU , J.-Y. ZHU , B. TANG , Z.-C. HU
DOI: 10.1111/JMI.12671
关键词:
摘要: This study describes how three-dimensional (3D) human skin tissue is reconstructed, and provides digital anatomical data for the physiological structure of based on large-scale thin serial sections. Human samples embedded in paraffin were cut serially into sections then stained with hematoxylin-eosin. Images obtained from lighting microscopy scanned aligned by scale-invariant feature transform algorithm. 3D reconstruction was generated using Mimics software. Fibre content, porosity, average pore diameter specific surface area dermis analysed ImageJ analysis system. The root mean square error mutual information algorithm registration significantly greater than those manual registration. distribution gradually decreased top to bottom; while porosity showed an opposite trend irregular distribution. A a 'V' shape trend. Our suggested that could be valuable tool providing highly accurate histological tissue. Moreover, this technology utilized produce tissue-engineered via bioprinter future.