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A new method of three-dimensional computer assisted reconstruction of the developing biliary tract
Authors:M. Prudhomme  R. Gaubert-Cristol  M. Jaeger  P. De Reffye  G. Godlewski
Affiliation:(1) Laboratoire d’Anatomie Expérimentale, Faculté de Médecine, Montpellier-Nîmes, Université Montpellier I, F-30900 Nîmes, France;(2) Faculté d’Odontologie, Université Montpellier I, F-34000 Montpellier, France;(3) CIRAD Unite de Modélisation, BP 5035, F-34032 Montpellier Cedex 1, France
Abstract:A three-dimensional (3-D) computer assisted reconstruction of the biliary tract was performed in human and rat embryos at Carnegie stage 23 to describe and compare the biliary structures and to point out the anatomic relations between the structures of the hepatic pedicle. Light micrograph images from consecutive serial sagittal sections (diameter 7 mm) of one human and 16 rat embryos were directly digitalized with a CCD camera. The serial views were aligned automatically by software. The data were analysed following segmentation and thresholding, allowing automatic reconstruction. The main bile ducts ascended in the mesoderm of the hepatoduodenal ligament. The extrahepatic bile ducts: common bile duct (CD), cystic duct and gallbladder in the human, formed a compound system which could not be shown so clearly in histologic sections. The hepato-pancreatic ampulla was studied as visualised through the duodenum. The course of the CD was like a chicane. The gallbladder diameter and length were similar to those of the CD. Computer-assisted reconstruction permitted easy acquisition of the data by direct examination of the sections through the microscope. This method showed the relationships between the different structures of the hepatic pedicle and allowed estimation of the volume of the bile duct. These findings were not obvious in two-dimensional (2-D) views from histologic sections. Each embryonic stage could be rebuilt in 3-D, which could introduce the time as a fourth dimension, fundamental for the study of organogenesis.
Keywords:Three-dimensional computer assisted reconstruction  Biliary tract  Human embryo  Carnegie stage 23
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