Following a brief outline of the technology involved in preparing casts as well as the types of casts made, this atlas devotes a whole section to three blood vessel systems (portal, arterial and venous) and the biliary system. Apart from normal anatomy, it presents all other major structural variations together with the liver blood vessel structures and bile ducts of each liver segment. The last section shows correlations between systems as well as the division of the liver into sectors and segments bas ed on relations among portal pedicles and hepatic veins. The arteries, veins, and bile ducts were each injected with a different colored dye to produce around 100 striking photographs of liver casts. This close collaboration between a surgeon and an anatomist ensures that the atlas is ideally suited for surgeons specialising in the liver and biliary system, as well as for general surgeons faced with liver trauma and who have to decide on appropriate treatment. Can also be used by those involved in training to present liver structures to students and junior colleagues.
Following a brief outline of the technology involved in preparing casts as well as the types of casts made, this atlas devotes a whole section to three blood vessel systems (portal, arterial and venous) and the biliary system. Apart from normal anatomy, it presents all other major structural variations together with the liver blood vessel structures and bile ducts of each liver segment. The last section shows correlations between systems as well as the division of the liver into sectors and segments bas ed on relations among portal pedicles and hepatic veins. The arteries, veins, and bile ducts were each injected with a different colored dye to produce around 100 striking photographs of liver casts. This close collaboration between a surgeon and an anatomist ensures that the atlas is ideally suited for surgeons specialising in the liver and biliary system, as well as for general surgeons faced with liver trauma and who have to decide on appropriate treatment. Can also be used by those involved in training to present liver structures to students and junior colleagues.
Lecture provides an overview of the progress made in molecular medicine applying genetics and genomics to the understanding, diagnosis, and treatment of human diseases. Specifically, the methods for identifying genes involved in human diseases are described. Examples from 10 genes and diseases will be provided, drawing on the author's research. Topics include examples from simple Mendelian diseases, such as cystic fibrosis, inherited cancers, oncogenes activated by chromosomal translocations, host genes involved in infectious disease, genes identified via genomewide association studies, pathogens causing cancer, and gene families contributing to multiple diseases. For each example, historical details will be provided as background for readers to understand the context and process of the discoveries, technologies explained, and current understanding and treatment implications detailed.
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