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Marsupials are excellent objects for studies on developmental processes in all mammals including humans. Marsupials are very immature at birth and undergo most of their development in a pouch where they can be manipulated in a variety of ways without affecting the mother. Most of these studies are on systems which largely mature before birth in eutherian mammals and are consequently difficult to investigate. Attention is also drawn to certain features peculiar to adult marsupials: e.g., they continue to grow throughout adult life, valuable for studies on growth mechanisms, and furthermore the composition of marsupial milk changes radically through lactation, most important in studies of hormonal regulation of milk composition and secretion.
The results of this compilation of new research on the reproductive physiology of marsupials reveal much about their patterns of reproduction and evolution in comparison to monotremes and eutherians.
Marsupials are excellent objects for studies on developmental processes in all mammals including humans. Marsupials are very immature at birth and undergo most of their development in a pouch where they can be manipulated in a variety of ways without affecting the mother. Most of these studies are on systems which largely mature before birth in eutherian mammals and are consequently difficult to investigate. Attention is also drawn to certain features peculiar to adult marsupials: e.g., they continue to grow throughout adult life, valuable for studies on growth mechanisms, and furthermore the composition of marsupial milk changes radically through lactation, most important in studies of hormonal regulation of milk composition and secretion.
The Biology of Marsupials is a compilation and analysis of the research conducted on New World marsupials that covers both Australian and didelphid marsupials. It is organized into nine chapters that aim to bring scientific community the information available on certain aspects of marsupial biology. After presenting data on karyotypes, comparative serology, classification, and phylogenetic inferences of marsupials, this book goes on discussing the organism's chromosomes, cell cycles, and cytogenetics. A chapter covers the ecological strategies and adaptations of marsupial family, particularly, of the Didelphis virginiana. Another chapter discusses marsupial neurology; evidence of commonalities with eutherian nervous systems; distinctive features peculiar to the marsupial subclass; and neural specialization identification of particular genera and species in this subclass. The following chapter describes the plasticity, variability, and generability of the behavior patterns of marsupials. This book also describes the anatomy and histologic, embryologic, and gerontologic observations of Marmosa robinsoni. The concluding chapters discuss diseases of both American and Australasian marsupials based on zoological, wildlife, parasitological, and veterinary medical studies. Supplemental texts are also provided. This book is ideal for researchers in the fields of developmental anatomy, immunology, neurology, and many aspects of comparative medicine and behavior.
Over the past half a century research has revealed that marsupials – far from being ‘second class’ mammals – have adaptations for particular ways of life quite equal to their placental counterparts. Despite long separate evolution, there are extraordinary similarities in which marsupials have solved the challenges of living in such environments as deserts, alpine snowfields or tropical rainforests. Some can live on grass, some on pollen and others on leaves; some can glide, some can swim and others hop with extraordinary efficiency. In Life of Marsupials, one of the world’s leading experts explores the biology and evolution of this unusual group – with their extraordinary diversity of forms around the world – in Australia, New Guinea and South America. Joint winner of the 2005 Whitley Medal. Included in Choice Magazine's 2006 Outstanding Academic Titles list.
Marsupial Biology developed from contributions commissioned from those attending an international symposium held in honour of Hugh Tyndale Biscoe, Australia's most celebrated marsupial biology authority and co-author of the previous leading marsupial biology text published more than 15 years ago. The book does not comprise papers of narrow focus read at the symposium, but chapters reviewing the knowledge in each key area, written to a book format. It has been tightly edited to ensure a great degree of harmony and is suitable as a comprehensive reference text for graduate and undergraduate students.
Collection of papers from a satellite symposium of the Sixth International Theriological Congress held in Sydney in 1993. Topics addressed include comparative structure and function of marsupial spermatazoa, and male-induced oestrus and ovulation in female brush-tailed bettongs. Also provides an overview of development of early cell lineages in marsupial embryos. Includes references.
In Life of Marsupials, one of the world's leading experts explores the biology and evolution of this unusual group - with their extraordinary diversity of forms around the world - in Australia, New Guinea and South America. -back cover.
Australian marsupials represent a parallel adaptive radiation to that seen among placental mammals. This great natural experiment has produced a striking array of mammals with structural and behavioural features echoing those seen among primates, rodents, carnivores, edentates and ungulates elsewhere in the world. Many of these adaptations involve profound evolutionary changes in the nervous system, and occurred in isolation from those unfolding among placental mammals. Ashwell provides the first comprehensive review of the scientific literature on the structure and function of the nervous system of Australian marsupials. The book also includes the first comprehensive delineated atlases of brain structure in a representative diprotodont marsupial (the tammar wallaby) and a representative polyprotodont marsupial (the stripe-faced dunnart). For those interested in brain development, the book also provides the first comprehensive delineated atlas of brain development in a diprotodont marsupial (the tammar wallaby) during the critical first 4 weeks of pouch life.