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This is an important and authoritative review of foraminiferal ecology, the first for over a decade. Professor Murray relates ecological data on living forms of foraminifera to the palaeoecology of fossil species, and defines in detail areas of global distribution.
In 1981, Woods Hole researcher C. Wylie Poag published the book Ecological Atlas of the Benthic Foraminifera of the Gulf of Mexico. In this new volume, Poag has revised and updated the atlas, incorporating three decades of extensive data collections from the open Gulf and from an additional seventeen estuarine systems to cover species of benthic foraminifera from more than eight thousand sample stations. Benthic Foraminifera of the Gulf of Mexico features 68 plates of scanning electron photomicrographs, 64 color figures, and a large color foldout map, indicating species distribution of forams. This book is designed to aid students and teachers of geology, biology, oceanography, and ecology, as well as micropaleontologists in government and industry laboratories, and other researchers and consultants who have an interest in benthic ecology or paleoecology.
Publisher description
Researcher and graduate student reference on benthic foraminifera and climate in Earth and Environmental Sciences.
Evolution and Geological Significance of Larger Benthic Foraminifera is a unique, comprehensive reference work on the larger benthic foraminifera. This second edition is substantially revised, including extensive re-analysis of the most recent work on Cenozoic forms. It provides documentation of the biostratigraphic ranges and palaeoecological significance of the larger foraminifera, which is essential for understanding many major oil-bearing sedimentary basins. In addition, it offers a palaeogeographic interpretation of the shallow marine late Palaeozoic to Cenozoic world. Marcelle K. BouDagher-Fadel collects and significantly adds to the information already published on the larger benthic foraminifera. New research in the Far East, the Middle East, South Africa, Tibet and Americas has provided fresh insights into the evolution and palaeographic significance of these vital reef-forming forms. With the aid of new and precise biostratigraphic dating, she presents revised phylogenies and ranges of the larger foraminifera. The book is illustrated throughout, with examples of different families and groups at the generic levels. Key species are discussed and their biostratigraphic ranges are depicted in comparative charts, which can be found at http://discovery.ucl.ac.uk/10047587/2/Charts.pdf.
This book consists of a collection of ten articles covering a variety of modern research topics in foraminiferal classification, stratigraphic distribution, ecology, paleoceanography and evolution. Significant contributions include road-opening studies in the evolutionary occurrence of the group in the Early Jurassic and evolutionary classification of the Cretaceous heterohelicid, planomalinid and globotruncanid planktics. Two general descriptions of the benthic foraminiferal assemblages from the Late Jurassic of Canada and modern sediments of the central Mediterranean Sea further add to the conceptual high density of the volume. A distinct advance in the biostratigraphy of the benthic foraminifera is the definition of the concept of biosequence, which is crucial for a better integration of the foraminiferal changes in time and space with the sequence stratigraphy concepts. Ecology and oceanography studies in both modern and ancient settings focus, among others, on the changes at the Cretaceous/Cenozoic boundary in the Tethyan Region and modern anoxia influences on the foraminiferal communities of the Black Sea. The variety of new and well-documented ideas, data and interpretations complement and at the same time challenge the already existing ones. Overall, the volume is of potential high interest for the foraminiferologists involved in both fundamental and applied inland and offshore studies.