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This book brings together an international group of scientists
focusing on present-day and fossil cephalopods, ranging broadly
from Paleozoic ammonoids to today's octopods. It has three general
sections dealing with: systematics and evolution; descriptions of
hard- and soft part morphology; and ecology, biogeography, and
taphonomy. Several highlights include new evidence for the
existence of an ink sac in fossil ammonoids, a biogeographic study
of clymeniid ammonoids throughout the world, the first record of a
radula in baculite ammonoids, and an in-depth study of octopus
ecology in Alaska. The book is remarkable in its treatment of both
fossil and living forms at the same time, with the aim of
presenting the wide diversity of cephalopods now and in the past.
This two-volume work is a testament to the abiding interest and
human fascination with ammonites. We offer a new model to explain
the morphogenesis of septa and the shell, we explore their habitats
by the content of stable isotopes in their shells, we discuss the
origin and later evolution of this important clade, and we deliver
hypotheses on its demise. The Ammonoidea produced a great number of
species that can be used in biostratigraphy and possibly, this is
the macrofossil group, which has been used the most for that
purpose. Nevertheless, many aspects of their anatomy, mode of life,
development or paleobiogeographic distribution are still poorly
known. Themes treated are biostratigraphy, paleoecology,
paleoenvironment, paleobiogeography, evolution, phylogeny, and
ontogeny. Advances such as an explosion of new information about
ammonites, new technologies such as isotopic analysis, tomography
and virtual paleontology in general, as well as continuous
discovery of new fossil finds have given us the opportunity to
present a comprehensive and timely "state of the art" compilation.
Moreover, it also points the way for future studies to further
enhance our understanding of this endlessly fascinating group of
organisms.
This two-volume work is a testament to the abiding interest and
human fascination with ammonites. We offer a new model to explain
the morphogenesis of septa and the shell, we explore their habitats
by the content of stable isotopes in their shells, we discuss the
origin and later evolution of this important clade, and we deliver
hypotheses on its demise. The Ammonoidea produced a great number of
species that can be used in biostratigraphy and possibly, this is
the macrofossil group, which has been used the most for that
purpose. Nevertheless, many aspects of their anatomy, mode of life,
development or paleobiogeographic distribution are still poorly
known. Themes treated are biostratigraphy, paleoecology,
paleoenvironment, paleobiogeography, evolution, phylogeny, and
ontogeny. Advances such as an explosion of new information about
ammonites, new technologies such as isotopic analysis, tomography
and virtual paleontology in general, as well as continuous
discovery of new fossil finds have given us the opportunity to
present a comprehensive and timely "state of the art" compilation.
Moreover, it also points the way for future studies to further
enhance our understanding of this endlessly fascinating group of
organisms.
This two-volume work is a testament to the abiding interest and
human fascination with ammonites. We offer a new model to explain
the morphogenesis of septa and the shell, we explore their habitats
by the content of stable isotopes in their shells, we discuss the
origin and later evolution of this important clade, and we deliver
hypotheses on its demise. The Ammonoidea produced a great number of
species that can be used in biostratigraphy and possibly, this is
the macrofossil group, which has been used the most for that
purpose. Nevertheless, many aspects of their anatomy, mode of life,
development or paleobiogeographic distribution are still poorly
known. Themes treated are biostratigraphy, paleoecology,
paleoenvironment, paleobiogeography, evolution, phylogeny, and
ontogeny. Advances such as an explosion of new information about
ammonites, new technologies such as isotopic analysis, tomography
and virtual paleontology in general, as well as continuous
discovery of new fossil finds have given us the opportunity to
present a comprehensive and timely "state of the art" compilation.
Moreover, it also points the way for future studies to further
enhance our understanding of this endlessly fascinating group of
organisms.
This two-volume work is a testament to the abiding interest and
human fascination with ammonites. We offer a new model to explain
the morphogenesis of septa and the shell, we explore their habitats
by the content of stable isotopes in their shells, we discuss the
origin and later evolution of this important clade, and we deliver
hypotheses on its demise. The Ammonoidea produced a great number of
species that can be used in biostratigraphy and possibly, this is
the macrofossil group, which has been used the most for that
purpose. Nevertheless, many aspects of their anatomy, mode of life,
development or paleobiogeographic distribution are still poorly
known. Themes treated are biostratigraphy, paleoecology,
paleoenvironment, paleobiogeography, evolution, phylogeny, and
ontogeny. Advances such as an explosion of new information about
ammonites, new technologies such as isotopic analysis, tomography
and virtual paleontology in general, as well as continuous
discovery of new fossil finds have given us the opportunity to
present a comprehensive and timely "state of the art" compilation.
Moreover, it also points the way for future studies to further
enhance our understanding of this endlessly fascinating group of
organisms.
This book brings together international scientists who focus on
present-day and fossil cephalopods, ranging broadly from Paleozoic
ammonoids to today's octopods. It covers systematics and evolution;
hard- and soft part morphology; and ecology, biogeography, and
taphonomy. The book also includes new evidence for the existence of
an ink sac in fossil ammonoids and features the first record of an
in-depth study of octopus ecology in Alaska.
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