Lesser | Advances in Marine Biology | Buch | 978-0-12-385536-7 | www.sack.de

Buch, Englisch, 212 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 490 g

Lesser

Advances in Marine Biology


Erscheinungsjahr 2011
ISBN: 978-0-12-385536-7
Verlag: William Andrew Publishing

Buch, Englisch, 212 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 490 g

ISBN: 978-0-12-385536-7
Verlag: William Andrew Publishing


Advances in Marine Biology has been providing in-depth and up-to-date reviews on all aspects of marine biology since 1963 -- over 45 years of outstanding coverage! The series is well-known for both its excellence of reviews and editing. Now edited by Michael Lesser, with an internationally renowned Editorial Board, the serial publishes in-depth and up-to-date content on a wide range of topics that will appeal to postgraduates and researchers in marine biology, fisheries science, ecology, zoology, and biological oceanography.

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Zielgruppe


Postgraduates and researchers in marine biology, fisheries science, ecology, zoology, oceanography


Autoren/Hrsg.


Weitere Infos & Material


- p53 Signaling in Mollusks and Other  Marine Invertebrates: Evidence for Conservation of DNA Editing and Repair, Cellular Senescence and Apoptotic Pathways. Charles Walker

- Trophic Level Dysfunction and the Resilience of Coral Reef Ecosystems Robert Steneck

- Vascular architecture and the limits of morphological plasticity in colonial cnidarians Steven Dudgeon


Lesser, Michael P.
Educational Background

Ph. D., University of Maine, Zoology, 1989

M.S., University of New Hampshire, Microbiology, 1985

B.A., University of New Hampshire, Microbiology, Minor: Zoology, 1983

A.S. George Washington University, Medical Laboratory Science, 1977

Courses Taught

Biological Oceanography, Physiological Ecology, Marine Biology, Marine Microbiology, General Microbiology, Immunology, Biology and Ecology of Coral Reefs

Current Research Interests

My principal focus involve understanding how taxonomically diverse marine organisms respond physiologically to changes in their environment. In particular I'm interested in how organismal physiology can influence the ecology of marine organisms. As a physiological ecologist my students and I answer these types of questions by utilizing field and laboratory experiments, as well as a wide range of techniques from molecular biology to in situ measurements. Currently my research encompasses four major areas;

1) Biochemistry and molecular genetics of oxidative stress in marine organisms associated with exposure to ultraviolet radiation, elevated temperatures, or hyperoxic conditions.

2) Physiological ecology of marine invertebrates and phytoplankton, physiological responses to changes in the environment, bacterial- and algal-invertebrate symbioses, and the trophic biology of suspension-feeding invertebrates.

3) Ecology and photobiology of mesophotic coral reefs.

4) Underwater technology, use of technical diving for scientific research.



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