The Effects of Low Temperature on Biological Systems
Herausgeber: Grout, B. W. W.; Morris, G. J.
The Effects of Low Temperature on Biological Systems
Herausgeber: Grout, B. W. W.; Morris, G. J.
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First published in 1987, The Effects of Low Temperatures on Biological Systems takes a broad view of the interactions of low temperatures with biological conditions.
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First published in 1987, The Effects of Low Temperatures on Biological Systems takes a broad view of the interactions of low temperatures with biological conditions.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 512
- Erscheinungstermin: 29. November 2008
- Englisch
- Abmessung: 229mm x 152mm x 30mm
- Gewicht: 823g
- ISBN-13: 9780521105767
- ISBN-10: 0521105765
- Artikelnr.: 25855029
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Cambridge University Press
- Seitenzahl: 512
- Erscheinungstermin: 29. November 2008
- Englisch
- Abmessung: 229mm x 152mm x 30mm
- Gewicht: 823g
- ISBN-13: 9780521105767
- ISBN-10: 0521105765
- Artikelnr.: 25855029
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Part I. Fundamental principles: 1. Physicochemical principles in low
temperature biology M. J. Taylor; 2. Cells at low temperatures G. J. Morris
and A. Clarke; 3. Direct chilling injury G. J. Morris; 4. Freezing and
cellular organization B. W. W. Grout and G.J. Morris; Part II. Techniques:
5. Low temperature and biological electron microscopy H. le B. Skaer; 6.
Temperature-controlled cryogenic light microscopy - an introduction to
cryomicroscopy J. J. McGrath; Part III. Environmental low temperature
biology: 7. Chilling injury in plants J. M. Wilson; 8. Higher plants at
freezing temperatures B. W. W. Grout; 9. The adaptation of aquatic animals
to low temperatures A. Clarke; 10. Mammalian hibernation L. C. H. Wang;
Part IV. Applications: 11. The low temperature preservation of plant cell,
tissue and organ cultures and seed for genetic conservation and improved
agricultural practice L. A. Withers; 12. The preservation of organisms
responsible for parasitic diseases E. James; 13. Low temperature
preservation in medicine and veterinary science B. J. Fuller; 14.
Cryotherapy C. J. Green; 15. The freezing of food tissues D. S. Reid.
temperature biology M. J. Taylor; 2. Cells at low temperatures G. J. Morris
and A. Clarke; 3. Direct chilling injury G. J. Morris; 4. Freezing and
cellular organization B. W. W. Grout and G.J. Morris; Part II. Techniques:
5. Low temperature and biological electron microscopy H. le B. Skaer; 6.
Temperature-controlled cryogenic light microscopy - an introduction to
cryomicroscopy J. J. McGrath; Part III. Environmental low temperature
biology: 7. Chilling injury in plants J. M. Wilson; 8. Higher plants at
freezing temperatures B. W. W. Grout; 9. The adaptation of aquatic animals
to low temperatures A. Clarke; 10. Mammalian hibernation L. C. H. Wang;
Part IV. Applications: 11. The low temperature preservation of plant cell,
tissue and organ cultures and seed for genetic conservation and improved
agricultural practice L. A. Withers; 12. The preservation of organisms
responsible for parasitic diseases E. James; 13. Low temperature
preservation in medicine and veterinary science B. J. Fuller; 14.
Cryotherapy C. J. Green; 15. The freezing of food tissues D. S. Reid.
Part I. Fundamental principles: 1. Physicochemical principles in low
temperature biology M. J. Taylor; 2. Cells at low temperatures G. J. Morris
and A. Clarke; 3. Direct chilling injury G. J. Morris; 4. Freezing and
cellular organization B. W. W. Grout and G.J. Morris; Part II. Techniques:
5. Low temperature and biological electron microscopy H. le B. Skaer; 6.
Temperature-controlled cryogenic light microscopy - an introduction to
cryomicroscopy J. J. McGrath; Part III. Environmental low temperature
biology: 7. Chilling injury in plants J. M. Wilson; 8. Higher plants at
freezing temperatures B. W. W. Grout; 9. The adaptation of aquatic animals
to low temperatures A. Clarke; 10. Mammalian hibernation L. C. H. Wang;
Part IV. Applications: 11. The low temperature preservation of plant cell,
tissue and organ cultures and seed for genetic conservation and improved
agricultural practice L. A. Withers; 12. The preservation of organisms
responsible for parasitic diseases E. James; 13. Low temperature
preservation in medicine and veterinary science B. J. Fuller; 14.
Cryotherapy C. J. Green; 15. The freezing of food tissues D. S. Reid.
temperature biology M. J. Taylor; 2. Cells at low temperatures G. J. Morris
and A. Clarke; 3. Direct chilling injury G. J. Morris; 4. Freezing and
cellular organization B. W. W. Grout and G.J. Morris; Part II. Techniques:
5. Low temperature and biological electron microscopy H. le B. Skaer; 6.
Temperature-controlled cryogenic light microscopy - an introduction to
cryomicroscopy J. J. McGrath; Part III. Environmental low temperature
biology: 7. Chilling injury in plants J. M. Wilson; 8. Higher plants at
freezing temperatures B. W. W. Grout; 9. The adaptation of aquatic animals
to low temperatures A. Clarke; 10. Mammalian hibernation L. C. H. Wang;
Part IV. Applications: 11. The low temperature preservation of plant cell,
tissue and organ cultures and seed for genetic conservation and improved
agricultural practice L. A. Withers; 12. The preservation of organisms
responsible for parasitic diseases E. James; 13. Low temperature
preservation in medicine and veterinary science B. J. Fuller; 14.
Cryotherapy C. J. Green; 15. The freezing of food tissues D. S. Reid.