Insects breathe discontinuously to avoid oxygen toxicity
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/nature03106.pdf
Reference30 articles.
1. Levy, R. I. & Schneiderman, H. A. Discontinuous respiration in insects. II. The direct measurement and significance of changes in tracheal gas composition during the respiratory cycle of silkworm pupae. J. Insect Physiol. 12, 83–104 (1966)
2. Lighton, J. R. B. Notes from the underground: toward ultimate hypotheses of cyclic, discontinuous gas-exchange in tracheate arthropods. Am. Zool. 38, 483–491 (1998)
3. Wigglesworth, V. B. The Principles of Insect Physiology (Methuen, London, 1970)
4. Krogh, A. Studien ueber tracheenrespiration. II. Ueber gasdiffusion in den tracheen. Pfluegers Arch. 179, 95–112 (1920)
5. Krogh, A. Studien über die tracheenrespiration. III. Die kombination von mechanischer ventilation mit gasdiffusion nach versuchen an dytiscidenlarven. Pflugers Arch. 179, 113–120 (1920)
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