User:Yadukulakambhoji/List of articles

Source: Wikipedia, the free encyclopedia.

Finding Topics

Aestivation

Air sac (Air sac page has little info on modern birds, plus cool new research on penguin air sacs use in diving and air sac use for songbirds [1][2][3][4][5][6])

Hoatzin (research on digestion and flight patterns [7][8][9][10])

Common snapping turtle (some research on embryonic phenotypic plasticity regarding the cardiovascular system and mitochondrial function which isn't in the wikipedia article [11][12][13][14])

American Alligator (research[12] conducted on stress responses [15][16][17][18])

Garter snake (research conducted on stress responses)

Potential References

  1. ^ Goller, Franz; Riede, Tobias (2013-06-01). "Integrative physiology of fundamental frequency control in birds". Journal of Physiology-Paris. Special issue: Physiological mechanisms of song learning and production. 107 (3): 230–242. doi:10.1016/j.jphysparis.2012.11.001. ISSN 0928-4257. PMC 3674193. PMID 23238240.{{cite journal}}: CS1 maint: PMC format (link)
  2. ^ Mackelprang, R.; Goller, F. (2013). "Ventilation patterns of the songbird lung/air sac system during different behaviors". journals.biologists.com. Retrieved 2023-02-17.{{cite web}}: CS1 maint: date and year (link)
  3. ^ Nevitt, Benjamin N.; Langan, Jennifer N.; Adkesson, Michael J.; Mitchell, Mark A.; Henzler, Margaret; Drees, Randi (2014-08-01). "Comparison of air sac volume, lung volume, and lung densities determined by use of computed tomography in conscious and anesthetized Humboldt penguins (Spheniscus humboldti) positioned in ventral, dorsal, and right lateral recumbency". American Journal of Veterinary Research. 75 (8): 739–745. doi:10.2460/ajvr.75.8.739.
  4. ^ Williams, C. L.; Czapanskiy, M. F.; John, J. J.; St. Leger, J.; Scadeng, M.; Ponganis, P. J. (2021). "Cervical air sac oxygen profiles in diving emperor penguins: parabronchial ventilation and the respiratory oxygen store". journals.biologists.com. doi:10.1242/jeb.230219. Retrieved 2023-02-17.
  5. ^ Ponganis, P. J.; St. Leger, J.; Scadeng, M. "Penguin lungs and air sacs: implications for baroprotection, oxygen stores, and buoyancy". Journal of Experimental Biology. 218 (5): 720–730.
  6. ^ Alonso, Rodrigo; Goller, Franz; Mindlin, Gabriel B. (2014-03-10). "Motor control of sound frequency in birdsong involves the interaction between air sac pressure and labial tension". Physical Review E. 89 (3): 032706. doi:10.1103/PhysRevE.89.032706. PMC 4083689. PMID 24730873.{{cite journal}}: CS1 maint: PMC format (link)
  7. ^ Pagès, Fanny (2019). Compared and functional morphology of the hoatzin (Opisthocomus hoazin). Tissues and Organs [q-bio.TO] (English ed.). Paris: Museum national d'histoire naturelle. ISBN nnt; 2019MNHN0013. {{cite book}}: Check |isbn= value: invalid character (help)
  8. ^ Godoy-Vitorino, Filipa; Goldfarb, Katherine C.; Brodie, Eoin L.; Garcia-Amado, Maria A.; Michelangeli, Fabian; Domínguez-Bello, Maria G. (2010). "Developmental microbial ecology of the crop of the folivorous hoatzin". The ISME Journal. 4 (5): 611–620. doi:10.1038/ismej.2009.147. ISSN 1751-7370.
  9. ^ Grond, Kirsten; Sandercock, Brett K.; Jumpponen, Ari; Zeglin, Lydia H. (2018). "The avian gut microbiota: community, physiology and function in wild birds". Journal of Avian Biology. 49 (11): e01788. doi:10.1111/jav.01788.
  10. ^ Wright, A. D. G.; Northwood, Korinne S.; Obispo, Nestor E. (2009). "Rumen-like methanogens identified from the crop of the folivorous South American bird, the hoatzin (Opisthocomus hoazin)". The ISME Journal. 3 (10): 1120–1126. doi:10.1038/ismej.2009.41. ISSN 1751-7370.
  11. ^ Eme, John; Rhen, Turk; Tate, Kevin B.; Gruchalla, Kathryn; Kohl, Zachary F.; Slay, Christopher E.; Crossley, Dane A. (2013-06-01). "Plasticity of cardiovascular function in snapping turtle embryos ( Chelydra serpentina ): chronic hypoxia alters autonomic regulation and gene expression". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology. 304 (11): R966–R979. doi:10.1152/ajpregu.00595.2012. ISSN 0363-6119.
  12. ^ a b Sirsat, S. K. G.; Sirsat, T. S.; Price, E. R.; Dzialowski, E. M. (2016). "Post-hatching development of mitochondrial function, organ mass and metabolic rate in two ectotherms, the American alligator (Alligator mississippiensis) and the common snapping turtle (Chelydra serpentina)". Biology Open. 5 (4): 443–451.
  13. ^ Wearing, Oliver H.; Eme, John; Rhen, Turk; Crossley, Dane A. (2016-01-15). "Phenotypic plasticity in the common snapping turtle ( Chelydra serpentina ): long-term physiological effects of chronic hypoxia during embryonic development". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology. 310 (2): R176–R184. doi:10.1152/ajpregu.00293.2015. ISSN 0363-6119.
  14. ^ Sartori, M. R.; Kohl, Z. F.; Taylor, E. W.; Abe, A. S.; Crossley, D. A. II (2018). "Convective oxygen transport during development in embryos of the snapping turtle Chelydra serpentina". Journal of Experimental Biology. 221 (18): jeb185967.
  15. ^ Young, Bruce A.; Potter, James; Blanchard, Joshua; Knoche, Lucas; Kondrashova, Tatyana (2020-05-12). "Cardiac response to stimulation and stress in the American alligator (Alligator mississippiensis)". Amphibia-Reptilia. 41 (4): 547–551. doi:10.1163/15685381-bja10013. ISSN 1568-5381.
  16. ^ Jr, John W. Finger; Kelley, Meghan D.; Zhang, Yufeng; Hamilton, Matthew T.; Elsey, Ruth M.; Mendonca, Mary T.; Kavazis, Andreas (2021-04-28). "Short-term capture stress and its effects on corticosterone levels and heat shock proteins in captive American Alligators (Alligator mississippiensis)". Canadian Journal of Zoology. doi:10.1139/cjz-2021-0014.
  17. ^ Li, Li-Qin; Lyu, Cheng-Cheng; Li, Jia-Hao; Tong, Zhu; Lu, Yi-Fei; Wang, Xi-Yao; Ni, Su; Yang, Shi-Min; Zeng, Fu-Chun; Lu, Li-Ming (2019-01). "Physiological Analysis and Proteome Quantification of Alligator Weed Stems in Response to Potassium Deficiency Stress". International Journal of Molecular Sciences. 20 (1): 221. doi:10.3390/ijms20010221. ISSN 1422-0067. {{cite journal}}: Check date values in: |date= (help)CS1 maint: unflagged free DOI (link)
  18. ^ Kohno, Satomi; Zhu, Jianguo; Guillette, Louis J. (2020-03). "Stress responses in the chemistry and mRNA abundance of the peripheral blood in the American alligator". Journal of Experimental Zoology Part A: Ecological and Integrative Physiology. 333 (3): 151–163. doi:10.1002/jez.2337. ISSN 2471-5638. {{cite journal}}: Check date values in: |date= (help)