1 |
Buijs, S., E. Van Poucke, S. Van Dongen, L. Lens, J. Baert, and F. A. M. Tuyttens. 2012. The influence of stocking density on broiler chicken bone quality and fluctuating asymmetry. Poult. Sci. 91:1759-1767.
DOI
ScienceOn
|
2 |
Campo, J. L., M. G. Gil, S. G. Davila, and I. Munoz. 2005. Estimation of heritability for fluctuating asymmetry in chickens by restricted maximum likelihood. Effects of age and sex. Poult. Sci. 84:1689-1697.
DOI
|
3 |
Campo, J. L., M. G. Gil, S. G. Davila, and I. Munoz. 2007. Genetic and phenotypic correlation between fluctuating asymmetry and two measurements of fear and stress in chickens. Appl. Anim. Behav. Sci. 102:53-64.
DOI
ScienceOn
|
4 |
Campo, J. L., S. G. Davila, M. T. Prieto, and M. G. Gil. 2012. Associations among fluctuating asymmetry, tonic immobility duration, and flight distance or ease of capture in chickens. Poult. Sci. 91:1575-1581.
DOI
ScienceOn
|
5 |
Kuehn, L. A., S. E. Price, C. F. Honaker, and P. B. Siegel. 2006. Antibody response of chickens to sheep red blood cells: Crosses among divergently selected lines and relaxed sublines. Poult. Sci. 85:1338-1341.
DOI
|
6 |
Moller, A. P., G. S. Sanotra, and K. S. Vestergaard. 1995. Developmental stability in relation to population density and breed of chickens gallus gallus. Poult. Sci. 74:1761-1771.
DOI
|
7 |
Moller, A. P. 1997. Developmental stability and fitness: A review. Am. Nat. 149:916-932.
DOI
ScienceOn
|
8 |
Moller, A. P. 1999. Developmental stability is related to fitness. Am. Nat. 153:556-560.
DOI
ScienceOn
|
9 |
Moller, A. P. and R. Thornhill. 1997. A meta-analysis of the heritability of developmental stability. J. Evol. Biol. 10:1-16.
DOI
|
10 |
Moller, A. P. and J. P. Swaddle. 1997. Asymmetry, Developmental Stability, and Evolution. Oxford University Press, Oxford, UK.
|
11 |
Parsons, P. A. 1992. Fluctuating asymmetry: A biological monitor of environmental and genomic stress. Heredity 68:361-364.
DOI
ScienceOn
|
12 |
Pinard-van der Laan, M.-H., P. Siegel, and S. Lamont. 1998. Lessons from selection experiments on immune response in the chicken. Poult. Avian Biol. Rev. 9:125-141.
|
13 |
Prieto, M. T., J. L. Campo, and J. Santiago-Moreno. 2011. Relationship among fluctuating asymmetry, morphological traits, and sperm quality in layers. Poult. Sci. 90:2845-2854.
DOI
ScienceOn
|
14 |
Verhulst, S., S. J. Dieleman, and H. K. Parmentier. 1999. A tradeoff between immunocompetence and sexual ornamentation in domestic fowl. Proc. Natl. Acad. Sci. USA. 96:4478-4481.
DOI
|
15 |
Rauw, W. M. 2009. Resource Allocation Theory Applied to Farm Animal Production. CABI, Cambridge, MA, USA.
|
16 |
Thornhill, R. and A. P. Moller. 1997. Developmental stability, disease and medicine. Biol. Rev. Camb. Pilos. Soc. 72:497-548.
DOI
ScienceOn
|
17 |
Van Valen, L. 1962. A study of fluctuating asymmetry. Evolution 16:125-142.
DOI
ScienceOn
|
18 |
Yang, A., E. A. Dunnington, and P. B. Siegel. 1997. Developmental stability in stocks of White Leghorn chickens. Poult. Sci. 76:1632-1636.
DOI
|
19 |
Yang, A. and P. B. Siegel. 1998. Asymmetries and heterosis of bilateral traits in parental lines of chickens and their crosses. J. Anim. Breed. Genet. 115:105-111.
DOI
ScienceOn
|
20 |
Zhao, X. L., C. F. Honaker, and P. B. Siegel. 2012. Phenotypic responses of chickens to long-term selection for high or low antibody titers to sheep red blood cells. Poult. Sci. 91:1047-1056.
DOI
ScienceOn
|