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Jorgensen, I. M. (1976). Hair cell polarization in the flatfish inner ear. Acta Zoologica , 57 ,
37-39.
Kuan, Y. S., Gamse, J. T., Schreiber, A. M., &Halpern, M. E. (2007). Selective asymmetry in
a conserved forebrain to midbrain projection. Journal of Experimental Zoology. Part B,
Molecular and Developmental Evolution , 308 , 669-678.
Laudet, V. (2011). The origins and evolution of vertebrate metamorphosis. Current Biology ,
21 , R726-R737.
Levin, M. (2005). Left-right asymmetry in embryonic development: A comprehensive
review. Mechanisms of Development , 122 , 3-25.
Liang, J.O., Etheridge, A.,Hantsoo, L.,Rubinstein, A. L.,Nowak, S. J., IzpisuaBelmonte, J.C.,
et al. (2000). Asymmetric nodal signaling in the zebrafish diencephalon positions the pineal
organ. Development (Cambridge, England) , 127 , 5101-5112.
Logan, M., Pagan-Westphal, S. M., Smith, D. M., Paganessi, L., & Tabin, C. J. (1998). The
transcription factor Pitx2 mediates situs-specific morphogenesis in response to left-right
asymmetric signals. Cell , 94 , 307-317.
Loher, T., Wischniowski, S., & Martin, G. B. (2008). Elemental chemistry of left and right
sagittal otoliths in a marine fish Hippoglossus stenolepis displaying cranial asymmetry. Jour-
nal of Fish Biology , 73 , 870-887.
L´pez, A. V., M ¨ ller, M. I., Radoni´, M., Bambill, G. A., Boccanfuso, J. J., & Bianca, F. A.
(2009). Larval culture technique and quality control in juveniles of flounder. Paralichthys
orbignyanus (Valenciennes, 1839) in Argentina. Spanish Journal of Agricultural Research , 7 ,
75-82.
Luckenbill-Edds, L., & Sharma, S. C. (1977). Retinotectal projection of the adult winter
flounder ( Pseudopleuronectes americanus ). The Journal of Comparative Neurology , 173 ,
307-318.
Lychakov, D. V. (1996). Anomalous otoliths of Black Sea fishes. Zhurnal Evoliutsionnoı˘
Biokhimii i Fiziologii , 32 , 470-477.
Lychakov, D. V., Rebane, Y. T., Lombarte, A., Demestre, M., & Fuiman, L. A. (2008). Sac-
cular otolith mass asymmetry in adult flatfishes. Journal of Fish Biology , 72 , 2579-2594.
Manchado, M., Infante, C., Rebordinos, L., & Canavate, J. P. (2009). Molecular character-
ization, gene expression and transcriptional regulation of thyroid hormone receptors in
Senegalese sole. General and Comparative Endocrinology , 160 , 139-147.
Marchand, O., Duffraisse, M., Triqueneaux, G., Safi, R., & Laudet, V. (2004). Molecular
cloning and developmental expression patterns of thyroid hormone receptors and T3 tar-
get genes in the turbot ( Scophtalmus maximus ) during post-embryonic development.
General and Comparative Endocrinology , 135 , 345-357.
Medina, M., Reperant, J., Ward, R., Rio, J. P., & Lemire, M. (1993). The primary visual
system of flatfish: An evolutionary perspective. Anatomy and Embryology , 187 , 167-191.
Meyer, D. L., von Seydlitz-Kurzbach, U., & Fiebig, E. (1981). Bilaterally asymmetrical up-
take of [14C]2-deoxyglucose by the octavo-lateralis complexes in flatfish. Cell and Tissue
Research , 214 , 659-662.
Miwa, S., Tagawa, M., Inui, Y., & Hirano, T. (1988). Thyroxine surge in metamorphosing
flounder larvae. General and Comparative Endocrinology , 70 , 158-163.
Munroe, T. A. (2005). Systematic diversity of the Pleuronectiformes. In R. N. Gibson (Ed.),
Flatfishes: Biology and exploitation (pp. 10-36). Oxford: Blackwell Publishing.
Murray, M. (1974). Axonal transport in the asymmetric optic axons of flatfish. Experimental
Neurology , 42 , 636-646.
Neave, D. A. (1985). The dorsal light reactions of larval and metamorphosing flatfish. Journal
of Fish Biology , 26 , 629-640.
Norman, J. R. (1934). A systematic monograph of the flatfishes (heterosomata). In
Psettodidae, Bothidae, Pleuronectidae , Vol. 1. London: British Museum of Natural History.
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