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90
lopods of the World. An annotated and illustrated catalogue of species of interest
to fisheries. FAO Fisheries Synopsis, 3, P.P. 1–277.
96. Rosa, R., et al. (2017). Cephalopod aquaculture—An overview of current status,
issues and prospects. Journal of the Marine Biological Association of the United
Kingdom, 97(02), P.P. 431-445.
97. Roura, A. et al. (2019). The combined effects of temperature and light on growth,
metabolic rate and ontogenetic development of common cuttlefish Sepia officinalis
(Linnaeus, 1758) early juveniles.
98. Royer J. (2002). Modélisation des stocks de céphalopodes de manche. Thèse.
Normandie. Université de Caen, P. 242.
99. Sanders, FK et Young, J.Z. (1940). Apprentissage et autres fonctions des
centres nerveux supérieurs de Sepia. J. Neurophysiol. 3, P.P. 501–526.
100. Santos, A.M.P. et al. (2013). Reproductive cycles of Sepia officinalis and Sepia
hierredda in the Portuguese coast : influence of environmental factors.
101. Sauer, W. et al. (2017). A review of early life history of cephalopod molluscs in
relation to fisheries management.
102. Schaeffel, F., Murphy, CJ et al. (1999). Hébergement à la seiche (Sepia officinalis). J. Exp. Biol. 202, P.P. 3127–3134.
103. Shulman, D.J. et al. (2002). Effects of hypoxia on embryos of the squid Loligo
opalescens.
104. Smith, J. et al. (2020). Growth and development of juvenile common cuttlefish
(Sepia officinalis) in captivity.
105. Smith, J.R. et al. (2010). Effects of temperature on embryonic development of
the European cuttlefish Sepia officinalis.
106. Smith, J.R. et al. (2012). Environmental effects on cuttlefish Sepia officinalis
(Mollusca : Cephalopoda) hatchling growth and survival.
107. Sykes, A. V., Koueta, N., et al. (2014b). Historical Review of Cephalopods
Culture. Cephalopod culture, Chap4. P. 492.
90
