Growth and Body Composition of Spiny Lobster (Panulirus homarus) Reared with Short-Term Fasting
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[1] D. Lestari,et al. UJI PARAMETER FISIKA, KIMIA DAN BIOLOGI PADA BUDIDAYA LOBSTER AIR LAUT DI PANTAI EKAS KABUPATEN LOMBOK TIMUR , 2022, Indonesian Journal Of Aquaculture Medium.
[2] A. Wardhana,et al. KESESUAIAN LOKASI KERAMBA JARING APUNG DILIHAT DARI KONDISI HIDROGRAFI DI DESA GELUNG KECAMATAN PANARUKAN KABUPATEN SITUBONDO , 2022, AGRIBIOS.
[3] Ardana Kurniaji,et al. PERFORMA PERTUMBUHAN DAN KUALITAS AIR PADA PENDEDERAN LOBSTER PASIR Panulirus homarus YANG DIPELIHARA DENGAN SISTEM RESIRKULASI , 2022, Jurnal Ilmu dan Teknologi Kelautan Tropis.
[4] I. Lund,et al. Interactions of temperature and dietary composition on juvenile European lobster (Homarus gammarus, L.) energy metabolism and performance. , 2021, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[5] Damis Damis. PENENTUAN KESESUAIAN LOKASI BUDIDAYA LOBSTER MENGGUNAKAN APLIKASI SIG DI WILAYAH PESISIR PUNTONDO , 2021, Jurnal Sains dan Teknologi Perikanan.
[6] Eddy Supriyono,et al. KELANGSUNGAN HIDUP LOBSTER PASIR Panulirus homarus YANG DIPELIHARA PADA SISTEM RESIRKULASI , 2020, Clarias : Jurnal Perikanan Air Tawar.
[7] L. L. López Greco,et al. Effects of intermittent starvation on the survival, growth, and nutritional status of the freshwater prawn Macrobrachium borellii Nobili, 1896 (Decapoda: Caridea: Palaemonidae) , 2020 .
[8] Shikder Saiful Islam,et al. Effect of time-restricted feeding and refeeding regimes on compensatory growth, body composition, and feed utilization in prawn (Macrobrachium rosenbergii) culture system , 2020, Journal of Applied Aquaculture.
[9] Ikmalia Amali,et al. Growth Performance of Cultivated Spiny Lobster (Panulirus homarus, Linnaeus 1758) in Tuban, East Java, Indonesia , 2020, Egyptian Journal of Aquatic Biology and Fisheries.
[10] W. Manalu,et al. THE EFFECTS OF THYROXINE HORMONE ON GONADAL MATURATION AND GROWTH OF MALE SPINY LOBSTER (PANULIRUS HOMARUS) , 2020 .
[11] U. Hasanah,et al. PENGARUH LAJU PEMUASAAN SECARA PERIODIK TERHADAP PERTUMBUHAN KELANGSUNGAN HIDUP DAN KECERAHAN WARNA IKAN BADUT AMPHIPRION OCELLARIS , 2020 .
[12] S. A. Adha Taridala,et al. Income and cost efficiency of lobster farming in Soropia, Southeast Sulawesi, Indonesia , 2019, IOP Conference Series: Earth and Environment.
[13] S. Peixoto,et al. Compensatory growth and digestive enzyme activity of Litopenaeus vannamei submitted to feeding restriction in a biofloc system , 2019, Aquaculture Research.
[14] J. Dick,et al. The Effect of Temperature on the Physiological Condition and Immune-Capacity of European Lobsters (Homarus gammarus) During Long-Term Starvation , 2019, Front. Mar. Sci..
[15] Mevlüt Aktaş,et al. Could the growth of Litopenaeus vannamei be compensated by long-term cyclic feed deprivation and following refeeding? , 2018, Journal of Applied Aquaculture.
[16] Waskito Utomo. PENGARUH PEMUASAAN UDANG GALAH (Macrobrachium rosenbergii)SECARA PERIODIK TERHADAP PERTUMBUHAN DAN EFISIENSI PAKAN , 2018 .
[17] Pinandoyo,et al. PERFORMA PERTUMBUHAN DAN KELULUSHIDUPAN IKAN NILA GIFT (Oreochromis niloticus) YANG DIBERI JUMLAH PAKAN YANG BERBEDA , 2018 .
[18] H. Saha,et al. ADVANCED FARMING SYSTEMS IN AQUACULTURE: STRATEGIES TO ENHANCE THE PRODUCTION , 2017 .
[19] C. Zeng,et al. Cannibalism of Decapod Crustaceans and Implications for Their Aquaculture: A Review of its Prevalence, Influencing Factors, and Mitigating Methods , 2017 .
[20] E. Supriyono,et al. TOTAL HEMOCYTES, GLUCOSE HEMOLYMPH, AND PRODUCTION PERFORMANCE OF SPINY LOBSTER Panulirus homarus CULTURED IN THE INDIVIDUAL COMPARTMENTS SYSTEM , 2016 .
[21] E. Supriyono,et al. The Stress and Growth Responses of Spinny Lobster Panulirus Homarus Reared in Recirculation System Equipped by PVC Shelter , 2016 .
[22] L. L. Greco,et al. Effect of attractant stimuli, starvation period and food availability on digestive enzymes in the redclaw crayfish Cherax quadricarinatus (Parastacidae) , 2014 .
[23] Siti Hudaidah,et al. Pengaruh Penambahan Probiotik pada Pakan Dengan Dosis Berbeda Terhadap Pertumbuhan, Kelulushidupan, Efisiensi Pakan dan Retensi Protein Ikan Patin (Pangasius hypophthalmus) , 2013 .
[24] Y. Mazlum,et al. Effects of Feeding Interval on Growth, Survival and Body Composition of Narrow-Clawed Crayfish, Astacus leptodactylus Eschscholtz, 1823 Juveniles , 2011 .
[25] G. Yepiz‐Plascencia,et al. Usage of energy reserves in crustaceans during starvation: status and future directions. , 2006, Insect biochemistry and molecular biology.
[26] D. Johnston,et al. Digestive enzyme profiles reveal digestive capacity and potential energy sources in fed and starved spiny lobster (Jasus edwardsii) phyllosoma larvae. , 2004, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[27] Refangga Putra Nugraha. PENAMBAHAN KALSIUM KARBONAT (CaCO3) YANG BERBEDA DALAM PAKAN TERHADAP LAJU PERTUMBUHAN SPESIFIK DAN FEED CONVERTION RATIO (FCR) PADA UDANG VANAME (Litopenaeus vannamei) YANG DIPELIHARA PADA SALINITAS BERBEDA , 2019 .
[28] Q. Fitzgibbon,et al. Respiratory metabolism of juvenile spiny lobster ( Sagmariasus verreauxi ) under different feeding conditions , 2019 .
[29] Xiaotao Lin,et al. Effect of cyclical feeding on compensatory growth, nitrogen and phosphorus budgets in juvenile Litopenaeus vannamei , 2016 .
[30] A. Zaidy. Pendayagunaan kalsium media perairan dalam proses ganti kulit dan konsekuensinya bagi pertumbuhan udang galah Macrobrachium rosenbergii de Man , 2007 .
[31] J. Shields,et al. Primary culture of hemocytes from the Caribbean spiny lobster, Panulirus argus, and their susceptibility to Panulirus argus Virus 1 (PaV1). , 2007, Journal of invertebrate pathology.
[32] Lixin Wu,et al. THE EFFECT OF PREVIOUS FEEDING REGIMES ON THE COMPENSATORY GROWTH RESPONSE IN CHINESE SHRIMP, FENNEROPENAEUS CHINENSIS , 2001 .