The features of the morphology of the heart of Clarias gariepinus (Siluriformes, Clariidae)

Belão, T. C., Leite, C. A., Florindo, L. H., Kalinin, A. L., & Rantin, F. T. (2011). Cardiorespiratory responses to hypoxia in the African catfish, Clarias gariepinus (Burchell 1822), an air-breathing fish. Journal of Comparative Physiology: B, Biochemical, Systemic, and Environmental Physiology, 181(7), 905–916.

Ben-Shachar, G., Arcilla, R. A., Lucas, R. V., & Manasek, F. J. (1985). Ventricular trabeculations in the chick embryo heart and their contribution to ventricular and muscular septal development. Circulation Research, 57(5), 759–766.

Chan, J. T. H., Kadri, S., Köllner, B., Rebl, A., & Korytář, T. (2022). RNA-Seq of single fish cells – seeking out the leukocytes mediating immunity in teleost fishes. Frontiers in Immunology, 13, 798712.

Dukhnytskyi, V. B., Horalskyi, L. P., Sokolyuk, V. M., Gutyj, B. V., Ishchenko, V. D., Ligomina, І. P., Kolesnik, N. L., & Dzhmil, V. I. (2024). Morphofunctional changes in the internal organs of laying hens affected by chronic thiamethoxam intoxication. Regulatory Mechanisms in Biosystems, 15(3), 578–586.

Dunaievska, O. F., Horalskyi, L. P., Sokulskiy, I. M., Radzikhovskyi, M. L., & Gutyj, B. V. (2023). Influence of protein-vitamin mineral supplements on the splenic morphometric parameters of quails. Regulatory Mechanisms in Biosystems, 14(2), 242–247.

Dzau, V. J., Antman, E. M., Black, H. R., Hayes, D. L., Manson, J. E., Plutzky, J., Popma, J. J., & Stevenson, W. (2006). The cardiovascular disease continuum validated: Clinical evidence of improved patient outcomes: Part I: Pathophysiology and clinical trial evidence (risk factors through stable coronary artery disease). Circulation, 114(25), 2850–2870.

Ghedotti, M. J., DeKay, H. M., Maile, A. J., Smith, W. L., & Davis, M. P. (2021). Anatomy and evolution of bioluminescent organs in the slimeheads (Teleostei: Trachichthyidae). Journal of Morphology, 282(6), 820–832.

Goralskyi, L., Ragulya, M., Sokulskyi, I., Kolesnik, N., & Goralska, I. (2021). Morphological and morphometrical characteristics of cattle heart structure. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies. Series: Veterinary Sciences, 23(103), 145–151.

Gould, R. A., Aboulmouna, L. M., Varner, J. D., & Butcher, J. T. (2013). Hierarchical approaches for systems modeling in cardiac development. Wiley Interdisciplinary Reviews: Systems Biology and Medicine, 5(3), 289–305.

Grant, K. R. (2015). Fish hematology and associated disorders. The Veterinary Clinics of North America: Exotic Animal Practice, 18(1), 83–103.

Hashemi, S. M. B., Kaveh, S., Abedi, E., & Phimolsiripol, Y. (2023). Polysaccharide-based edible films/coatings for the preservation of meat and fish products: Emphasis on incorporation of lipid-based nanosystems loaded with bioactive compounds. Foods, 12(17), 3268.

Hecht, T., Oellermann, L., & Verheust, L. (1996). Perspectives on clarid culture in Africa. The Biology and Culture of Catfishes, 9, 197–206.

Hnatiuk, M. S., & Slabyi, O. B. (2016). Morfometrychna otsinka osoblyvostey remodeliuvannia kamer lehenevoho sertsia z riznymy typamy krovopostachannia [Morphometric assessment of the remodeling features of the pulmonary heart chambers with different types of blood supply]. Zdobutky Kliichnoyi i Eksperymentalnoyi Medytsyny, 1, 17–20 (in Ukrainian).

Hnatiuk, M. S., Slabyi, O. B., & Tatarchuk, L. V. (2016). Yaderno-tsytoplazmatychni vidnoshennia u kardiomiotsytakh ta endoteliotsytakh shlunochkiv lehenevoho sertsia [Nuclear-cytoplasmic relationships in cardiomyocytes and endothelial cells of the ventricles in cor pulmonale]. Klinichna Anatomiia ta Operatyvna Khirurhiia, 15(55), 67–70 (in Ukrainian).

Hnatiuk, M. S., Slabyi, O. B., & Tatarchuk, L. V. (2017). Kilkisnyi morfolohichnyi analiz deiakykh ultrastruktur skorotlyvykh kardiomiotsytiv pravoho shlunochka lehenevoho sertsia [Quantitative morphological analysis of some ultrastructures of contractile cardiomyocytes of the right ventricle in cor pulmonale]. Visnyk Naukovykh Doslidzhen, 88, 119–123 (in Ukrainian).

Hnatiuk, M. S., Slabyi, O. B., & Tatarchuk, L. V. (2017). Prostorova kharakterystyka kamer sertsia doslidnykh tvaryn z riznymy typamy vehetatyvnoyi rehuliatsiyi [Spatial characteristics of heart chambers of experimental animals with different types of autonomic regulation]. Biomedical and Biosocial Anthropology, 28, 35–39 (in Ukrainian).

Horalskyi, L. P., Demus, N. V., Sokulskyi, I. M., Gutyj, B. V., Kolesnik, N. L., Pavliuchenko, O. V., & Horalska, I. Y. (2023). Species specifics of morphology of the liver of the fishes of the Cyprinidae family. Regulatory Mechanisms in Biosystems, 14(2), 234–241.

Horalskyi, L. P., Khomych, V. T. & Kononskyi, O. I. (2019). Osnovy histolohichnoyi tekhniky i morfofunktsionalni metody doslidzhennia u normi ta pry patolohiyi [Basics of histological technique and morphofunctional methods of research in normal and pathology]. Polissia, Zhytomyr (in Ukrainian).

Horalskyi, L. P., Ragulya, M. R., Kolesnik, N. L., Sokulskyi, I. M., & Gutyj, B. V. (2024). Peculiarities of macro- and cytometric assessment of morphological structures of the domestic pig heart. Regulatory Mechanisms in Biosystems, 15(1), 55–61.

Horalskyi, L. P., Ragulya, М. R., Glukhova, N. M., Sokulskiy, I. M., Kolesnik, N. L., Dunaievska, O. F., Gutyj, B. V., & Goralska, I. Y. (2022). Morphology and specifics of morphometry of lungs and myocardium of heart ventricles of cattle, sheep and horses. Regulatory Mechanisms in Biosystems, 13(1), 53–59.

Horalskyi, L. P., Rahulia, M. R., Kostiuk, V. K., & Sokulskyi, I. M. (2024). Vyznachennia obiemu kardiomiotsytiv ta yikh yaderno-tsytoplazmatychnoho vidnoshennia [Determination of cardiomyocyte volume and their nuclear-cytoplasmic ratio]. Naukovo-Metodychnyi Tsentr Vyshchoyi ta Fakhovoyi Peredvyshchoyi Osvity, Kyiv (in Ukrainian).

Horalskyi, L. P., Sokulskiy, I. M., Kolesnik, N. L., Gutyj, B. V., Romaniuk, R. K., Pavliuchenko, O. V., Shevchuk, S. Y., & Maksymenko, Y. V. (2024). Morphology and morphometric features of the cerebellum of poultry. Regulatory Mechanisms in Biosystems, 15(4), 679–687.

Horalskyi, L., Ragulya, M., Kolesnik, N., & Sokulskyi, I. (2023). Peculiarities of organometry and morphoarchitectonics of the heart of the domestic ram (Ovis aries L., 1758). Ukrainian Journal of Veterinary Sciences, 14(4), 40–56.

Horalskyi, L., Sokulskyi, I., Ragulya, M., Kolesnik, N., & Ordin, Y. (2023). Morphology, organo- and histometric features of the heart and lungs of a sexually mature domestic dog (Canis lupus familiaris L., 1758). Scientific Horizons, 26(12), 9–21.

Juin, S. K., Sarkar, S., Maitra, S., & Nath, P. (2017). Effect of fish vitellogenin on the growth of juvenile catfish, Clarias gariepinus (Burchell, 1822). Aquaculture Reports, 7, 16–26.

Lawal, B. M., Adewole, H. A., & Olaleye, V. F. (2017). Digestibility study and nutrient re-evaluation in clarias gariepinus fed blood meal-rumen digesta blend diet. Notulae Scientia Biologicae, 9(3), 344–349.

Mahmoud, U. M., Mekkawy, I. A. A., Naguib, M., & Sayed, A. E. H. (2019). Silver nanoparticle-induced nephrotoxicity in Clarias gariepinus: Physio-histological biomarkers. Fish Physiology and Biochemistry, 45(6), 1895–1905.

Martins, B. O., Franco-Belussi, L., Siqueira, M. S., Fernandes, C. E., & Provete, D. B. (2021). The evolution of red blood cell shape in fishes. Journal of Evolutionary Biology, 34(3), 537–548.

Mbokane, E. M., & Moyo, N. A. G. (2022). Use of medicinal plants as feed additives in the diets of Mozambique tilapia (Oreochromis mossambicus) and the African Sharptooth catfish (Clarias gariepinus) in Southern Africa. Frontiers in Veterinary Science, 9, 1072369.

Melnyk, O. P., Kostiuk, V. V., & Shevchenko, P. H. (2008). Anatomiia ryb [Fish anatomy]. Tsentr Uchbovoyi Literatury, Kyiv (in Ukrainian).

Mits, I. R., Denefil, O. V., & Andriishyn, O. P. (2016). Morfolohichni zminy vnutrishnikh orhaniv u tvaryn riznoyi stati, yaki zaznaly khronichnoho stresu [Morphological changes of internal organs in animals of different sexes with chronic stress]. Visnyk Naukovykh Doslidzhen, 3, 107–110 (in Ukrainian).

Muller, J. F., & Marc, R. E. (1984). Three distinct morphological classes of receptors in fish olfactory organs. The Journal of Comparative Neurology, 222(4), 482–495.

Olson, K. R. (1991). Vasculature of the fish gill: anatomical correlates of physiological functions. Journal of Electron Microscopy Technique, 19(4), 389–405.

Rahulia, M., Horalskyi, L., Sokulskyi, I., & Kolesnik, N. (2023). Osoblyvosti morfoarkhitektoniky ta morfometrii sertsia krolia (Oryctolagus cuniculus L. 1758) [Features of morphoarchitectonics and morphometry of the rabbit heart (Oryctolagus cuniculus L. 1758)]. Ahrarnyi Visnyk Prychornomoria, 108, 51–62 (in Ukrainian).

Roobab, U., Fidalgo, L. G., Arshad, R. N., Khan, A. W., Zeng, X. A., Bhat, Z. F., Bekhit, A. E. A., Batool, Z., & Aadil, R. M. (2022). High-pressure processing of fish and shellfish products: Safety, quality, and research prospects. Comprehensive Reviews in Food Science and Food Safety, 21(4), 3297–3325.

Shevchenko, I. V. (2018). Morfolohichni osnovy morfohenezu sertsia u rannomu postnatalnomu rozvytku v normi [Morphological basis of cardiac morphogenesis in early postnatal development in the norm]. Visnyk Problem Biolohiyi i Medytsyny, 145, 340–344 (in Ukrainian).

Slabyi, O. B. (2016). Yaderno-tsytoplazmatychni vidnoshennia u kardiomiotsytakh ta endoteliotsytakh peredserd lehenevoho sertsia [Nuclear-cytoplasmic relationships in cardiomyocytes and endothelial cells in pulmonary cor pulmonale]. Zdobutky Klinichnoyi ta Eksperymentalnoyi Medytsyny, 4, 103–106 (in Ukrainian).

Slabyi, O. B., & Hnatiuk, M. S. (2016). Morfometrychna otsinka strukturnoyi perebudovy peredserd lehenevoho sertsia [Morphometric assessment of structural rearrangement of the atria in cor pulmonale]. Visnyk Naukovykh Doslidzhen, 1, 102–104 (in Ukrainian).

Song, W., & Song, J. (2012). Morphological structure and peripheral innervation of the lateral line system in the Siberian sturgeon (Acipenser baerii). Integrative Zoology, 7(1), 83–93.

Spaink, H. P., Jansen, H. J., & Dirks, R. P. (2014). Advances in genomics of bony fish. Briefings in Functional Genomics, 13(2), 144–156.

Stakhurska, I. O., & Pryshliak, A. M. (2014). Morfometrychna kharakterystyka kamer sertsia tvaryn riznoyi stati [Morphometric characteristics of heart chambers of animals of different sexes]. Visnyk Problem Biolohiyi i Medytsyny, 106, 269–272 (in Ukrainian).

Strauch, S. M., Wenzel, L. C., Bischoff, A., Dellwig, O., Klein, J., Schüch, A., Wasenitz, B., & Palm, H. W. (2018). Commercial African catfish (Clarias gariepinus) recirculating aquaculture systems: Assessment of element and energy pathways with special focus on the phosphorus cycle. Sustainability, 10(6), 1805.

Svendsen, M. B. S., Johansen, J. L., Bushnell, P. G., Skov, P. V., Norin, T., Domenici, P., Steffensen, J. F., & Abe, A. (2019). Are all bony fishes oxygen regulators? Evidence for oxygen regulation in a putative oxygen conformer, the swamp eel Synbranchus marmoratus. Journal of Fish Biology, 94(1), 178–182.

Truter, M., Hadfield, K. A., & Smit, N. J. (2023). Review of the metazoan parasites of the economically and ecologically important African sharptooth catfish Clarias gariepinus in Africa: Current status and novel records. Advances in Parasitology, 119, 65–222.

Ukagwu, J. I., Anyanwu, D. C., Offor, J. I., & Nduka, C. O. (2017). Comparative studies of nutrient composition of wild caught and pond reared African catfish, Clarias gariepinus. International Journal of Research in Applied, Natural and Social Sciences, 5(7), 63–68.

Victor, S., Nayak, V. M., & Rajasingh, R. (1999). Evolution of the ventricles. Texas Heart Institute Journal, 26(3), 168–176.

Vlasenko, R. P., & Kuzmenko, L. P. (2010). Zoolohiia khrebetnykh [Vertebrate zoology]. Vydavnytstvo Zhytomyrskoho Derzhavnoho Universytetu imeni Ivana Franka, Zhytomyr (in Ukrainian).

Weyl, O. L., Daga, V. S., Ellender, B. R., & Vitule, J. R. (2016). A review of Clarias gariepinus invasions in Brazil and South Africa. Journal of Fish Biology, 89(1), 386–402.

Yu, D., Wu, L., Regenstein, J. M., Jiang, Q., Yang, F., Xu, Y., & Xia, W. (2020). Recent advances in quality retention of non-frozen fish and fishery products: A review. Critical Reviews in Food Science and Nutrition, 60(10), 1747–1759.

Zadorozhnii, M. V. (2023). Osoblyvosti zahartuvannia molodi klariievoho soma (Clarias gariepinus) dlia vyroshchuvannia u pryrodnikh umovakh pivnochi Ukrayiny [Features of hardening of young Clarias gariepinus for cultivation in natural conditions of Northern Ukraine]. Tavriiskyi Naukovyi Visnyk, 132, 352–357 (in Ukrainian).

Zadorozhnii, M. V., & Bekh, V. V. (2024). Minimalno dopustymi temperatury pry vyroshchuvanni afrykanskoho klariievoho soma (Slarias gariepinus) [Minimum permissible temperatures for growing African Clarias catfish (Clarias gariepinus)]. Tavriiskyi Naukovyi Visnyk, 135, 232–238 (in Ukrainian).

Zadorozhnii, M., & Bekh, V. (2024). First experience of cultivating african catfish (Clarias gariepinus Burchell, 1822) under natural temperature conditions in water bodies of Polissiya of Ukraine. Ribogospodars’ka Nauka Ukrayiny, 67, 74–88.

Zhurenko, O., Karpovskiy, V., Danchuk, O., & Kravchenko-Dovga, Y. (2018). Тhe content of calcium and phosphorus in the blood of cows with a different tonus of the autonomic nervous system. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, Series: Veterinary Sciences, 20(92), 8–12.

Comments (0)

No login
gif