The Impact of Vibration of Different Frequencies on the Body of Broiler Chickens in Industrial Keeping Conditions
محورهای موضوعی :Lyudmila K. Buslovskaya 1 , Alexey Yu. Kovtunenko 2 , Yulia P. Ryzhkova 3 , Olga N. Bykanova 4
1 - Federal State Autonomous Educational Institution of Higher Education «Belgorod National Research University» Institute of Pedagogy
2 - Federal State Autonomous Educational Institution of Higher Education «Belgorod National Research University» Institute of Pedagogy
3 - Federal State Autonomous Educational Institution of Higher Education «Belgorod National Research University» Institute of Pedagogy
4 - Federal State Autonomous Educational Institution of Higher Education «Belgorod National Research University» Institute of Pedagogy
کلید واژه: Stress, broiler chickens, Adaptation, Vibration, Leukogram, Leukocyte indices,
چکیده مقاله :
This article studies the effect of vibration of different frequencies on the body of Hubbard F15 broiler chickens. The analysis of changes in leukogram parameters, leukocyte indices found that 8 hours after exposure to vibration with frequencies of oscillatory movements of 140 and 160 per minute, the stage of stress anxiety develops, passing after 24 hours into the stage of resistance. Vibration action with a frequency of 120 vibrational movements per minute does not cause deviations in leukogram parameters characteristic of a stress response and is a subthreshold stress effect.
1.John, A., Oluwafemi, R. A., 2019, Hematology and Serum Biochemical Indices of Growing Rabbits Fed Diet Supplemented with Different Level of Indigofera Zollingeriana Leaf Meal, Progress in Chemical and Biochemical Research, 2(4), 170-177.
2. Rezki S., dan Pawarti., 2014. Pengaruh pH Plak Terhadap Angka Kebersihan Gigi Dan Angka Karies Gigi Anak Di Klinik Pelayanan Asuhan Poltekkes Pontianak Tahun 2013. ODONTO Dental Journal. 1(2), 13-17.
3. John A., 2019. Effect of Feeding Different Levels of Luffa aegyptiaca Extracts on the Growth Performance of Broiler Chicken Fed Corn-Soya Meal Diet. International Journal of Advanced Biological and Biomedical Research. 7(4), 287-297.
4. Savitri G., Primarti R., Gartika M., 2017. Hubungan frekuensi asupan minuman manis dengan akumulasi plak pada anak. J Ked Gi. 29(2), 2-5.
5. John A., 2019. Effects of Dried Centella Asiatica Leaf Meal as a Herbal Feed Additive on the Growth Performance, Heamatology and Serum Biochemistry of Broiler Chicken. International Journal of Advanced Biological and Biomedical Research. 7 (3), 225-236.
6. John A., 2019. Heamatology, Serum Biochemistry, Relative Organ Weight and Bacteria Count of Broiler Chicken Given Different Levels of Luffa Aegyptiaca Leaf Extracts. International Journal of Advanced Biological and Biomedical Research. 7(4), 370-380.
7. Sirat N., 2014. Pengaruh Aplikasi Topikal Dengan Larutan NaF dan SnF2 Dalam Pencegahan Karies Gigi. Journal Kesehatan Gigi. 2(2), 222-231.
8. Karaarslan E.S., Aytac F., Cadirci B.H., Agaccioglu M., Tastan E., Yilmaz G., Ozkocak B.B.C., 2018. Evaluation of the Effects of Different Remineralizing agents on Streptococcus mutans Biofilm Adhesion. Journal of Adhesion Science and Technology. 32(23), 2617-2627.
9. Sriyono, Widiyanti N., 2009. Ilmu Kedokteran Pencegahan, Medika FK UGM., Yogyakarta. pp. 31-40.
10. Kidd E.A.M., Bechal S.J., 2013. Dasar-Dasar Karies Penyakit dan Penanggulangan, EGC., Jakarta Hal. 98-118.
11. Guswan G., Yandi S., 2017. Hubungan Pengetahuan Dan Tindakan Ibu Terhadap Indeks Plak Anak Tk Ibnu Akbar Jalan Parak Pegambiran Kecamatan Lubuk Begalung Padang. Jurnal Kedokteran Gigi. 29(4), 7-9.
12. Tedjosasongko U., Pradopo S., dan Nuraini P., 2008. Perubahan Oral Flora Dan Sensitifitas Karies Gigi Anak Setelah Pengulasan Fluoride Secara Topikal. J Penelit Med Eksakta. 7(1), 9-15.
13. Al-Batayneh O., 2009. The Clinical Applications of Tooth Mousse TM and CPP-ACP Products in Caries Prevention: evidence-based recommendations. Smile Dental Journal. 4(1), 8-12.
14. Bollido M.E., 2019. Growth Performance and Profitability of Broilers with Vermi Meal on Fermented Ration Under Two Management Systems. International Journal of Advanced Biological and Biomedical Research. 7(3), 274-286.
15. Sysa, A., Labai, M., Kvasyuk, E., Ivuts, U., Khanchevskii, M., 2019, Influence of arabinofuranosylcytosine-5`-monophosphate and its emoxipin salt on viability and functional status of peripheral blood lymphocytes subpopulations, Progress in Chemical and Biochemical Research, 2(4) 178-184.
16. Andrini M., Titien I., Rantinah S., 2013, Pengaruh Aplikasi Topikal Casein Phosphopeptide Amorphous Calcium Phosphate (CPP-ACP) Terhadap Pertumbuhan Stereptococcus Alpha dan Akumulasi Plak Gigi. J Ked Gi. 4(4), 268-272.
17. Ukwubile, C. A., Ikpefan, E. O., Bingari, M. S., Tam, L., 2019, Acute and subchronic toxicity profiles of Melastomastrum capitatum (Vahl) Fern. (Melastomataceae) root aqueous extract in Swiss albino mice, Progress in Chemical and Biochemical Research, 2 (2) 74-83.
18. Abida, Tauquir Alam, M., Asif, M., 2020, Study of Some Hyndantion Derivatives as Anticonvulsant Agents Progress in Chemical and Biochemical Research, 3 (2) 93-104.
19. Motevalli, S. M., Mirzajani, F., 2019, Biotic / Abiotic Stress Influences on Human Epidermal Keratinocyte Cells, Progress in Chemical and Biochemical Research, 2(2), 53-58.
20. Modi, B., Kumari Shah, K., Shrestha, J., Shrestha, P., Basnet, A., Tiwari, I., Prasad Aryal, S., 2021, Morphology, Biological Activity, Chemical Composition, and Medicinal Value of Tinospora Cordifolia (willd.) Miers Advanced Journal of Chemistry-Section B, 3 (1) 36-54.
21. Suarez-Lopez J., Pi-Avila J., Machado-Martinez R., Quevedo-Benitez Y., Abdo-Cuza A., 2021, Relationship between Systemic and Cerebral Perfusion in Neurocritical Patients, GMJ Medicine, 2(2), 62-65.
22. Shahmoradi M., Askaripour M., Rajabi S., Dzigandzli G., 2021 Beneficial Effects of Curcuminon on Rats with Polycystic Ovary Syndrome: Evaluation of the Gene Expression of GLUT4, Erα and Insulin Resistance, GMJ Medicine, 2(1), 1-8.
23. Shalbafan M., Rezaei Behbehani G., Ghasemzadeh H., 2019, Study of Interaction of Human Serum Albumin with Doxorubicin (Anti-Cancer Drug) by Docking Simulation', Chemical Methodologies, 3(3), 348-353.