Comparison of Two Techniques for Counts of Antral Follicles Larger than 4 mm in Slaughtered Heifers

  • Ingrid Josselyn Loor Mendoza Graduate Institute: Master in Veterinary Medicine. Mention in Health and Reproduction in Productive Species, Technical University of Manabí, Ecuador. https://orcid.org/0000-0003-1764-7954
  • Juan José Zambrano Graduate Institute: Master in Veterinary Medicine. Mention in Health and Reproduction in Productive Species, Technical University of Manabí, Ecuador and Veterinary Medicine Degree, Technical University of Manabí, Ecuador. https://orcid.org/0000-0003-2635-781X
  • Andrés Santiago Jácome Aucay Career of Veterinary Medicine, Faculty of Agricultural Sciences, University of Cuenca, Ecuador. https://orcid.org/0000-0001-9854-007X
  • Jorge Bolívar Dutan Sanango Career of Veterinary Medicine, Faculty of Agricultural Sciences, University of Cuenca, Ecuador. http://orcid.org/0000-0002-8741-9028
  • Luis Eduardo Ayala Guanga Career of Veterinary Medicine, Faculty of Agricultural Sciences, University of Cuenca, Ecuador. https://orcid.org/0000-0002-3141-827X

Abstract

Aim. To compare the efficiency of the ultrasound and direct visual techniques for antral follicle counts, and the morphological characteristics of the ovaries of slaughtered heifers.

Methods: A number of 102 ovary pairs from crossbred Holstein heifers collected postmortem were included. The study used the ultrasound and direct visual techniques to determine the size and weight of the ovaries, luteal body, and the number of <4 mm >4 mm antral follicles. A simple analysis of variance and the Tukey test at 5% were performed to compare the means of the variables pooled by phase of the estrus cycle and follicular wave. A two-way analysis of variance was performed to compare the two techniques and location of the ovarian structures (RO and LO). Additionally, the Pearson test was conducted to establish the correlation between the techniques.

Results: The study found that the right ovary (RO) weighed 3.21 g more than the left ovary (LO). Besides, 86.27% of animals presented luteal body (LB) with a mean weight of 3.38 g. The size of ovaries, (LB), and > 4 mm antral follicle counts (AFC) performed through direct visual (Vis) and ultrasound (US) techniques were similar (P>0.05), with a high and significant correlation (r=0.75; P<0.001). However, the <4 mm AFC showed statistically significant differences (P<0.05) between the techniques, whereas the correlation was low and non-significant.

Conclusion: Ultrasound is a highly efficient tool to assess > 4 mm ovarian structures. However, the correct determination of smaller structures will depend on other additional factors.

Keywords: Echograph, ovaries, follicles, luteal body, cattle (Source: DeCS)

Downloads

Download data is not yet available.

References

Adams, G. P., & Singh, J. (2014). Ovarian Follicular and Luteal Dynamics in Cattle. In Bovine Reproduction. https://doi.org/10.1002/9781118833971.ch24

Alba Gómez, L., Rodríguez Galindo, A., Gómez Palmero, A., & Silveira Prado, E. (2006). Tamaño y forma de los Ovarios y del Cérvix De Hembras Cebu De Cuba Y Sus Relaciones Con La Eficiencia Reproductiva (Size and shape of the ovaries and cervix of female zebu from cuba and their relationship with the reproductive efficiency). Redvet, 7(3), 1-12. https://www.redalyc.org/pdf/636/63612698005.pdf

Alward, K. J., & Bohlen, J. F. (2020). Overview of Anti-Müllerian hormone (AMH) and association with fertility in female cattle. Reproduction in Domestic Animals, 55(1), 3-10. https://doi.org/10.1111/rda.13583

Ayala, L.E.1; Pesantez, J.L1; Rodas, E.R.1; Dután, J.B.1; Calle, G.R.1; Murillo, Y.A.1; Vázquez, J.M.1; Nieto, P.E.1; Ortega, V. V., & y Samaniego, J. X. 2. (2019). Dinámica folicular de vaquillas Criollas al pastoreo en el altiplano ecuatoriano. Archivos de Zootecnia, 68(262), 186-192. https://dialnet.unirioja.es/servlet/articulo?codigo=6947628

Ayala, L., Pesántez, J., Rodas, E., Méndez, S., Soria, M., Torres, S., Váquez, J., & Pesántez, E. (2017). Tamaño del folículo ovulatorio, cuerpo lúteo y progesterona sanguínea en vaquillas receptoras de embriones de tres razas en pastoreo en Ecuador. Rev. Prod. Anim., 2(2), 29. http://scielo.sld.cu/scielo.php?pid=S222479202017000200009&script=sci_arttext&tlng=pt

Bó, G. A., & Mapletoft, R. J. (2014). Historical perspectives and recent research on superovulation in cattle. Theriogenology, 81(1), 38-48. https://doi.org/10.1016/j.theriogenology.2013.09.020

Colazo, M., & Kastelic, J. (2014). Aspectos básicos y aplicados del uso de la ultrasonografía en el manejo reproductivo del ganado bovino. Theriogenology, 81(3), 8-10. https://doi.org/10.13140/2.1.2008.9288

Condo Plaza, L., Reyes Silva, F., Larrea Izurieta, C., & Marini, P. (2015). Estado fisiológico de los ovarios en bovinos en el Cantón Morona Santiago. Revista Amazónica Ciencia y Tecnología, 4(2), 119-130. https://dialnet.unirioja.es/servlet/articulo?codigo=5292890

Crane, M. B., & Muirhead, T. L. (2020). Evaluation of ovarian volume by transrectal ultrasonography in cattle; affect of the day of the estrous cycle and validation of a method of subtracting of corpora lutea and follicle volume. Animal Reproduction Science, 214, 106302. https://doi.org/10.1016/j.anireprosci.2020.106302

Cushman, R. A., Allan, M. F., Kuehn, L. A., Snelling, W. M., Cupp, A. S., & Freetly, H. C. (2009). Evaluation of antral follicle count and ovarian morphology in crossbred beef cows: Investigation of influence of stage of the estrous cycle, age, and birth weight. Journal of animal science, 87(6), 1971-1980. https://doi.org/10.2527/jas.2008-1728

Díez Bru, N. (1992). Principios básicos de la ecografía. Clínica Veterinaria de Pequeños Animales, 12(3), 0138-0147.

Ginther, O. J. (2014). How ultrasound technologies have expanded and revolutionized research in reproduction in large animals. Theriogenology, 81(1), 112-125. https://doi.org/10.1016/j.theriogenology.2013.09.007

Ginther, O. J. (2016). The theory of follicle selection in cattle. Domestic Animal Endocrinology, 57, 85-99. https://doi.org/10.1016/j.domaniend.2016.06.002

Gómez-Seco, C., Alegre, B., Martínez-Pastor, F., Prieto, J. G., González-Montaña, J. R., Alonso, M. E., & Domínguez, J. C. (2017). Evolution of the corpus luteum volume determined ultrasonographically and its relation to the plasma progesterone concentration after artificial insemination in pregnant and non-pregnant dairy cows. Veterinary Research Communications, 41(3), 183-188. https://doi.org/10.1007/s11259-017-9685-x

Gómez, A., Carbajal, G., Fuentes, M., & Viñoles, C. (2017). Detection of follicles in ultrasound videos of bovine ovaries. Lecture Notes in Computer Science (Including Subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 10125 LNCS, 352-359. https://doi.org/10.1007/978-3-319-52277-7_43

González T, M., De La Rosa T, E., & Mendoza M, C. (2017). Morfometría macroscópica del cuerpo lúteo de vacas cebú gestantes y no gestantes en el trópico colombiano. Revista Colombiana de Ciencia Animal, 9(2), 190. https://doi.org/10.24188/recia.v9.n2.2017.556

Ireland, J. ., Ward, F., Jimenez-Krassel, F., Ireland, J. L. H., Smith, G. W., Lonergan, P., & Evans, A. C. O. (2007). Follicle numbers are highly repeatable within individual animals but are inversely correlated with FSH concentrations and the proportion of good-quality embryos after ovarian stimulation in cattle. Human Reproduction, 22(6), 1687-1695. https://doi.org/10.1093/humrep/dem071

Ireland, J. J. A., Smith, G. W. B., Scheetz, D. A., & Folger, J. K. A. (2011). Does size matter in females? An overview of the impact of the high variation in the ovarian reserve on ovarian function and fertility, utility of anti-Mu¨llerian hormone as a diagnostic marker for fertility and causes of variation in the ovarian reserve i. 23(2), 1-14. https://doi.org/10.1071/RD10226

Perea, F. P., González Fernández, R., Cruz, R., Soto Belloso, E., Rincón Urdaneta, E., González Stagnaro, C., & Villamediana, P. (1998). Evaluación ultrasonográfica de la dinámica folicular en vacas y en novillas mestizas.

Perry, G. A., & Cushman, R. A. (2016). Invited Review: Use of ultrasonography to make reproductive management decisions. Professional Animal Scientist, 32(2), 154-161. https://doi.org/10.15232/pas.2015-01446

Requelme, N., & Bonifaz, N. (2012). Caracterización de Sistemas de producción Lechera de Ecuador. La Granja, 15(1). https://www.redalyc.org/pdf/4760/476047399006.pdf

Rico, C., Médigue, C., Fabre, S., Jarrier, P., Bontoux, M., Clément, F., & Monniaux, D. (2011). Regulation of anti-Müllerian hormone production in the cow: a multiscale study at endocrine, ovarian, follicular, and granulosa cell levels. Biology of reproduction, 84(3), 560-571. https://doi.org/10.1095/biolreprod.110.088187

Singh, J., Domínguez, M., Jaiswal, R., & Adams, G. P. (2004). A simple ultrasound test to predict the superstimulatory response in cattle. Theriogenology, 62(1-2), 227-243. https://doi.org/10.1016/j.theriogenology.2003.09.020

Song, X., Bokkers, E. A. M., van Mourik, S., Groot Koerkamp, P. W. G., & van der Tol, P. P. J. (2019). Automated body condition scoring of dairy cows using 3-dimensional feature extraction from multiple body regions. Journal of Dairy Science, 102(5), 4294-4308. https://doi.org/10.3168/jds.2018-15238

Webb, R., Garnsworthy, P., Gong, J., & Armstrong, D. (2004). Control of follicular growth: Local interactions and nutritional influences. Journal of Animal Science, 82, 229-239. https://doi.org/10.2527/2004.8213

Zduńczyk, S., Janowski, T., Raś, A., & Barański, W. (2009). Accuracy of ultrasonography and rectal palpation in the diagnosis of silent heat in cows compared to plasma progesterone concentration. Bulletin of the Veterinary Institute in Pulawy, 53(3), 407-410. https://www.researchgate.net/publication/287021734_Accuracy_of_ultrasonography_and_rectal_palpation_in_the_diagnosis_of_silent_heat_in_cows_compared_to_plasma_progesterone_concentration

Published
2021-12-18
How to Cite
Loor Mendoza, I., Zambrano, J., Jácome Aucay, A., Dutan Sanango, J., & Ayala Guanga, L. (2021). Comparison of Two Techniques for Counts of Antral Follicles Larger than 4 mm in Slaughtered Heifers. Revista De Producción Animal, 33(3). Retrieved from https://revistas.reduc.edu.cu/index.php/rpa/article/view/e4003
Section
Genética y Reproducción