Vitality in Newborn Farm Animals: Adverse Factors, Physiological Responses, Pharmacological Therapies, and Physical Methods to Increase Neonate Vigor

被引:7
作者
Bienboire-Frosini, Cecile [1 ]
Muns, Ramon [2 ]
Marcet-Rius, Miriam [3 ]
Gazzano, Angelo [4 ]
Villanueva-Garcia, Dina [5 ]
Martinez-Burnes, Julio [6 ]
Dominguez-Oliva, Adriana [2 ,7 ]
Lezama-Garcia, Karina [7 ]
Casas-Alvarado, Alejandro [7 ]
Mota-Rojas, Daniel [7 ]
机构
[1] Res Inst Semiochem & Appl Ethol IRSEA, Dept Mol Biol & Chem Commun, F-84400 Apt, France
[2] Agrifood & Biosci Inst, Hillsborough BT 26 6DR, North Ireland
[3] Res Inst Semiochemistry & Appl Ethol IRSEA, Anim Behav & Welf Dept, F-84400 Apt, France
[4] Univ Pisa, Dept Vet Sci, I-56124 Pisa, Italy
[5] Hosp Infantil Mexico Dr Federico Gomez, Div Neonatol, Mexico City 06720, Mexico
[6] Univ Autonoma Tamaulipas, Fac Med Vet & Zootecnia, Victoria City 87000, Mexico
[7] Univ Autonoma Metropolitana, Neurophysiol Behav & Anim Welf Assessment, DPAA, Xochimilco Campus, Mexico City 04960, Mexico
来源
ANIMALS | 2023年 / 13卷 / 09期
关键词
domestic animals; vitality; MAS; shivering; BAT; meconium staining; BROWN ADIPOSE-TISSUE; PIGLET BIRTH-WEIGHT; REFLEX CUTANEOUS VASOCONSTRICTION; ENERGY-METABOLISM; BODY-TEMPERATURE; PREWEANING MORTALITY; IMMUNOGLOBULIN-G; COLOSTRUM INTAKE; LITTER SIZE; ORAL SUPPLEMENTATION;
D O I
10.3390/ani13091542
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
Vitality is a characteristic that in newborn animals demonstrates their vigor and their general state of health (heart rate, respiratory rate, skin color, time that they take to stand up) during the first hours of life. It can be measured by numerical scores based on some scales made for babies and then adapted for various animals. Vitality can be affected by several factors. The objective of this review is to analyze pharmacological and physical therapies used to increase vitality in newborn farm animals, as well as understand the factors affecting their vitality, such as hypoxia, depletion of glycogen, birth weight, dystocia, neurodevelopment, hypothermia, and finally, the physiological mechanism to achieve thermostability. It is essential to evaluate vitality in newborns because it can contribute to implementing interventions to reduce newborn mortality.Vitality is the vigor newborn animals exhibit during the first hours of life. It can be assessed by a numerical score, in which variables, such as heart rate, respiratory rate, mucous membranes' coloration, time the offspring took to stand up, and meconium staining, are monitored. Vitality can be affected by several factors, and therapies are used to increase it. This manuscript aims to review and analyze pharmacological and physical therapies used to increase vitality in newborn farm animals, as well as to understand the factors affecting this vitality, such as hypoxia, depletion of glycogen, birth weight, dystocia, neurodevelopment, hypothermia, and finally, the physiological mechanism to achieve thermostability. It has been concluded that assessing vitality immediately after birth is essential to determine the newborn's health and identify those that need medical intervention to minimize the deleterious effect of intrapartum asphyxia. Vitality assessment should be conducted by trained personnel and adequate equipment. Evaluating vitality could reduce long-term neonatal morbidity and mortality in domestic animals, even if it is sometimes difficult with the current organization of some farms. This review highlights the importance of increasing the number of stock people during the expected days of parturitions to reduce long-term neonatal morbidity and mortality, and thus, improve the farm's performance.
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页数:28
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共 200 条
[11]  
Baschat A., 2020, GABBES OBSTET NORMAL, P555
[12]   Do newborn domestic rabbits Oryctolagus cuniculus compete for thermally advantageous positions in the litter huddle? [J].
Bautista, Amando ;
Garcia-Torres, Esmeralda ;
Martinez-Gomez, Margarita ;
Hudson, Robyn .
BEHAVIORAL ECOLOGY AND SOCIOBIOLOGY, 2008, 62 (03) :331-339
[13]   Impact of piglet birth weight, birth order, and litter size on subsequent growth performance, carcass quality, muscle composition, and eating quality of pork [J].
Beaulieu, A. D. ;
Aalhus, J. L. ;
Williams, N. H. ;
Patience, J. F. .
JOURNAL OF ANIMAL SCIENCE, 2010, 88 (08) :2767-2778
[14]   Evaluation of the effects of oral colostrum supplementation during the first fourteen days on the health and performance of preweaned calves [J].
Berge, A. C. B. ;
Besser, T. E. ;
Moore, D. A. ;
Sischo, W. M. .
JOURNAL OF DAIRY SCIENCE, 2009, 92 (01) :286-295
[15]   Haemodynamic effects of prenatal caffeine on the cardiovascular transition in ventilated preterm lambs [J].
Binder-Heschl, Corinna ;
Crossley, Kelly ;
te Pas, Arjan ;
Polglase, Graeme ;
Blank, Douglas ;
Zahra, Valerie ;
Moxham, Alison ;
Rodgers, Karyn ;
Hooper, Stuart .
PLOS ONE, 2018, 13 (07)
[16]   Effect of intranasal oxygen administration on blood gas variables and outcome in neonatal calves with respiratory distress syndrome:: 20 cases (2004-2006) [J].
Bleul, Ulrich T. ;
Bircher, Barbara M. ;
Kaehn, Wolfgang K. .
JAVMA-JOURNAL OF THE AMERICAN VETERINARY MEDICAL ASSOCIATION, 2008, 233 (02) :289-293
[17]   The stress-induced hyperthermia paradigm as a physiological animal model for anxiety: A review of pharmacological and genetic studies in the mouse [J].
Bouwknecht, J. Adriaan ;
Olivier, Berend ;
Paylor, Richard E. .
NEUROSCIENCE AND BIOBEHAVIORAL REVIEWS, 2007, 31 (01) :41-59
[18]   Utility of the 5-Minute Apgar Score as a Research Endpoint [J].
Bovbjerg, Marit L. ;
Dissanayake, Mekhala V. ;
Cheyney, Melissa ;
Brown, Jennifer ;
Snowden, Jonathan M. .
AMERICAN JOURNAL OF EPIDEMIOLOGY, 2019, 188 (09) :1695-1704
[19]   Prevalence and risk factors associated with failure of transfer of passive immunity in spring born beef suckler calves in Great Britain [J].
Bragg, Rachel ;
Macrae, Alastair ;
Lycett, Samantha ;
Burrough, Elizabeth ;
Russell, Geraldine ;
Corbishley, Alexander .
PREVENTIVE VETERINARY MEDICINE, 2020, 181
[20]  
BUNGER B, 1988, MONATSH VETERINARMED, V43, P583