Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers

ABSTRACT: Stress and lameness negatively affect the health, production, and welfare of broilers. Bacterial chondronecrosis with osteomyelitis (BCO) is a leading cause of stress and lameness in commercial broilers. External changes in skin temperature related to changes in blood flow can be detected...

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Main Authors: Shawna L. Weimer, Robert F. Wideman, Colin G. Scanes, Andy Mauromoustakos, Karen D. Christensen, Yvonne Vizzier-Thaxton
Format: Article
Language:English
Published: Elsevier 2021-11-01
Series:Poultry Science
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0032579121004806
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spelling doaj-aaab3185137d456e89abb3924198237c2021-10-03T04:37:08ZengElsevierPoultry Science0032-57912021-11-0110011101457Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilersShawna L. Weimer0Robert F. Wideman1Colin G. Scanes2Andy Mauromoustakos3Karen D. Christensen4Yvonne Vizzier-Thaxton5Department of Animal and Avian Sciences, University of Maryland, College Park, MD 20742, USA; Corresponding author:Department of Poultry Science, University of Arkansas, Fayetteville, AR 72701, USADepartment of Poultry Science, University of Arkansas, Fayetteville, AR 72701, USAAgricultural Statistics Lab, University of Arkansas, Fayetteville, AR 72701, USATyson Foods, Springdale, AR 72762, USADepartment of Poultry Science, University of Arkansas, Fayetteville, AR 72701, USAABSTRACT: Stress and lameness negatively affect the health, production, and welfare of broilers. Bacterial chondronecrosis with osteomyelitis (BCO) is a leading cause of stress and lameness in commercial broilers. External changes in skin temperature related to changes in blood flow can be detected with infrared thermography (IRT), offering a noninvasive tool to assess the health of animals. This study compared physiological and noninvasive measures of stress and lameness in clinically healthy and lame male broiler chickens between 25 and 56 d. Birds were raised in pens within separate environmental chambers containing either litter flooring (sound) or wire flooring, with the latter established to induce BCO lameness (lame). Physiological and noninvasive measures of stress and lameness were collected: body weight, (BW), relative bursa weight, core body temperature, corticosterone (CORT) concentrations in serum and feathers, surface temperatures of the head (eye and beak) and leg (hock, shank, and foot) regions by infrared thermography (IRT), leg blood oxygen saturation (leg O2), and BCO lesion severity scores of tibial head necrosis (THN) and femoral head necrosis (FHN). Lame birds exhibited greater FHN and THN lesion severities, core body temperatures, and serum CORT (P < 0.05), but had lower BW, relative bursa weight, leg O2, and IRT surface temperatures of the beak, hock, shank, and foot compared with sound birds (P < 0.05). The difference in THN lesion severity between sound and lame birds decreased with age. Linear relationships between leg O2 with IRT leg surface temperatures were positive and negative between leg O2 with BCO lesion severity (P < 0.05). There were negative correlations between serum CORT with hock, shank and foot temperatures (P < 0.001), indicating that BCO is stressful. These results indicate that birds lame from BCO are stressed, have reduced oxygen saturation of blood in their legs, and that IRT surface temperatures can be used as noninvasive indicators of stress and lameness in broilers.http://www.sciencedirect.com/science/article/pii/S0032579121004806broilerlamenesswire flooringinfrared thermographypulse oximetry
collection DOAJ
language English
format Article
sources DOAJ
author Shawna L. Weimer
Robert F. Wideman
Colin G. Scanes
Andy Mauromoustakos
Karen D. Christensen
Yvonne Vizzier-Thaxton
spellingShingle Shawna L. Weimer
Robert F. Wideman
Colin G. Scanes
Andy Mauromoustakos
Karen D. Christensen
Yvonne Vizzier-Thaxton
Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
Poultry Science
broiler
lameness
wire flooring
infrared thermography
pulse oximetry
author_facet Shawna L. Weimer
Robert F. Wideman
Colin G. Scanes
Andy Mauromoustakos
Karen D. Christensen
Yvonne Vizzier-Thaxton
author_sort Shawna L. Weimer
title Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
title_short Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
title_full Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
title_fullStr Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
title_full_unstemmed Impact of experimentally induced bacterial chondronecrosis with osteomyelitis (BCO) lameness on health, stress, and leg health parameters in broilers
title_sort impact of experimentally induced bacterial chondronecrosis with osteomyelitis (bco) lameness on health, stress, and leg health parameters in broilers
publisher Elsevier
series Poultry Science
issn 0032-5791
publishDate 2021-11-01
description ABSTRACT: Stress and lameness negatively affect the health, production, and welfare of broilers. Bacterial chondronecrosis with osteomyelitis (BCO) is a leading cause of stress and lameness in commercial broilers. External changes in skin temperature related to changes in blood flow can be detected with infrared thermography (IRT), offering a noninvasive tool to assess the health of animals. This study compared physiological and noninvasive measures of stress and lameness in clinically healthy and lame male broiler chickens between 25 and 56 d. Birds were raised in pens within separate environmental chambers containing either litter flooring (sound) or wire flooring, with the latter established to induce BCO lameness (lame). Physiological and noninvasive measures of stress and lameness were collected: body weight, (BW), relative bursa weight, core body temperature, corticosterone (CORT) concentrations in serum and feathers, surface temperatures of the head (eye and beak) and leg (hock, shank, and foot) regions by infrared thermography (IRT), leg blood oxygen saturation (leg O2), and BCO lesion severity scores of tibial head necrosis (THN) and femoral head necrosis (FHN). Lame birds exhibited greater FHN and THN lesion severities, core body temperatures, and serum CORT (P < 0.05), but had lower BW, relative bursa weight, leg O2, and IRT surface temperatures of the beak, hock, shank, and foot compared with sound birds (P < 0.05). The difference in THN lesion severity between sound and lame birds decreased with age. Linear relationships between leg O2 with IRT leg surface temperatures were positive and negative between leg O2 with BCO lesion severity (P < 0.05). There were negative correlations between serum CORT with hock, shank and foot temperatures (P < 0.001), indicating that BCO is stressful. These results indicate that birds lame from BCO are stressed, have reduced oxygen saturation of blood in their legs, and that IRT surface temperatures can be used as noninvasive indicators of stress and lameness in broilers.
topic broiler
lameness
wire flooring
infrared thermography
pulse oximetry
url http://www.sciencedirect.com/science/article/pii/S0032579121004806
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