Elmore K, Bobeck E
    
    
    Front Vet Sci. 2025; 12:1547807.
  
  
    PMID: 40046416
    
          PMC: 11880223.
    
          DOI: 10.3389/fvets.2025.1547807.
      
 
                                  
  
    Kikusato M, Toyomizu M
    
    
    J Poult Sci. 2023; 60(2):2023021.
  
  
    PMID: 37560151
    
          PMC: 10406517.
    
          DOI: 10.2141/jpsa.2023021.
      
 
                                  
  
    Chen J, Sun Y, Hsu C, Tseng T, Liang Y
    
    
    Bioengineering (Basel). 2023; 10(4).
  
  
    PMID: 37106638
    
          PMC: 10135700.
    
          DOI: 10.3390/bioengineering10040452.
      
 
                                  
  
    Paneru B, Pent G, Nastasi S, Downing A, Munsell J, Fike J
    
    
    PLoS One. 2023; 18(3):e0282923.
  
  
    PMID: 36952445
    
          PMC: 10035879.
    
          DOI: 10.1371/journal.pone.0282923.
      
 
                                  
  
    Ogbuagu N, Ayo J, Aluwong T, Akor-Dewu M
    
    
    Trop Anim Health Prod. 2022; 54(5):324.
  
  
    PMID: 36169771
    
    
          DOI: 10.1007/s11250-022-03318-0.
      
 
                              
              
                              
                                      
  Impact of embryonic manipulations on core body temperature dynamics and survival in broilers exposed to cyclic heat stress.
  
    Ncho C, Goel A, Gupta V, Jeong C, Choi Y
    
    
    Sci Rep. 2022; 12(1):15110.
  
  
    PMID: 36068282
    
          PMC: 9448727.
    
          DOI: 10.1038/s41598-022-19063-1.
      
 
                                          
                                                          
  Wing-feather loss in white-feathered laying hens decreases pectoralis thickness but does not increase risk of keel bone fracture.
  
    Garant R, Tobalske B, Ben Sassi N, van Staaveren N, Widowski T, Powers D
    
    
    R Soc Open Sci. 2022; 9(6):220155.
  
  
    PMID: 35719889
    
          PMC: 9198519.
    
          DOI: 10.1098/rsos.220155.
      
 
                                          
                                                          
  Effect of Selenium Nanoparticles and Chitosan on Production Performance and Antioxidant Integrity of Heat-Stressed Broiler.
  
    Lochi G, Shah M, Gandahi J, Gadahi J, Hadi S, Farooq T
    
    
    Biol Trace Elem Res. 2022; 201(4):1977-1986.
  
  
    PMID: 35676590
    
    
          DOI: 10.1007/s12011-022-03262-y.
      
 
                                          
                                                          
  Genome-wide scan for selection signatures and genes related to heat tolerance in domestic chickens in the tropical and temperate regions in Asia.
  
    Guo X, Xing C, Wei W, Zhang X, Wei Z, Ren L
    
    
    Poult Sci. 2022; 101(7):101821.
  
  
    PMID: 35537342
    
          PMC: 9118144.
    
          DOI: 10.1016/j.psj.2022.101821.
      
 
                                          
                                                          
  Effects of Selenium as a Dietary Source on Performance, Inflammation, Cell Damage, and Reproduction of Livestock Induced by Heat Stress: A Review.
  
    Zheng Y, Xie T, Li S, Wang W, Wang Y, Cao Z
    
    
    Front Immunol. 2022; 12:820853.
  
  
    PMID: 35116042
    
          PMC: 8803637.
    
          DOI: 10.3389/fimmu.2021.820853.
      
 
                                          
                                                          
  A Heuristic and Data Mining Model for Predicting Broiler House Environment Suitability.
  
    Martinez A, Naas I, de Carvalho-Curi T, Abe J, da Silva Lima N
    
    
    Animals (Basel). 2021; 11(10).
  
  
    PMID: 34679810
    
          PMC: 8532747.
    
          DOI: 10.3390/ani11102780.
      
 
                                          
                                                          
  Enrofloxacin Dose Optimization for the Treatment of Colibacillosis in Broiler Chickens Using a Drinking Behaviour Pharmacokinetic Model.
  
    Temmerman R, Pelligand L, Schelstraete W, Antonissen G, Garmyn A, Devreese M
    
    
    Antibiotics (Basel). 2021; 10(5).
  
  
    PMID: 34069540
    
          PMC: 8161238.
    
          DOI: 10.3390/antibiotics10050604.
      
 
                                          
                                                          
  Effects of Thermal Conditioning on Changes in Hepatic and Muscular Tissue Associated With Reduced Heat Production and Body Temperature in Young Chickens.
  
    Ouchi Y, Chowdhury V, Cockrem J, Bungo T
    
    
    Front Vet Sci. 2021; 7:610319.
  
  
    PMID: 33537354
    
          PMC: 7847892.
    
          DOI: 10.3389/fvets.2020.610319.
      
 
                                          
                                                          
  The effects of simulated transportation conditions on the core body and extremity temperature, blood physiology, and behavior of white-strain layer pullets.
  
    Lalonde S, Beaulac K, Crowe T, Schwean-Lardner K
    
    
    Poult Sci. 2021; 100(2):697-706.
  
  
    PMID: 33518123
    
          PMC: 7858169.
    
          DOI: 10.1016/j.psj.2020.10.077.
      
 
                                          
                                                          
  Multi-tissue transcriptomic analysis reveals that L-methionine supplementation maintains the physiological homeostasis of broiler chickens than D-methionine under acute heat stress.
  
    Lee M, Park H, Heo J, Choi H, Seo S
    
    
    PLoS One. 2021; 16(1):e0246063.
  
  
    PMID: 33503037
    
          PMC: 7840013.
    
          DOI: 10.1371/journal.pone.0246063.
      
 
                                          
                                                          
  Methionine supplementing effects on intestine, liver and uterus morphology, and on positivity and expression of Calbindin-D28k and TRPV6 epithelial calcium carriers in laying quail in thermoneutral conditions and under thermal stress.
  
    de Moraes L, Delicato M, da Silva Cruz A, Pereira da Silva H, Alves C, Campos D
    
    
    PLoS One. 2021; 16(1):e0245615.
  
  
    PMID: 33449938
    
          PMC: 7810298.
    
          DOI: 10.1371/journal.pone.0245615.
      
 
                                          
                                                          
  Effect of dietary β-1,3-glucan supplementation and heat stress on growth performance, nutrient digestibility, meat quality, organ weight, ileum microbiota, and immunity in broilers.
  
    Zhang S, Ou J, Luo Z, Kim I
    
    
    Poult Sci. 2020; 99(10):4969-4977.
  
  
    PMID: 32988533
    
          PMC: 7598134.
    
          DOI: 10.1016/j.psj.2020.06.036.
      
 
                                          
                                                          
  Orally Administered D-Aspartate Depresses Rectal Temperature and Alters Plasma Triacylglycerol and Glucose Concentrations in Broiler Chicks.
  
    Erwan E, Zulfikar , Saleh E, Kuntoro B, Chowdhury V, Furuse M
    
    
    J Poult Sci. 2020; 54(3):205-211.
  
  
    PMID: 32908427
    
          PMC: 7477212.
    
          DOI: 10.2141/jpsa.0160010.
      
 
                                          
                                                          
  Impact of Heat Stress on Poultry Health and Performances, and Potential Mitigation Strategies.
  
    Wasti S, Sah N, Mishra B
    
    
    Animals (Basel). 2020; 10(8).
  
  
    PMID: 32722335
    
          PMC: 7460371.
    
          DOI: 10.3390/ani10081266.
      
 
                                          
                                                          
  Impact of galactooligosaccharides delivered in ovo on mitigating negative effects of heat stress on performance and welfare of broilers.
  
    Slawinska A, Zampiga M, Sirri F, Meluzzi A, Bertocchi M, Tavaniello S
    
    
    Poult Sci. 2020; 99(1):407-415.
  
  
    PMID: 32416825
    
          PMC: 7587628.
    
          DOI: 10.3382/ps/pez512.