PS12-14. Evaluation of Infrared Thermography to Assess Body Temperature in Beef Heifers of Different Breeds and Residual Feed Intake Phenotypes During Winter.
Londono-Mendez Camila Maria Camila, Sergio Lasso Ramirez, Arturo Macias Franco, Weiguang Hao, Carolyn J Fitzsimmons, Gleise Medeiros Da SilvaAbstract
This study evaluated infrared thermography to assess body temperature in beef heifers with divergent residual feed intake (RFI) during winter. Ninety-eight beef heifers (Angus [AN], Charolais [CH], Kinsella Composite [KC], and Hays Converter [HC]; 235 ± 18.1, 225 ± 18.2, 246 ± 19.5, and 228 ± 17.5 kg body weight, respectively; 8 ± 1 mo of age) were managed in a drylot for 86 d, and fat-corrected RFI was calculated. Heifers were classified as more (LOW-RFI = −0.43 ± 0.308, −0.36 ± 0.307, −0.48 ± 0.386, and −0.54 ± 0.356 kg DM/d; n = 13, 15, 14, and 12 for AN, CH, KC, and HC, respectively) or less efficient (HIGH-RFI = 0.43 ± 0.254, 0.67 ± 0.218, 0.56 ± 0.385, and 0.59 ± 0.348 kg DM/d; n = 13, 8, 12, and 11, respectively). Weather was recorded daily, and infrared images of the frontal bone, eye, nasal bone, snout, cheek, flank, and ventral tail were collected every 17 ± 6 d using FLIR E8 PRO and analyzed using a linear mixed model with RFI, day, and interaction as fixed effects and animal as a random effect (SAS 9.4). Mean air temperature was -23, -11, -12, 3, -27, and 6 °C on d 0, 16, 30, 44, 58, and 85, respectively. Eye temperatures were greater in LOW- vs. HIGH-RFI KC but lower in LOW- vs. HIGH-RFI CH (P < 0.01). Snout temperatures were lower in LOW- vs. HIGH-RFI KC (P = 0.009), but greater in nasal bone in LOW- vs. HIGH-RFI AN (P = 0.03). Tendencies indicated lower snout, ventral tail, and nasal bone temperatures in LOW-RFI AN and CH vs. HIGH-RFI (P < 0.09). Day affected all body regions across breeds (P < 0.01). RFI × day interactions indicated that thermal responses varied with environmental conditions: a higher cheek temperature was found in HIGH-RFI AN at warmest sampling but was lower at coldest (P = 0.02); flank temperature was higher in LOW-RFI than HIGH-RFI CH at − 23 °C (P = 0.03), and eye temperature was higher in LOW-RFI than HIGH-RFI KC at − 12 and −27 °C (P < 0.001). Frontal bone temperature was higher in LOW- vs HIGH-RFI KC at 3 and 6 °C (P = 0.02), while nasal bone increased with warmer air (6 vs. -27 °C) in LOW-RFI HC (P < 0.001). A tendency for a RFI × day interaction was observed in HC for frontal bone and cheek, with higher temperatures in LOW- than HIGH-RFI at 3 and −12 °C (P < 0.09). Infrared thermography detected RFI-related temperature differences across breeds and winter conditions. However, thermal responses varied by region and breed, limiting standalone reliability. Thermography may support feed efficiency classification but requires further validation.