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Only the deep-body cooling group displayed a significantly blunted metabolic response during the second experimental immersion until rectal temperature decreased by 1.18 °C, but no habituation was observed when they were cooled further.
During the first experimental period, cows were adapted to treatments from d 0 to 13 and blood was collected on d 14, whereas during the second experimental period cows were adapted to treatments from d 0 to 6 and blood samples were collected on d 7.
During the second experimental period, treatments were reversed.
During the second experimental period (P2), half of the cows were fed for ad libitum intake and subjected to heat-stress conditions [WFHS, n = 6; cyclical temperature 31.1 to 38.9°C, 20% humidity: minimum temperature humidity index (THI) = 73, maximum THI = 80.5], and half of the cows were pair-fed to match the intake of WFHS cows in thermal neutral conditions (TNPF, n = 6) for 9 d.
During the second experimental phase, threatening situations were generated artificially by merging abnormal sound events of three types with subway, urban and military background environment under different SNR conditions (varying from −5 dB to 15 dB with 5 dB step).
During the second experimental phase animals were filmed to establish the relation of patch residency (invested time) and depletion levels (Fig. 2A).
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Behaviour was observed in semi-group and single-doe systems immediately after the second time semi-group does were mixed, and during five timeslots divided over the second experimental cycle.
The skin cooling group showed a significant habituation in the ventilatory response during the initial 5 min of the second experimental immersion, but no alteration in the metabolic response.
In the first experimental trial, participants were not permitted to consume fluid during the prolonged exercise, whereas on the second experimental trial (i.e., control trial), participants completed the same exercise protocol but hydration was maintained through fluid ingestions according to the participants' body mass loss during the previous visit.
However, an interaction of time×lecithin (P=0.027), in which the effect of lecithin was more pronounced during the first experimental period was observed.
The performance of the PPACs, EXPADES and of the associated electronics was obtained offline with standard α calibration sources and in-beam by measuring the scattering process for the systems 17O+58Ni and 17O+208Pb at incident energies around their respective Coulomb barriers and, successively, during the first experimental runs with the RIBs of the EXOTIC facility.
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