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37 results for “suckling”
Dataset of plasma non-esterified fatty acid concentrations response of a suckling cow exposed to a feed restriction
<p>The detaset describes the response of a suckler cow in terms of plasma non-esterified fatty-acids (NEFA) concentrations, that was exposed to a feed restriction that consisted in the reduction of net energy requirements by 50%. The dataset has two columns, one for time (t) in days (d) and another column for plasma NEFA concentrations (g·L<sup>-1</sup>). The feed restriction started at t = 1 d and lasted untill t = 4 d. Negative values for t represent the pre-challenge period. </p>
Dataset of milk yield response of a suckling cow exposed to feed restrictions
<p>The detaset describes the response of a suckler cow in terms of milk yield (MY, kg·d<sup>-1</sup>), which was exposed to two feed restrictions (FR) consisting in the reduction of net energy requirements by 50%. The dataset has three columns, the first one is time (t) in days (d), the second one is also time (t2, d) and the third column is MY. The first FR started at t = 0 d and lasted untill t = 3 d, the second FR started at t = 21 d until t = 31 d. The second column for time is obtained from the first column by omitting data points corresponding to restriction and recovery periods. Negative values for t and t2 represent the pre-challenge period. </p>
FIG. 8. — A in The comparative milk-suckling reptile
FIG. 8. — A woodcut showing Poggio's snake ready to suckle milk from cow's udder. From Anonymous 1815: 347). Note that the illustration follows the same pattern of the 1520 Valencian edition (Romero Lucas 2001).
FIG. 5. — The serpent bova milking a cow. Illumination from manuscript MSL 11, fol. 137v in The comparative milk-suckling reptile
FIG. 5. — The serpent bova milking a cow. Illumination from manuscript MSL 11, fol. 137v, Archive of the Prague Castle, Library of the Metropolitan Chapter by St. Vitus.
FIG. 3 in The comparative milk-suckling reptile
FIG. 3. — While farmers are engaged in harvesting, the frustrated snakes look at the baby in the tree. From Magnus (1555: 437).
FIG. 7. — A medallion with a snake milking a cow from a in The comparative milk-suckling reptile
FIG. 7. — A medallion with a snake milking a cow from a tapestry preserved in the Musée Royal des Beaux-Arts, Brussels. From Crick-Kuntziger (1948: 73).
FIG. 4 in The comparative milk-suckling reptile
FIG. 4. — The scene of Caradoc's liberation from the serpent by Guignier, from ms. Paris BN fr. 12577. The snake coiled on Caradoc's arm was intentionally erased by an anonymous reader. From Harf-Lancner 1993: 483).
FIG. 2. — A in The comparative milk-suckling reptile
FIG. 2. — A woodcut of the ATU 285A fable De homine paupere et serpente. From Steinhöwel (1479).
Prebiotic galactooligosaccharide (GOS) effects on suckling and weaned pigs
<p>Galactooligosaccharides were supplemented to gruel creep diets during farrowing and/or in phase 1 nursery diets. Growth performance, intestinal health parameters (such as GI morphology, short-chain fatty acids & microbial community) and plasma cytokins were evaluated under the hypothesis that GOS would improve piglet growth through its prebiotic effects as it is fermented in the intestine.</p>
Evaluation of Tolerance, Suckling and Food Intake After Repeated Nasals Administrations of Oxytocin in PWS Infants
ClinicalTrials.gov study NCT02205034. IPD Sharing: Not stated. Countries: 1. Publications: 3.
Prebiotic galactooligosaccharide (GOS) effects on suckling and weaned pigs
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Suckling observations of Galapagos sea lions
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Distribution. Endemic to Papua NewGuinea, known only from two localities, Vailala River near Kerema, in Gulf Province, and Mai-u River near Mt Suckling, in Oro Province. in Molossidae
Distribution. Endemic to Papua NewGuinea, known only from two localities, Vailala River near Kerema, in Gulf Province, and Mai-u River near Mt Suckling, in Oro Province.
Distribution. Papuan Peninsula of New Guinea, including Astrolabe, Owen Stanley (W to Mt Albert Edward and Kokoda Gap), and Maneau ranges (Mt Simpson, Mt Mura, Mt Suckling, and Mt Dayman). in Muridae
Distribution. Papuan Peninsula of New Guinea, including Astrolabe, Owen Stanley (W to Mt Albert Edward and Kokoda Gap), and Maneau ranges (Mt Simpson, Mt Mura, Mt Suckling, and Mt Dayman).
Changes in the coordination between respiration and swallowing from suckling through weaning
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Data from: High suckling rates and acoustic crypsis of humpback whale neonates maximise potential for mother–calf energy transfer
1. The migration of humpback whales to and from their breeding grounds results in a short, critical time period during which neonatal calves must acquire sufficient energy via suckling from their fasting mothers to survive the long return journey. 2. Understanding neonate suckling behaviour is critical for understanding the energetics and evolution of humpback whale migratory behaviour and for informing conservation efforts, but despite its importance, very little is known about the details, rate and behavioural context of this critical energy transfer. 3. To address this pertinent data gap on calf suckling behaviour, we deployed multi-sensor Dtags on eight humpback whale calves and two mothers allowing us to analyse detailed suckling and acoustic behaviour for a total of 68·8 h. 4. Suckling dives were performed 20·7 ± 7% of the total tagging time with the mothers either resting at the surface or at depth with the calves hanging motionless with roll and pitch angles close to zero. 5. Vocalisations between mother and calf, which included very weak tonal and grunting sounds, were produced more frequently during active dives than suckling dives, suggesting that mechanical stimuli rather than acoustic cues are used to initiate nursing. 6. Use of mechanical cues for initiating suckling and low level vocalisations with an active space of <100 m indicate a strong selection pressure for acoustic crypsis. 7. Such inconspicuous behaviour likely reduces the risk of exposure to eavesdropping predators and male humpback whale escorts that may disrupt the high proportion of time spent nursing and resting, and hence ultimately compromise calf fitness. 8. The small active space of the weak calls between mother and calf is very sensitive to increases in ambient noise from human encroachment thereby increasing the risk of mother–calf separation.
Oxygen measurements in closed system respirometry using blubber explants from suckling and fasting grey seal pups
<p>Understanding physiological responses of wildlife and domesticated animals to environmental challenges can be difficult or impossible to investigate at the whole animal level. Tissue culture approaches open up experimental possibilities, but are difficult to undertake in remote environments where facilities to assess tissue viability and minimise or monitor microbial contamination may not be available. Here we used planar optodes in closed system respirometry to measure oxygen use by blubber explants from grey seal (Halichoerus grypus) pups, obtained in a remote field environment in 2017 and processed in a field laboratory with minimal equipment. These data show oxygen measurements at timed intervals and demonstrate that the tissues were respiring aerobically for the 24 h measurement period, compared to empty control vials. We also measured glucose, lactate and glycerol levels in culture media after 24 hours to allow correlation of glucose uptake, lactate accumulation and lipolytic rate, which are also useful markers of metabolic activity, with oxygen use data. Nutritional state of the pups (either suckling or fasting) and tissue depth (closer to muscle (inner) or closer to skin (outer)) were recorded to allow effects of tissue characteristics on metabolic parameters to be examined. We were also able to use the oxygen use profiles in explant-containing and control vials to identify those contaminated by microbes well ahead of any visible colour change in the media stocks. The use of planar optodes for oxygen measurement thus allows simultaneous physiological measurements and contamination monitoring to be undertaken in a minimally equipped field laboratory. Robinson et al. (2021) published in Methods in Ecology and Evolution provides the details of tissue collection and tissue culture. These data will facilitate comparison of metabolic activity of adipose tissue within and between species and assessment of efficacy of monitoring microbial contamination in tissue culture experiments, particularly in field laboratories where other methods may not be logistically possible.</p>
Data from: High suckling rates and acoustic crypsis of humpback whale neonates maximise potential for mother–calf energy transfer
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Oxygen measurements in closed system respirometry using blubber explants from suckling and fasting grey seal pups
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Suckling Piglets; Fructooligosaccharides
GEO Series GSE101147. Sus scrofa. 51 samples. Type: Expression profiling by array.
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