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5篇 您的检索式:作者名="R.Dean"
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1Optimizing dietary lipid use to improve essential fatty acid status and reproductive performance of the modern lactating sow:a review显示文摘Dietary lipid supplementation benefits the prolific and high-producing modern lactating sow. A comprehensive review of recent studies showed that lipid supplementation increases average daily energy intake, which is partitioned for lactation as indicated by greater milk fat output and improved litter growth rate. Recent compelling findings showed that addition of particular lipids during lactation improved the subsequent reproductive outcome of sows. Such benefits were related to the level of dietary essential fatty acids(EFA, linoleic acid, C18:2n-6; and α-linolenic acid, C18:3n-3) during lactation. Lactation diets without supplemental EFA resulted in a pronounced negative balance(intake minus milk output) of linoleic(-25.49 g/d) and α-linolenic acid(-2.75 g/d); which compromised sow fertility(farrowing rate < 75 % and culling rates > 25 % of weaned sows). This phenomenon seems to be increasingly important with advancing sow age because of a progressive reduction of body EFA pool over successive lactations. The net effect of supplemental EFA during lactation was to create a positive EFA balance, which improved the subsequent reproduction of sows. Adequate linoleic acid intake improved the proportion of sows that farrowed in the subsequent cycle(Farrowing rate(%) = [(-1.5 × 10^(-3)× linoleic acid intake(g/d)~2) +(0.53 × linoleic acid intake(g/d)) +(45.2)]; quadratic P = 0.002, R^2= 0.997, RMSE = 0.031). In addition, increasing linoleic acid intake increased the number of pigs born in the subsequent cycle(total pigs born(n) = [(9.4 × 10^(-5)× linoleic acid intake(g/d)~2) +(0.04 × linoleic acid intake(g/d)) +(10.94)]; quadratic P = 0.002, R^2= 0.997, RMSE = 0.031). Supplemental α-linolenic acid resulted in a rapid return to estrus(sows bred: sows weaned = 94.2 %; wean-to-estrus interval = 4.0 d) and achieved a high retention of pregnancy(sows pregnant: sows bred = 98 %). Collectively, we conclude that a minimum dietary intake of10 g/d of α-linolenic acid, simultaneous with a minimum of 125 g/d of linoleic acid should be provided to ≥ 95 % of the sows; thereby, achieving a maximum sow reproductive efficiency through multiple mechanisms that include rapid return to estrus, high maintenance of pregnancy and large subsequent litter size in mature sows, that appear to be susceptible to EFA deficiency.David S.Rosero R.Dean Boyd Jack Odle Eric van Heugten 2016Journal of Animal Science and Biotechnology2016,7,3:8
2TBI or not TBI: that is the question. Is it better to measure toe pressure than ankle pressure in diabetic patients?显示文摘B.Brooks R.Dean S.Patel B.Wu L.Molyneaux D. K.Yue 2001Diabetic Medicine2001,,7:1
3增加哺乳母猪日粮中L—赖氨酸的添加量显示文摘在低水平豆粕型母猪哺乳期饲料中添加合成赖氨酸以平衡日粮的营养水平,不会对母猪当前和以后的生产性能产生负面影响,虽然合成氨基酸的成本增加了,但整体生产成本能够下降。何庆华 Kurt Perryman Mark Mcculley Cate Zier-Rush R.Dean Boyd James Usry 2010国外畜牧学(猪与禽)2010,,3:0
4根据酸结合力配制幼猪饲料显示文摘张贤群(译) 覃矜(校) R.Dean Boyd 2006国外畜牧学(猪与禽)2006,,4:0
5种猪场胎次隔离结构显示文摘本文从营养的角度介绍了按胎次将母猪分成亚群的技术原理。这项技术的理论根据是,年轻母猪(1胎或2胎)与年老母猪(5胎以上)所需养分的类型和数量相差很大。从数据可以看出,按不同的年龄阶段提供不同的营养可显著提高每头母猪生命期平均窝产仔数。本文用Hanor公司最近采用的模式作为例子来说明如何进行胎次隔离。作者认为这种策略对健康和繁殖性能也有好处。R.Dean Boyd Noel Williams 温鹏 2009今日养猪业2009,,4:0
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