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Effects of Feed Particle Size and Hydro-Thermal Processing Methods on Starch Modification, Nutrient Digestibility and the Performance and the Gastrointestinal Tract of Broilers

机译:饲料粒度和水热加工方法对肉鸡改性,营养消化率和肉鸡胃肠道的影响

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摘要

Influences of feed particle size (coarse, fine) and hydro-thermal processing methods (HTPM) (without−non-compacted feed, pelleting, expanding and pelleting) on feeding value and the performance and digestive tract of 624 broilers were studied. HTPM increased the starch disintegration of feed. Starch disintegration and electron microscopy indicated the highest degree of starch modification in expanded and pelleted feed. HTPM affected ether extract digestibility (p < 0.05). A grinding-by-HTPM interaction was found in case of crude protein digestibility (p = 0.008). Non-compacted feed reduced daily feed intake (DFI) and body weight gain and increased the feed to gain ratio compared to compacted feeds (p < 0.001). Compacted feeds increased proventricular size and the risk of Isthmus gastrici dilatation compared to coarsely ground non-compacted feed, except for finely ground expanded and pelleted feed. Finely ground feed reduced proventricular weights compared to coarsely ground feed and pelleted feed compared to other feeds. Non-compacted feed increased gizzard weights compared to compacted feeds. Relationships between proventricular size and Isthmus gastrici dilatation and the DFI were detected. Summarizing, the beneficial effects of pelleted feed were mainly based on the reduction of feed wastage and selection. However, the high DFI caused by pellet feeding is also a main risk factor for proventricular dilatation.
机译:研究了饲料粒度(粗,精细)和水热加工方法(HTPM)(无压实饲料,造粒,膨胀和造粒)对624个肉仔鸡的性能和消化道的影响。 HTPM增加了饲料的淀粉崩解。淀粉崩解和电子显微镜表明膨胀和颗粒饲料中的淀粉改性程度最高。 HTPM影响醚提取物消化率(P <0.05)。在粗蛋白质消化率的情况下,发现了逐个HTPM相互作用(p = 0.008)。与压实饲料相比,非压实饲料减少每日进料进口(DFI)和体重增加并增加进料以获得比率(P <0.001)。与粗地面膨胀和颗粒饲料相比,压实饲料增加了粗糙的非压实饲料相比,胰岛胃膨胀的风险增加。与其他饲料相比,精细接地的饲料减少了与粗地饲料和颗粒饲料相比。与压实饲料相比,非压实饲料增加了G型重量。检测到送腹部大小与胰岛胃膨胀和DFI之间的关系。总结,颗粒饲料的有益效果主要是基于饲料浪费和选择的减少。然而,由颗粒喂养引起的高DFI也是吞噬营养不良扩张的主要危险因素。

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