CoRFiLaC, Regione Siciliana, 97100 Ragusa, Italy.
J Dairy Sci. 2012 Aug;95(8):4707-20. doi: 10.3168/jds.2011-5118.
Not only feed but also respective bolus particle size could alter diet efficiency and cow performance. The objective of this project was to characterize particle size of selected feeds and respective swallowed boli. Feed samples included 6 different particle length rye grass hay samples, 1 grass silage, 1 corn silage, and 1 total mixed ration (TMR). Rye grass hay samples consisted of long hay and chopped hay particles retained on the 19- (19_PSPS hay), 8- (8_PSPS hay), and 1.18-mm (1.18_PSPS hay) Penn State Particle Separator (PSPS) screens and those collected on the pan (PSPS_pan hay). A sixth hay treatment was rye grass forage cut at 50-mm lengths and dried to hay (50-mm hay). Treatments were offered to 4 nonlactating and 4 lactating cows following rumen evacuation. Swallowed boli were collected and the number of chews per gram of ingested feed dry matter was determined. Feed and bolus particles of lengths ≥5mm were collected on a 1.6-mm screen using a horizontal wet sieving technique. This cut point was chosen, as the literature suggests that most fecal particles are shorter than 5mm. Dry matter proportions on this screen (PROP_1.6) were determined and particle lengths of retained particles were measured by image analysis. Mean particle lengths (ML) were calculated considering particles ≥5mm in length. Boli of long hay, of 19_PSPS hay, of 8_PSPS hay, and of 50-mm hay had similar ML of 10 to 11mm. Bolus PROP_1.6 were also similar between these treatments, ranging from 0.54 to 0.69. Bolus particle lengths and distributions of these treatments were not related to respective hay particles. Bolus of 1.18_PSPS hay had PROP_1.6 of 0.51 and a smaller ML of 8mm. The PSPS_pan hay had PROP_1.6 of only 0.33, but was still chewed intensely. Apparently, little particle size reduction occurred when cows ate the TMR or the silages. Feed and respective bolus PROP_1.6 were as follows: 0.66 and 0.59 in grass silage, 0.52 and 0.55 in corn silage, and 0.44 and 0.38 in the TMR. Feed and respective bolus ML were as follows: 13.8 and 11.6mm in grass silage, 12.0 and 11.2mm in corn silage, and 13.1 and 12.5mm in the TMR. Rye grass hay particles retained on PSPS screens ≥8mm, with ML of at least 25mm were longer compared with TMR particles, but respective bolus particles were shorter. Bolus particle size is not associated with the size of large feed particles chewed to a constant size that is appropriate for deglutition. This size may be related to feed chemical composition.
不仅饲料的种类,还有各自的团粒大小都可能改变饲料的效率和奶牛的生产性能。本项目的目的是描述选定饲料和各自吞咽团块的颗粒大小。饲料样本包括 6 种不同长度的黑麦草干草样本、1 种牧草青贮料、1 种玉米青贮料和 1 种全混合日粮(TMR)。黑麦草干草样本由长干草和切碎的干草颗粒组成,这些颗粒保留在 19-(19_PSPS 干草)、8-(8_PSPS 干草)和 1.18-mm(1.18_PSPS 干草)Penn State 颗粒分离器(PSPS)筛子上,以及在筛子上收集的(PSPS_pan 干草)。第六种干草处理是将黑麦草切成 50mm 长度并干燥制成干草(50-mm 干草)。4 头非泌乳牛和 4 头泌乳牛在瘤胃排空后分别投喂这些处理的饲料。收集吞咽的团块,并确定每克摄入的饲料干物质的咀嚼次数。使用水平湿筛技术,用 1.6mm 筛网收集长度≥5mm 的饲料和团块颗粒。选择这个切割点是因为文献表明大多数粪便颗粒的长度都短于 5mm。通过图像分析测量保留颗粒的长度来确定 1.6mm 筛网上的干物质比例(PROP_1.6)。考虑到长度≥5mm 的颗粒,计算平均颗粒长度(ML)。长干草、19_PSPS 干草、8_PSPS 干草和 50-mm 干草的团块具有相似的 ML,为 10 到 11mm。这些处理之间的团块 PROP_1.6 也相似,范围在 0.54 到 0.69 之间。这些处理的团块颗粒长度和分布与各自的干草颗粒无关。1.18_PSPS 干草的团块 PROP_1.6 为 0.51,ML 为 8mm,较小。PSPS_pan 干草的 PROP_1.6 仅为 0.33,但仍被强烈咀嚼。显然,当奶牛食用 TMR 或青贮料时,颗粒大小几乎没有减小。饲料和各自的团块 PROP_1.6 如下:牧草青贮料为 0.66 和 0.59,玉米青贮料为 0.52 和 0.55,TMR 为 0.44 和 0.38。饲料和各自的团块 ML 如下:牧草青贮料为 13.8 和 11.6mm,玉米青贮料为 12.0 和 11.2mm,TMR 为 13.1 和 12.5mm。保留在 PSPS 筛子上≥8mm 的黑麦草干草颗粒,ML 至少为 25mm,比 TMR 颗粒长,但各自的团块颗粒较短。团块颗粒大小与咀嚼至适宜吞咽的恒定大小的大饲料颗粒大小无关。这个大小可能与饲料的化学成分有关。