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首页> 外文期刊>Chilean Journal of Agricultural Research >Prediction of the composition of fresh pastures by near infrared reflectance or interactance-reflectance spectroscopy
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Prediction of the composition of fresh pastures by near infrared reflectance or interactance-reflectance spectroscopy

机译:通过近红外反射或相互作用反射光谱法预测新鲜草场的组成

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Fast and precise analytical tools can contribute to optimize pasture management decisions. This work was carried out to evaluate the potential of one such technique, near infrared spectroscopy (NIRS), to predict the nutritional value of pastures without previous drying of the samples, comparing two forms of collecting the spectra: reflectance, or interactance-reflectance (fiber optic probe). Samples (n = 107) from different swards were taken across the humid and temperate regions (Los Ríos and Los Lagos) of southern Chile. Once their spectra were collected, dry matter (DM) and several chemical constituents, such as crude protein (CP), metabolizable energy (ME), neutral (NDF) and acid detergent fiber (ADF), soluble carbohydrates (SC), soluble crude protein (SCP) and neutral detergent insoluble N (NDFIN), were determined as reference data. Calibrations were developed and the best ranked were selected (by cross-validation) according to a lower standard error of cross validation (SE CV ) and a higher determination coefficient of cross validation (R 2CV ). Calibrations in the reflectance mode, for DM and CP, reached a high R 2CV (0.99 and 0.91, respectively) and a SE CV (6.5 and 18.4 g kg -1 ). Equations for ADF, SCP and ME were ranked next, with R 2CV of 0.87, 0.84 and 0.82, respectively, and SE CV of 15.88 g kg -1 , 15.45 g kg -1 and 0.34 Mj kg -1 . Equations for NDF, SC and NDFIN, with R 2CV of 0.78, 0.77 and 0.61, respectively, and SE CV of 35.57, 94.54 and 1.89 g kg -1 , respectively, are considered unreliable for prediction purposes. Interactance-reflectance, on the other hand, resulted in poorer equations for all fractions.
机译:快速而精确的分析工具可以帮助优化牧场管理决策。这项工作是为了评估一种这样的技术(近红外光谱(NIRS))的潜力,以在不事先干燥样品的情况下预测牧场的营养价值,比较收集光谱的两种形式:反射率或相互作用反射率(光纤探头)。在智利南部的潮湿和温带地区(洛斯里奥斯和洛斯拉各斯)采集了来自不同地区的样本(n = 107)。一旦收集了它们的光谱,便得到了干物质(DM)和几种化学成分,例如粗蛋白(CP),代谢能(ME),中性(NDF)和酸性去污剂纤维(ADF),可溶性碳水化合物(SC),可溶性原油测定蛋白质(SCP)和不溶性中性去污剂N(NDFIN)作为参考数据。根据较低的交叉验证标准误差(SE CV )和较高的交叉验证确定系数(R 2CV < / sup>)。 DM和CP的反射率模式下的校准分别达到高R 2CV (分别为0.99和0.91)和SE CV (6.5和18.4 g kg -1 )。紧随其后的是ADF,SCP和ME等式,R 2CV 分别为0.87、0.84和0.82,SE CV 为15.88 g kg -1 < / sup>,15.45 g kg -1 和0.34 Mj kg -1 。 NDF,SC和NDFIN的方程,R 2CV 分别为0.78、0.77和0.61,SE CV 分别为35.57、94.54和1.89 g kg -1 分别出于预测目的被认为不可靠。另一方面,相互作用反射导致所有分数​​的方程式变差。

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