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  5. Prediction of total mixed ration composition for dairy buffaloes using portable near-infrared spectrophotometers

Prediction of total mixed ration composition for dairy buffaloes using portable near-infrared spectrophotometers

Author(s)
Evangelista, Chiara  
Francesca Petrocchi Jasinski
Manganello, Federico
Basiricò, Loredana  
Danieli, Pier Paolo
more
Date Issued
June 16, 2026
Type
article
Volume
25
Issue
1
Start Page
793
End Page
810
DOI
10.1080/1828051X.2026.2679695
ISSN
1828-051X
Journal
ITALIAN JOURNAL OF ANIMAL SCIENCE  
Abstract
Laboratory methods (LAB) for feed analysis are reliable but time-consuming and expensive. Near-infrared reflectance spectroscopy (NIRS) offers a non-destructive alternative, and portable devices have increased interest for on-farm real-time monitoring of feed composition. However, their accuracy relative to LAB remains insufficiently validated. This study evaluated two portable NIRS instruments compared with LAB methods for chemical characterisation of total mixed rations (TMR) for dairy buffaloes. 230 TMR samples were collected, scanned with both devices, and analysed with LAB methods. Parameters assessed included dry matter (DM), ether extract (EE), ASH, crude protein (CP), neutral detergent fibre, acid detergent fibre, acid detergent lignin, and starch. Agreement among methods was examined using Bland-Altman and Passing-Bablok analyses, while differences were evaluated with Friedman ANOVA. Principal Component Analysis (PCA) was applied to explore the multidimensional structure of the dataset. Finally, Passing- Bablok regression was used to correct NIRS bias and reassess agreement with the reference method. Good agreement was observed for DM (mean differences 3.12% for NIRS_A, 0.99% for NIRS_B) and moderate for EE (<0.5%), while larger discrepancies occurred for fibre fractions, CP, ASH, and starch. Passing-Bablok regression revealed significant constant and proportional biases, particularly for fibre and starch. Bias correction improved agreement, with DM and EE predictions closely matching LAB values (e.g. DM: slope ¼ 1.00, intercept ¼ 0.95). The PCA indicated that NIRS devices capture overall compositional patterns, with NIRS_B showing lower variability. In conclusion, portable NIRS devices cannot yet replace laboratory analyses for buffalo TMR; however, after bias correction, they may have potential as tools for on-farm monitoring.
Subjects

Precision feeding

on-farm analysis

chemometrics

proximate composition...

NIRS

Handle
https://dspace.unitus.it/handle/2067/69445
File(s)
Thumbnail Image
Name

IJAS 2026 NIR_Buffaloe Diet Pub.pdf

Size

2.61 MB

Format

Adobe PDF

Checksum (MD5)

ffbd22f0415136c5f961510b1ec3d522

Related items
Metrics
Project(s)
AGRITECH – ‘National Research Centre for Agricultural Technologies’ research program (grant number J83C22000830005)

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