Quantitative in-situ monitoring of germinating barley seeds using X-ray dark-field radiography

Mikkel Schou Nielsen, Kasper Borg Damkjær, Robert Krarup Feidenhans'l

7 Citations (Scopus)

Abstract

During production of malt from barley seeds, cell walls and starch granules in the endosperm are degraded. Although this modification process is important for malt quality, the modification patterns of individual barley seeds have yet to be reported. The use of destructive microscopy methods have previously limited the investigations to ensemble averages. X-ray dark-field radiography is a recent non-destructive imaging method which is sensitive to microstructural variations. In this study, the method was applied for quantitative in-situ monitoring of barley seeds. Microstructural changes relating to water uptake and modification were monitored over a 43–55 h period. Sub-resolution stress cracks as well as a dark-field signal believed to originate from starch granules were detected. The evolution of the dark-field signal followed the known modification pattern in barley seeds. Through image analysis, quantitative parameters describing the movement of the front of the observed pattern were obtained. Based on these findings, X-ray dark-field radiography presents a possible novel approach to monitor modification of germinating barley seeds.

Original languageEnglish
JournalJournal of Food Engineering
Volume198
Pages (from-to)98-104
ISSN0260-8774
DOIs
Publication statusPublished - 1 Apr 2017

Fingerprint

Dive into the research topics of 'Quantitative in-situ monitoring of germinating barley seeds using X-ray dark-field radiography'. Together they form a unique fingerprint.

Cite this