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Journal Article

Vectorgastrogram: dynamic trajectory and recurrence quantification analysis to assess slow wave vector movement in healthy subjects

Gema Prats-Boluda; Jose L. Martinez-de-Juan; Felix Nieto-del-Amor; María Termenon; Cristina Varón; Yiyao Ye-Lin
Physical and Engineering Sciences in Medicine · Vol. 47, Issue 2 · pp. 663-677 · 2024

Abstract

Functional gastric disorders entail chronic or recurrent symptoms, high prevalence and a significant financial burden. These disorders do not always involve structural abnormalities and since they cannot be diagnosed by routine procedures, electrogastrography (EGG) has been proposed as a diagnostic alternative. However, the method still has not been transferred to clinical practice due to the difficulty of identifying gastric activity because of the low-frequency interference caused by skin–electrode contact potential in obtaining spatiotemporal information by simple procedures. This work attempted to robustly identify the gastric slow wave (SW) main components by applying multivariate variational mode decomposition (MVMD) to the multichannel EGG. Another aim was to obtain the 2D SW vectorgastrogram VGG SW from 4 electrodes perpendicularly arranged in a T-shape and analyse its dynamic trajectory and recurrence quantification (RQA) to assess slow wave vector movement in healthy subjects. The results revealed that MVMD can reliably identify the gastric SW, with detection rates over 91% in fasting postprandial subjects and a frequency instability of less than 5.3%, statistically increasing its amplitude and frequency after ingestion. The VGG SW dynamic trajectory showed a statistically higher predominance of vertical displacement after ingestion. RQA metrics (recurrence ratio, average length, entropy, and trapping time) showed a postprandial statistical increase, suggesting that gastric SW became more intense and coordinated with a less complex VGG SW and higher periodicity. The results support the VGG SW as a simple technique that can provide relevant information on the “global” spatial pattern of gastric slow wave propagation that could help diagnose gastric pathologies.

Bibliographic Information

JournalPhysical and Engineering Sciences in Medicine
PublisherSpringer
Publication Date2024-06-01
Publication Year2024
Volume47
Issue2
Pages663-677
Document TypeJournal Article
Print ISSN2662-4729
eISSN2662-4737
DOI10.1007/s13246-024-01396-y

Access Information

NARA Access Coverage2001-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13246
Publisher PageOpen Publisher Page
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