bioRxiv · 10.1101/2024.11.27.625758
Towards Spectral Variation Analysis: A Data Quality Framework for Non-Targeted Methods
Abstract
Non-targeted methods (NTM) require robust methods for comparing spectral data for reliable classification and identification. Traditional approaches using match factors reduce complex spectral relationships to single values, limiting their utility in quality assurance. This study presents an evaluation of spectral comparison methodologies, contrasting classical Mahalanobis distance (MD) with neural network approaches, namely, neural classification distance (NCD). Using matrix assisted laser desorption ionization-time of flight (MALDI-TOF) mass spectrometry data from bacterial isolates, we systematically assessed these methods across varying levels of spectral variability. The MD approach exhibited consistent performance under controlled conditions but showed limitations with increasing spectral complexity. In contrast, the NCD demonstrated adaptability across all scenarios, revealing its capability in handling complex spectral relationships. Through this exemplary example, we present the mathematical framework for quantifying spectral variations and establish criteria for method selection in different analytical scenarios. This work provides a foundation for proposing data quality metrics in NTMs and offers practical implementations for routine quality assurance. The methodology developed here extends beyond mass spectrometry applications and contributes to the broader field of analytical quality control in complex spectral analysis.
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Nichani, K., Uhlig, S., San Martin, V., Colson, B., Hettwer, K., Steinacker, U., Kaspar, H., Gowik, P., Kemmlein, S.. 2024-12-04. Towards Spectral Variation Analysis: A Data Quality Framework for Non-Targeted Methods. https://doi.org/10.1101/2024.11.27.625758
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