Andreas Husch

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Luxembourg

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Recent Grants

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Overcoming Bias and Data Inhomogeneity in Machine Learning: COVID-19 Imaging and Beyond

Open Date: 2021-01-01

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Grant: Close

Personalized Computer Aided Navigation for Stereotactic Surgery

Open Date: 2014-01-01

Close Date: 2017-12-31

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AICovIX - Ai based diagnosis of COVID-19 from CT/X-Ray Imaging

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Articles (13)

Impact of Formalin- and Cryofixation on Raman Spectra of Human Tissues and Strategies for Tumor Bank Inclusion

Reliable training of Raman spectra-based tumor classifiers relies on a substantial sample pool. This study explores the impact of cryofixation (CF) and formalin fixation (FF) on Raman spectra using samples from surgery sites and a tumor bank. A robotic Raman spectrometer scans samples prior to the neuropathological analysis. CF samples showed no significant spectral deviations, appearance, or disappearance of peaks, but an intensity reduction during freezing and subsequent recovery during the thawing process. In contrast, FF induces sustained spectral alterations depending on molecular composition, albeit with good signal-to-noise ratio preservation. These observations are also reflected in the varying dual-class classifier performance, initially trained on native, unfixed samples: The Matthews correlation coefficient is 81.0% for CF and 58.6% for FF meningioma and dura mater. Training on spectral differences between original FF and pure formalin spectra substantially improves FF samples’ classifier performance (74.2%). CF is suitable for training global multiclass classifiers due to its consistent spectrum shape despite intensity reduction. FF introduces changes in peak relationships while preserving the signal-to-noise ratio, making it more suitable for dual-class classification, such as distinguishing between healthy and malignant tissues. Pure formalin spectrum subtraction represents a possible method for mathematical elimination of the FF influence. These findings enable retrospective analysis of processed samples, enhancing pathological work and expanding machine learning techniques.

Year:

2024

Collaborators (4)

Jose Ameijeiras-Alonso

Universidade de Santiago de Compostela

SPAIN

Felix Bruno Kleine Borgmann

-

GERMANY

Christos Ganos

-

GERMANY

Mikkel Petersen

Aarhus University

DENMARK
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