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© Research
Publication : Trends in hearing

Integrating Audiological Datasets via Federated Merging of Auditory Profiles.

Scientific Fields
Diseases
Organisms
Applications
Technique

Published in Trends in hearing - 01 Jan 2025

Saak S, Oetting D, Kollmeier B, Buhl M

Link to Pubmed [PMID] – 40583732

Link to DOI – 10.1177/23312165251349617

Trends Hear 2025 ; 29(): 23312165251349617

Audiological datasets contain valuable knowledge about hearing loss in patients, which can be uncovered using data-driven techniques. Our previous approach summarized patient information from one audiological dataset into distinct Auditory Profiles (APs). To obtain a better estimate of the audiological patient population, however, patient patterns must be analyzed across multiple, separated datasets, and finally, be integrated into a combined set of APs. This study aimed at extending the existing profile generation pipeline with an AP merging step, enabling the combination of APs from different datasets based on their similarity across audiological measures. The 13 previously generated APs (NA = 595) were merged with 31 newly generated APs from a second dataset (NB = 1,272) using a similarity score derived from the overlapping densities of common features across the two datasets. To ensure clinical applicability, random forest models were created for various scenarios, encompassing different combinations of audiological measures. A new set with 13 combined APs is proposed, providing separable profiles, which still capture detailed patient information from various test outcome combinations. The classification performance across these profiles is satisfactory. The best performance was achieved using a combination of loudness scaling, audiogram, and speech test information, while single measures performed worst. The enhanced profile generation pipeline demonstrates the feasibility of combining APs across datasets, which should generalize to all datasets and could lead to an interpretable global profile set in the future. The classification models maintain clinical applicability.