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000844866 001__ 844866
000844866 005__ 20250930084811.0
000844866 0247_ $$2datacite_doi$$a10.18154/RWTH-2022-04267
000844866 037__ $$aRWTH-2022-04267
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000844866 1001_ $$0P:(DE-82)IDM00563$$aPausch, Florian$$b0$$urwth
000844866 245__ $$aIHTA-indHARTF - Database of individual behind-the-ear hearing-aid-related transfer functions with high spatial resolution
000844866 260__ $$c2022
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000844866 520__ $$aA database of individual hearing-aid-related transfer functions (HARTFs) with high spatial resolution is presented as supplementary material to [Pausch et al.: Hybrid multi-harmonic model for the prediction of interaural time differences in individual behind-the-ear hearing-aid-related transfer functions, 2022]. The dataset contains the acoustic measurements from 30 adults who were fitted with two dual-microphone behind-the-ear hearing-aids (HAs). Conventional head-related transfer functions (HRTFs) were measured simultaneously from in-ear microphones, placed at the blocked ear canal entrance. A state-of-the-art continuous measurement routine allowed to capture 9217 directional transfer functions on a measurement grid that was equiangularly discretised in steps of 2.5 deg in azimuth and elevation angles, the latter extending downwards to -70 deg. For simplified handling, the acoustic datasets are published in common spatial data formats via an open access repository. The database is complemented by a comprehensive collection of anthropometric features, and features related to individual HA placement.
000844866 588__ $$aDataset connected to DataCite
000844866 591__ $$aGermany
000844866 653_7 $$ahearing-aid-related transfer functions
000844866 653_7 $$abinaural technology
000844866 653_7 $$avirtual acoustics
000844866 653_7 $$aadult anthropometrics
000844866 653_7 $$ahead-related transfer functions
000844866 7001_ $$0P:(DE-82)IDM03386$$aDoma, Shaimaa$$b1$$urwth
000844866 7001_ $$0P:(DE-82)IDM00134$$aFels, Janina$$b2$$urwth
000844866 7870_ $$0RWTH-2022-07898$$aPausch, Florian et.al.$$dLes Ulis : EDP Sciences, 2022$$iRelatedTo$$tHybrid multi-harmonic model for the prediction of interaural time differences in individual behind-the-ear hearing-aid-related transfer functions
000844866 8564_ $$uhttps://publications.rwth-aachen.de/record/844866/files/Rechteeinraeumung_844866.pdf
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