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Expectation-Driven Text Extraction from Medical Ultrasound Images.

, , , and . MIE, volume 228 of Studies in Health Technology and Informatics, page 712-716. IOS Press, (2016)

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State of the Art Optical Character Recognition of 19th Century Fraktur Scripts using Open Source Engines., , , and . DHd, (2019)Handwritten Text Recognition und Word Mover's Distance als Grundlagen der digitalen Edition "Die Kindheit Jesu Konrads von Fußesbrunnen"., , and . DHd, (2022)Automatic Semantic Text Tagging on Historical Lexica by Combining OCR and Typography Classification: A Case Study on Daniel Sander's Wörterbuch der Deutschen Sprache., , , , , and . DATeCH, page 33-38. ACM, (2019)Handwritten Text Recognition und Word Movers Distance als Grundlagen der digitalen Edition 'Kindheit Jesu Konrads von Fußesbrunnen', , and . DHd2022 Kulturen des digitalen Gedächtnisses, (2022)Autonomous Quadrocopter for Search, Count and Localization of Objects, , and . (2016)OCR-D & OCR4all: Two Complementary Approaches for Improved OCR of Historical Sources., , , , and . HistoInformatics@JCDL, volume 2981 of CEUR Workshop Proceedings, CEUR-WS.org, (2021)An Intelligent Semi-Automatic Workflow for Optical Character Recognition of Historical Printings (Ein intelligenter semi-automatischer Workflow für die OCR historischer Drucke). Würzburg University, Germany, (2020)base-search.net (ftunivwuerz:oai:opus.bibliothek.uni-wuerzburg.de:20923).Typisierte Varianz-Analyse von Texten., , and . DHd, (2020)Evaluation von Methoden zur Bildverarbeitung für Objekterkennung am Beispiel der Klassifikation von Bäumen. (2015)Comparison of OCR Accuracy on Early Printed Books using the Open Source Engines Calamari and OCRopus., , and . J. Lang. Technol. Comput. Linguistics, 33 (1): 79-96 (2018)