J
Julia Schottenhamml
Researcher at University of Erlangen-Nuremberg
Publications - 37
Citations - 645
Julia Schottenhamml is an academic researcher from University of Erlangen-Nuremberg. The author has contributed to research in topics: Optical coherence tomography & Medicine. The author has an hindex of 8, co-authored 30 publications receiving 451 citations. Previous affiliations of Julia Schottenhamml include Massachusetts Institute of Technology.
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Journal ArticleDOI
Quantitative 3D-OCT motion correction with tilt and illumination correction, robust similarity measure and regularization
Martin F. Kraus,Jonathan J. Liu,Julia Schottenhamml,Chieh-Li Chen,Attila Budai,Lauren Branchini,Tony H. Ko,Hiroshi Ishikawa,Gadi Wollstein,Joel S. Schuman,Jay S. Duker,James G. Fujimoto,Joachim Hornegger +12 more
TL;DR: The quantitative results consistently show that reproducibility is improved considerably by using the advanced algorithm, which also significantly outperforms the basic algorithm, and demonstrates that the advanced motion correction algorithm has the potential to improve the reliability of quantitative measurements derived from 3D-OCT data substantially.
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TOWARD QUANTITATIVE OPTICAL COHERENCE TOMOGRAPHY ANGIOGRAPHY: Visualizing Blood Flow Speeds in Ocular Pathology Using Variable Interscan Time Analysis
Stefan B Ploner,Eric M. Moult,WooJhon Choi,Nadia K. Waheed,ByungKun Lee,Eduardo A. Novais,Emily Cole,Benjamin Potsaid,Lennart Husvogt,Julia Schottenhamml,Julia Schottenhamml,Andreas Maier,Philip J. Rosenfeld,Jay S. Duker,Joachim Hornegger,James G. Fujimoto +15 more
TL;DR: The method was found useful, in a small case series, for visualizing blood flow speeds in a variety of ocular diseases and serves as a step toward quantitative optical coherence tomography angiography.
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An automatic, intercapillary area-based algorithm for quantifying diabetes-related capillary dropout using optical coherence tomography angiography.
Julia Schottenhamml,Eric M. Moult,Stefan B. Ploner,ByungKun Lee,Eduardo A. Novais,Emily Cole,Sabin Dang,Chen D. Lu,Lennart Husvogt,Nadia K. Waheed,Jay S. Duker,Joachim Hornegger,James G. Fujimoto +12 more
TL;DR: In this paper, a robust, sensitive, and fully automatic algorithm to quantify diabetes-related capillary dropout using optical coherence tomography angiography (OCTA) was developed.
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Photoreceptor Layer Thickness Changes During Dark Adaptation Observed With Ultrahigh-Resolution Optical Coherence Tomography.
TL;DR: Three distinct, spatially localized photoresponses were characterized in the outer retinal bands with potential value as physical correlates of photoreceptor function with noninvasive, near-infrared UHR-OCT.
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The Definition, Rationale, and Effects of Thresholding in OCT Angiography.
Emily Cole,Eric M. Moult,Sabin Dang,WooJhon Choi,Stefan B Ploner,ByungKun Lee,Ricardo N. Louzada,Eduardo A. Novais,Julia Schottenhamml,Lennart Husvogt,Andreas Maier,James G. Fujimoto,Nadia K. Waheed,Jay S. Duker +13 more
TL;DR: Thresholding in OCTA can cause significant artifacts, which should be considered when interpreting and quantifying OCTA images; however, thresholding can complicate the relationship between blood flow and OCTA signal.