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1 to 10 of 31 Results
Feb 7, 2022 - Institute of Pathology Mannheim
Weis, Cleo-Aron, 2022, "Assessment of glomerular morphological patterns by deep learning algorithms [Research Data]", https://doi.org/10.11588/data/JWZ2CK, heiDATA, V1
Test data and models to the paper "Assessment of glomerular morphological patterns by deep learning algorithms". Different, from other groups, defined CNN-models (saved as .pt-files) are trained to identify nine predefined patterns of glomerular changes. The models are: AlexNet [...
Feb 25, 2022 - Division of Infectious Disease and Tropical Medicine
Brümmer, Lukas E.; Katzenschlager, Stephan; McGrath, Sean; Schmitz, Stephani; Gaeddert, Mary; Erdmann, Christian; Bota, Marc; Grilli, Maurizio; Larmann, Jan; Weigand, Markus A.; Pollock, Nira R.; Macé, Aurélien; Erkosar, Berra; Carmona, Sergio; Sacks, Jilian A.; Ongarello, Stefano; Denkinger, Claudia M., 2022, "Accuracy of rapid point-of-care antigen-based diagnostics for SARS-CoV-2: an updated systematic review and meta-analysis with meta regression analyzing influencing factors [Research Data]", https://doi.org/10.11588/data/T3MIB0, heiDATA, V1
Background Comprehensive information about the accuracy of antigen rapid diagnostic tests (Ag-RDTs) for SARS-CoV-2 is essential to guide public health decision makers in choosing the best tests and testing policies. In August 2021, we published a systematic review and meta-analys...
Feb 28, 2022 - Göpfrich Group - Biophysical Engineering of Life
Goepfrich, Kerstin; Walther, Tobias, 2022, "Printing and Erasing of DNA-based Photoresists inside Synthetic Cells [RESEARCH DATA]", https://doi.org/10.11588/data/MKOC9S, heiDATA, V1
In the pursuit to produce functioning synthetic cells from the bottom up, DNA nanotechnology has proven to be a powerful tool. However, the crowded yet highly organized arrangement in living cells, bridging from the nano- to the micron-scale, remains challenging to recreate with...
Mar 7, 2022 - Theoretical Physics
Li, Kunhe; Oiwa, Nestor Norio; Cordeiro, Claudette E.; Heermann, Dieter W., 2022, "Prediction and Comparative Analysis of CTCF Binding Sites based on a First Principle Approach [Research Data]", https://doi.org/10.11588/data/RDISCE, heiDATA, V1
The file contains the CTCF-DNA binding sites for complete genome of Homo sapiens (human), Mus musculus (mouse), Sus scrofa (pig), Capra hircus (goat), Aedes aegypti (dengue and yellow fever mosquito) and Drosophila melanogaster (fruit fly) using electronic nucleotide alignment. T...
Mar 29, 2022 - Theoretical Physics
Li, Kunhe; Oiwa, Nestor N.; Mishra, Sujeet K.; Heermann, Dieter W., 2022, "Inter-Nucleosomal Potentials from Nucleosomal Positioning Data [Research Data]", https://doi.org/10.11588/data/H3KPEU, heiDATA, V1
This dataset accompanies the paper "Inter-Nucleosomal Potentials from Nucleosomal Positioning Data." In this paper, a systematic method to develop inter-nucleosomal potentials between nucleosomes along a chromosome is focused. To this purpose, a modified Lennard-Jones potential i...
Central Institute of Mental Health - Systems Neuroscience in Psychiatry (SNiP)(Heidelberg University, Central Institute of Mental Health, Mannheim)
May 13, 2022
Open Research Data from the RG Systems Neuroscience in Psychiatry (SNiP) at the Central Institute of Mental Health.
May 27, 2022 - Institute of Pathology Mannheim
Legnar, Maximilian; Daumke, Philipp; Hesser, Jürgen; Porubsky, Stefan; Popovic, Zoran; Bindzus, Jan Niklas; Siemoneit, Joern-Helge; Weis, Cleo-Aron, 2022, "NLP in Diagnostic Texts from Nephropathology [Research Data]", https://doi.org/10.11588/data/KS5W0H, heiDATA, V1
This data set contains all annotated topic word tables from the work "NLP in Diagnostic Texts from Nephropathology", as well as all pre-processed and tf-idf-vectorized text files. The raw texts (i.e., descriptive and diagnostic sections) are explicitly not made available, since i...
AG Lindner - Experimental Anesthesiology(Heidelberg University, University Hospital Mannheim)
May 30, 2022
May 30, 2022 - AG Lindner - Experimental Anesthesiology
Lindner, Holger, 2022, "Key Signature Genes of Early Terminal Granulocytic Differentiation Distinguish Sepsis from SIRS on ICU Admission", https://doi.org/10.11588/data/EIXOPN, heiDATA, V1, UNF:6:ZU8BBGGans0NwnKgxMjy8w== [fileUNF]
Background: Infection can induce granulopoiesis. This process potentially gives rise to blood gene classifiers of sepsis in systemic inflammatory response syndrome (SIRS) patients. The aim of this study was to identify sepsis signature genes in blood granulocytes from patients wi...
NCT - Section of Translational Medical Ethics(National Center for Tumor Diseases (NCT))
NCT - Section of Translational Medical Ethics logo
May 30, 2022
Open Research Data from the Section of Translational Medical Ethics at the National Center for Tumor Diseases (NCT).
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