Yang, Y.; Fink, N.; Emrich, T.; Graafen, D.; Richter, R.; Bockius, S.; Wolf, E.V.; Laux, G.; Kavermann, L.; Müller, L.;
et al. Optimization of Kernel Type and Sharpness Level Improves Objective and Subjective Image Quality for High-Pitch Photon Counting Coronary CT Angiography. Diagnostics 2023, 13, 1937.
https://doi.org/10.3390/diagnostics13111937
AMA Style
Yang Y, Fink N, Emrich T, Graafen D, Richter R, Bockius S, Wolf EV, Laux G, Kavermann L, Müller L,
et al. Optimization of Kernel Type and Sharpness Level Improves Objective and Subjective Image Quality for High-Pitch Photon Counting Coronary CT Angiography. Diagnostics. 2023; 13(11):1937.
https://doi.org/10.3390/diagnostics13111937
Chicago/Turabian Style
Yang, Yang, Nicola Fink, Tilman Emrich, Dirk Graafen, Rosa Richter, Stefanie Bockius, Elias V. Wolf, Gerald Laux, Larissa Kavermann, Lukas Müller,
and et al. 2023. "Optimization of Kernel Type and Sharpness Level Improves Objective and Subjective Image Quality for High-Pitch Photon Counting Coronary CT Angiography" Diagnostics 13, no. 11: 1937.
https://doi.org/10.3390/diagnostics13111937
APA Style
Yang, Y., Fink, N., Emrich, T., Graafen, D., Richter, R., Bockius, S., Wolf, E. V., Laux, G., Kavermann, L., Müller, L., Hell, M., & Halfmann, M. C.
(2023). Optimization of Kernel Type and Sharpness Level Improves Objective and Subjective Image Quality for High-Pitch Photon Counting Coronary CT Angiography. Diagnostics, 13(11), 1937.
https://doi.org/10.3390/diagnostics13111937