Dora, D.; Weiss, G.J.; Megyesfalvi, Z.; Gállfy, G.; Dulka, E.; Kerpel-Fronius, A.; Berta, J.; Moldvay, J.; Dome, B.; Lohinai, Z.
Computed Tomography-Based Quantitative Texture Analysis and Gut Microbial Community Signatures Predict Survival in Non-Small Cell Lung Cancer. Cancers 2023, 15, 5091.
https://doi.org/10.3390/cancers15205091
AMA Style
Dora D, Weiss GJ, Megyesfalvi Z, Gállfy G, Dulka E, Kerpel-Fronius A, Berta J, Moldvay J, Dome B, Lohinai Z.
Computed Tomography-Based Quantitative Texture Analysis and Gut Microbial Community Signatures Predict Survival in Non-Small Cell Lung Cancer. Cancers. 2023; 15(20):5091.
https://doi.org/10.3390/cancers15205091
Chicago/Turabian Style
Dora, David, Glen J. Weiss, Zsolt Megyesfalvi, Gabriella Gállfy, Edit Dulka, Anna Kerpel-Fronius, Judit Berta, Judit Moldvay, Balazs Dome, and Zoltan Lohinai.
2023. "Computed Tomography-Based Quantitative Texture Analysis and Gut Microbial Community Signatures Predict Survival in Non-Small Cell Lung Cancer" Cancers 15, no. 20: 5091.
https://doi.org/10.3390/cancers15205091
APA Style
Dora, D., Weiss, G. J., Megyesfalvi, Z., Gállfy, G., Dulka, E., Kerpel-Fronius, A., Berta, J., Moldvay, J., Dome, B., & Lohinai, Z.
(2023). Computed Tomography-Based Quantitative Texture Analysis and Gut Microbial Community Signatures Predict Survival in Non-Small Cell Lung Cancer. Cancers, 15(20), 5091.
https://doi.org/10.3390/cancers15205091