Body Composition

Displaying 1 - 8 of 8CSV
Fumagalli, I. A., Warner, E. T., Llanos, A. A. M., Quesenberry, C. P., Chen, W. Y., Caan, B. J., & Cespedes Feliciano, E. M. (2025). Racial and ethnic variation in body composition and prognosis of nonmetastatic breast cancer. Cancer, 131(12). Portico. https://doi.org/10.1002/cncr.35926
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Yi, J., Marcinkiewicz, A. M., Shanbhag, A., Miller, R. J. H., Geers, J., Zhang, W., Killekar, A., Manral, N., Lemley, M., Buchwald, M., Kwiecinski, J., Zhou, J., Kavanagh, P. B., Liang, J. X., Builoff, V., Ruddy, T. D., Einstein, A. J., Feher, A., Miller, E. J., … Slomka, P. J. (2025). AI-based volumetric six-tissue body composition quantification from CT cardiac attenuation scans for mortality prediction: a multicentre study. The Lancet Digital Health, 7(5), 100862. https://doi.org/10.1016/j.landig.2025.02.002
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Ashby‐Thompson, M., Heshka, S., Anderson, A., Pownall, H., Laferrère, B., Balasubramanyam, A., Heymsfield, S. B., Wadden, T. A., & Gallagher, D. (2024). Long‐term sustained effects of the Look AHEAD lifestyle intervention on body composition among adults with type 2 diabetes. Obesity, 32(6), 1093–1101. Portico. https://doi.org/10.1002/oby.24025
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Lowe, M. R., Singh, S., Rosenbaum, M., & Mayer, L. (2024). Physiological, body composition, and body mass measures show that a developmental measure of weight suppression is more valid than the traditional measure. International Journal of Eating Disorders, 57(7), 1599–1608. Portico. https://doi.org/10.1002/eat.24210
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Zemel, B. S., Shepherd, J. A., Grant, S. F. A., Lappe, J. M., Oberfield, S. E., Mitchell, J. A., Winer, K. K., Kelly, A., & Kalkwarf, H. J. (2023). Reference ranges for body composition indices by dual energy X-ray absorptiometry from the Bone Mineral Density in Childhood Study Cohort. The American Journal of Clinical Nutrition, 118(4), 792–803. https://doi.org/10.1016/j.ajcnut.2023.08.006
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Plows, J. F., Berger, P. K., Jones, R. B., Campbell, E., Leibovitch, E., Alderete, T. L., Horowitz, M., Pi-Sunyer, X., Gallagher, D., & Goran, M. I. (2022). Development and Validation of a Prediction Model for Infant Fat Mass. The Journal of Pediatrics, 243, 130-134.e2. https://doi.org/10.1016/j.jpeds.2021.12.058
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Gopalakrishnamoorthy, M., Whyte, K., Horowitz, M., Widen, E., Toro‐Ramos, T., Johnson, J., Gidwani, S., Paley, C., Rosenn, B., Lin, S., Thornton, J., Pi‐Sunyer, X., & Gallagher, D. (2021). Anthropometric models to estimate fat mass at 3 days, 15 and 54 weeks. Pediatric Obesity, 17(3). Portico. https://doi.org/10.1111/ijpo.12855
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