This web page was created programmatically, to learn the article in its unique location you may go to the hyperlink bellow:
https://link.springer.com/article/10.1186/s12889-025-26180-9
and if you wish to take away this text from our web site please contact us
Kim J, Harper A, McCormack V, Sung H, Houssami N, Morgan E, Mutebi M, Garvey G, Soerjomataram I, Fidler-Benaoudia MM. Global patterns and traits in breast most cancers incidence and mortality throughout 185 international locations. Nat Med. 2025; 31(4):1154-62.
Zeinomar N, Phillips KA, Daly MB, Milne RL, Dite GS, MacInnis RJ, Liao Y, Kehm RD, Knight JA, Southey MC, et al. Benign breast illness will increase breast most cancers threat unbiased of underlying Familial threat profile: findings from a potential household examine cohort. Int J Cancer. 2019;145(2):370–9.
Figueroa JD, Gierach GL, Duggan MA, Fan S, Pfeiffer RM, Wang Y, Falk RT, Loudig O, Abubakar M, Ginsberg M, et al. Risk components for breast most cancers improvement by tumor traits amongst ladies with benign breast illness. Breast Cancer Research: BCR. 2021;23(1):34.
Long Y, Zhang W, Zheng M, Xie Q, Liu H, Hu X, Zhang X, Huang W, Gao X, Jiang C, et al. Association between breast nodules, anxiousness, melancholy and metabolic threat components in a Chinese cohort. Front Psychiatry. 2023;14:944354.
Chen J, Xu Z, Hou L, Tang Y, Qian S, Pu H, Tang J, Gao Y. Correlation evaluation of breast and thyroid nodules: A Cross-Sectional examine. Int J Gen Med. 2021;14:3999–4010.
Srivastava V, Meena RK, Ansari MA, Kumar D, Kumar A. A examine of hysteria and melancholy in benign breast illness. J mid-life Health. 2020;11(4):200–9.
Berkey CS, Tamimi RM, Willett WC, Rosner B, Hickey M, Toriola AT, Lindsay Frazier A, Colditz GA. Dietary consumption from delivery by adolescence in relation to threat of benign breast illness in younger ladies. Breast Cancer Res Treat. 2019;177(2):513–25.
Magny SJ, Shikhman R, Keppke AL. Breast Imaging Reporting and Data System. In StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2023.
Hopwood CJ, Bleidorn W, Wright AGC. Connecting concept to strategies in longitudinal analysis. Perspect Psychol Science: J Association Psychol Sci. 2022;17(3):884–94.
Zhao Z, Hou S, Li S, Sheng D, Liu Q, Chang C, Chen J, Li J. Application of deep studying to scale back the speed of malignancy amongst BI-RADS 4A breast lesions primarily based on ultrasonography. Ultrasound Med Biol. 2022;48(11):2267–75.
Levis B, Sun Y, He C, Wu Y, Krishnan A, Bhandari PM, Neupane D, Imran M, Brehaut E, Negeri Z, et al. Accuracy of the PHQ-2 alone and together with the PHQ-9 for screening to detect main melancholy: systematic assessment and Meta-analysis. JAMA. 2020;323(22):2290–300.
Kroenke Ok, Spitzer RL, Williams JB, Monahan PO, Löwe B. Anxiety issues in main care: prevalence, impairment, comorbidity, and detection. Ann Intern Med. 2007;146(5):317–25.
Seo JG, Park SP. Validation of the generalized anxiousness Disorder-7 (GAD-7) and GAD-2 in sufferers with migraine. J Headache Pain. 2015;16:97.
Harrell, Frank E. Regression modeling methods: with functions to linear Models, logistic Regression, and survival evaluation. 2nd printing, Springer, 2006.
Kim JH, Lee J, Jung SY, Kim J. Dietary components and feminine breast most cancers threat: A potential cohort examine. Nutrients. 2017;9(12):1331.
Korde LA, Wu AH, Fears T, Nomura AM, West DW, Kolonel LN, Pike MC, Hoover RN, Ziegler RG. Childhood soy consumption and breast most cancers threat in Asian American ladies. Cancer Epidemiol Biomarkers Prevention: Publication Am Association Cancer Res Cosponsored Am Soc Prev Oncol. 2009;18(4):1050–9.
Wei Y, Lv J, Guo Y, Bian Z, Gao M, Du H, Yang L, Chen Y, Zhang X, Wang T, et al. Soy consumption and breast most cancers threat: a potential examine of 300,000 Chinese ladies and a dose-response meta-analysis. Eur J Epidemiol. 2020;35(6):567–78.
Fraser GE, Jaceldo-Siegl Ok, Orlich M, Mashchak A, Sirirat R, Knutsen S. Dairy, soy, and threat of breast most cancers: these confounded milks. Int J Epidemiol. 2020;49(5):1526–37.
Cowen S, McLaughlin SL, Hobbs G, Coad J, Martin KH, Olfert IM, Vona-Davis L. High-Fat, High-Calorie weight loss plan enhances mammary carcinogenesis and native irritation in MMTV-PyMT mouse mannequin of breast most cancers. Cancers. 2015;7(3):1125–42.
Katuwal S, Tapanainen J, Pukkala E. Multivariate evaluation of unbiased roles of socioeconomic standing, occupational bodily exercise, reproductive components, and postmenopausal hormonal remedy in threat of breast most cancers. Breast Cancer Res Treat. 2022;193(2):495–505.
Dixon-Suen SC, Lewis SJ, Martin RM, English DR, Boyle T, Giles GG, Michailidou Ok, Bolla MK, Wang Q, Dennis J, et al. Physical exercise, sedentary time and breast most cancers threat: a Mendelian randomisation examine. Br J Sports Med. 2022;56(20):1157–70.
Feng Y, Fu M, Guan X, Wang C, Yuan F, Bai Y, Meng H, Li G, Wei W, Li H, et al. Uric acid mediated the affiliation between BMI and postmenopausal breast most cancers incidence: A bidirectional Mendelian randomization evaluation and potential cohort examine. Front Endocrinol. 2021;12:742411.
Richmond RC, Anderson EL, Dashti HS, Jones SE, Lane JM, Strand LB, Brumpton B, Rutter MK, Wood AR, Straif Ok, et al. Investigating causal relations between sleep traits and threat of breast most cancers in ladies: Mendelian randomisation examine. BMJ (Clinical Res ed). 2019;365:l2327.
Samuelsson LB, Bovbjerg DH, Roecklein KA, Hall MH. Sleep and circadian disruption and incident breast most cancers threat: an evidence-based and theoretical assessment. Neurosci Biobehav Rev. 2018;84:35–48.
Johansson A, Christakou AE, Iftimi A, Eriksson M, Tapia J, Skoog L, Benz CC, Rodriguez-Wallberg KA, Hall P, Czene Ok, et al. Characterization of benign breast ailments and affiliation with Age, hormonal Factors, and household historical past of breast most cancers amongst ladies in Sweden. JAMA Netw Open. 2021;4(6):e2114716.
Su Y, Li X, Li H, Xu J, Xiang M. Association between sedentary habits throughout leisure time and extreme weight in Chinese Children, Adolescents, and adults. Nutrients. 2023;15(2):424.
Zhang M, Bao H, Zhang X, Huang Z, Zhao Z, Li C, Zhou M, Wu J, Wang L, Wang L. Breast most cancers screening Coverage – China, 2018–2019. China CDC Wkly. 2023;5(15):321–6.
Sun L, Legood R, Sadique Z, Dos-Santos-Silva I, Yang L. Cost-effectiveness of risk-based breast most cancers screening programme, China. Bull World Health Organ. 2018;96(8):568–77.
This web page was created programmatically, to learn the article in its unique location you may go to the hyperlink bellow:
https://link.springer.com/article/10.1186/s12889-025-26180-9
and if you wish to take away this text from our web site please contact us

