logistic regression with age and body mass
index as covariates under additive genetic
model implemented
Idrisov, Bulat,
Lunze, Karsten,
Cheng, Debbie M.,
Elena Blokhina,
Gnatienko, Natalia,
Quinn, Emily,
Bridden, Carly,
Walley, Alexander Y.,
Bryant, Kendall J.,
Lioznov, Dmitry,
Krupitsky, Evgeny,
Samet, Jefrey H. (2017) ) and serum tests (HVL). To examine the primary outcome, we used multiple logistic regression
modelsBaxter, J.S.,
Johnson, N.,
Tomczyk, K,
Gillespie, A.,
Maguire, S.,
Brough, R.,
Fachal, L,
Michailidou, K.,
Bolla, M.K.,
Wang, Q.,
Dennis, J.,
Ahearn, T.U.,
Bermisheva, M. (2021) increase in IGFBP5 expression of 1.3-fold (MCF-7) and 2.2-fold (T-47D). We propose a
model in which
Ye, L.,
Chen, X.,
Wang, M.,
Jin, L.,
Zhuang, Z.,
Yang, D.,
Guan, X.,
Samorodov, A.V.,
Pavlov, V.N.,
Chattipakorn, N.,
Feng, J.,
Wang, Y.,
Luo, W.,
Liang, G. (2021) -induced cardiomyopathy by suppressing JNK-mediated inflammation. High-fat diet (HFD)-induced obesity mouse
modelTimasheva, Y,
Badykov, M,
Akhmadishina, L,
Nasibullin, T,
Badykova, E,
Pushkareva, A,
Plechev, V,
Sagitov, I,
Zagidullin, N (2021) the studied loci and SSS were tested using logistic regression under recessive genetic
model using sex and age
Bikbov, Mukharram M.,
Zainullin, Rinat M.,
Gilmanshin, Timur R.,
Iakupova, Ellina M.,
Kazakbaeva, Gyulli M.,
Panda-Jonas, Songhomitra,
Tuliakova, Azaliia M.,
Fakhretdinova, Albina A.,
Gilemzianova, Leisan I.,
Jonas, Jost B. (2023) . In the
model, HGS was not correlated with prevalence of nuclear cataract (p=0.38), cortical cataract (p=0
Li, Xiang,
Yin, Lina,
Liao, Jing,
Yang, Jun,
Cai, Binhao,
Yu, Yiming,
Su, Sijia,
Du, Zhiteng,
Li, Xiaobo,
Zhou, Ying,
Chen, Pan,
Cho, Won-Jea,
Chattipakorn, Nipon,
Samorodov, Aleksandr V.,
Pavlov, Valentin N.,
Zhang, Fengzhi,
Liang, Guang,
Tang, Qidong (2023) to MD-2, which resulted in the inhibition of inflammation. In the LPS-induced mouse
model of ALI, L26