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Frontiers in Neuroscience|January 14, 2017
Evaluating the Influence of Spatial Resampling for Motion Correction in Resting-State Functional MRILisha Yuan, Hongjian He, Han Zhang, et al.Pesticide Biochemistry and Physiology|December 13, 2024
HcCYP6AE178 plays a crucial role in facilitating Hyphantria cunea's adaptation to a diverse range of host plantsTao Li, Lisha Yuan, Dun Jiang, et al.Insect Science|March 24, 2026
Molecular basis of polyphagy: The detoxification gene HcGST18 underlies host plant adaptation in the Hyphantria cuneaLisha Yuan, Tao Li, Dun Jiang, et al.Insect Science|July 14, 2026
The HcUGT40R20 mediates the host plant adaptation of Hyphantria cunea: Providing a potential target for RNAi-based formulation control strategiesTao Li, Yi Huang, Lisha Yuan, et al.Insects|May 26, 2023
Digestive Characteristics of Hyphantria cunea Larvae on Different Host PlantsAoying Zhang, Tao Li, Lisha Yuan, et al.Nan Fang Yi Ke Da Xue Xue Bao = Journal of Southern Medical University|March 21, 2019
[Palm vein recognition based on end-to-end convolutional neural network]Dongyang Du, Lijun Lu, Ruiyang Fu, et al.Pesticide Biochemistry and Physiology|March 8, 2024
Identification and potential application of key insecticidal metabolites in Tilia amurensis, a low-preference host of Hyphantria cuneaLisha Yuan, Tao Li, Yi Huang, et al.The Journal of Organic Chemistry|October 12, 2023
A Carbazole-1,8-Disulfonamide-Derived Cryptand Receptor for Anion RecognitionJunhong Li, Lisha Yuan, Qinrong Yang, et al.Pesticide Biochemistry and Physiology|November 9, 2023
Assessment of cytisine as an insecticide candidate for Hyphantria cunea management: Toxicological, biochemical, and control potential insightsTao Li, Lisha Yuan, Yi Huang, et al.Frontiers in Endocrinology|April 1, 2022
Derivation and Validation of a Prediction Model of End-Stage Renal Disease in Patients With Type 2 Diabetes Based on a Systematic Review and Meta-analysisQiuyue Ren, Dong Chen, Xinbang Liu, et al.Pageof 2