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[1].  SCA-Net: Semantic text-enhanced context-aware multimodal framework for fish feeding assessment in....  EXPERT SYSTEMS WITH APPLICATIONS.  326.  2026. 
[2].  Real-time frame-level fish feeding behavior detection using a lightweight CNN-TCN architecture.  COMPUTERS AND ELECTRONICS IN AGRICULTURE.  246.  2026. 
[3].  Exploring land subsidence changes and its driving factors in mine areas: a case study in the Dagu....  GEOSCIENCES JOURNAL.  29 (4).  2025. 
[4].  Time-Series Land Subsidence Monitoring Based on GeoDistillBERT-BiLSTM Framework in Mine Areas.  TRANSACTIONS IN GIS.  29 (5).  2025. 
[5].  Zongyao , Qin ,  Zilong ,  Zongyao , Qin ,  Zilong , Sha ,  Zongyao , Qin ,  Zilong ,  Sha ,  Zongyao , Qin 和  Zilong.  Modeling the impact of urbanization and climate changes on terrestrial vegetation productivity in....  ECOLOGICAL MODELLING.  482.  2023. 
[6].  Can more carbon be captured by grasslands? A case study of Inner Mongolia, China.  SCIENCE OF THE TOTAL ENVIRONMENT.  723.  2022. 
[7].  Modeling urban growth sustainability in the cloud by augmenting Google Earth Engine (GEE).  COMPUTERS ENVIRONMENT AND URBAN SYSTEMS.  84.  2022. 
[8].  MITformer: A Multiinstance Vision Transformer for Remote Sensing Scene Classification.  IEEE GEOSCIENCE AND REMOTE SENSING LETTERS.  19.  2022. 
[9].  The global carbon sink potential of terrestrial vegetation can be increased substantially by opti....  NATURE COMMUN. EARTH & ENVIRONMENT.  3 (1).  2022. 
[10].  Yichun ,  Zongyao ,  Yichun , Sha ,  Zongyao , Xie ,  Yichun , Sha ,  Zongyao ,  Ruren ,  Li ,  Jonathan ,  Xie ,  Yichun , Sha 和  Zongyao.  Estimating Carbon Sequestration Potential in Vegetation by Distance-Constrained Zonal Analysis.  IEEE GEOSCIENCE AND REMOTE SENSING LETTERS.  18 (8).  1352-1356.  2021. 
[11].  Modeling urban growth by coupling localized spatio-temporal association analysis and binary logis....  COMPUTERS ENVIRONMENT AND URBAN SYSTEMS.  81.  2020. 
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