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Utilizing engineered extracellular vesicles as delivery vectors in the management of ischemic stroke: a special outlook on mitochondrial delivery Journal article
Jiali Chen, Yiyang Li, Xingping Quan, Jinfen Chen, Yan Han, Li Yang, Manfei Zhou, Greta Seng Peng Mok, Ruibing Wang, Yonghua Zhao. Utilizing engineered extracellular vesicles as delivery vectors in the management of ischemic stroke: a special outlook on mitochondrial delivery[J]. Neural Regeneration Research, 2025, 20(8), 2181-2198.
Authors:  Jiali Chen;  Yiyang Li;  Xingping Quan;  Jinfen Chen;  Yan Han; et al.
Favorite | TC[WOS]:0   IF:5.9/5.2 | Submit date:2024/08/27
Neutrophil-Mimetic Upconversion Photosynthetic Nanosystem Derived from Microalgae for Targeted Treatment of Thromboembolic Stroke Journal article
Quan, Xingping, Liu, Chang, Chen, Jinfen, Li, Yiyang, Yuan, Zhen, Zheng, Ying, Mok, Greta S.P., Wang, Ruibing, Zhao, Yonghua. Neutrophil-Mimetic Upconversion Photosynthetic Nanosystem Derived from Microalgae for Targeted Treatment of Thromboembolic Stroke[J]. ACS Nano, 2024, 18(44), 30307−30320.
Authors:  Quan, Xingping;  Liu, Chang;  Chen, Jinfen;  Li, Yiyang;  Yuan, Zhen; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:15.8/16.2 | Submit date:2024/11/05
Neutrophil-mimetic  Microalgae Thylakoid  Upconversion Nanoparticles  Nir-ii Laser  Atp/nadph Production  Endothelial Protection  
Deep learning-based multi-frequency denoising for myocardial perfusion SPECT Journal article
Du, Yu, Sun, Jingzhang, Li, Chien Ying, Yang, Bang Hung, Wu, Tung Hsin, Mok, Greta S.P.. Deep learning-based multi-frequency denoising for myocardial perfusion SPECT[J]. EJNMMI Physics, 2024, 11(1), 80.
Authors:  Du, Yu;  Sun, Jingzhang;  Li, Chien Ying;  Yang, Bang Hung;  Wu, Tung Hsin; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:3.0/3.7 | Submit date:2024/11/05
Deep Learning  Myocardial Perfusion Spect  Generative Adversarial Network  Denoising  
Radiomics incorporating deep features for predicting Parkinson’s disease in 123I-Ioflupane SPECT Journal article
Jiang, Han, Du, Yu, Lu, Zhonglin, Wang, Bingjie, Zhao, Yonghua, Wang, Ruibing, Zhang, Hong, Mok, Greta S.P.. Radiomics incorporating deep features for predicting Parkinson’s disease in 123I-Ioflupane SPECT[J]. EJNMMI Physics, 2024, 11(1), 60.
Authors:  Jiang, Han;  Du, Yu;  Lu, Zhonglin;  Wang, Bingjie;  Zhao, Yonghua; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:3.0/3.7 | Submit date:2024/08/05
123i-ioflupane  Deep Feature  Deep Learning  Parkinson’s Disease  Radiomics  Spect  
Radiomics incorporating deep features for predicting Parkinson's disease in 123I-Ioflupane SPECT Journal article
Han Jiang, Yu Du, Zhonglin Lu, Bingjie Wang, ZHAO YONGHUA, Ruibing Wang, Hong Zhang, Greta S P Mok. Radiomics incorporating deep features for predicting Parkinson's disease in 123I-Ioflupane SPECT[J]. EJNMMI Phys, 2024, 11(1), 60.
Authors:  Han Jiang;  Yu Du;  Zhonglin Lu;  Bingjie Wang;  ZHAO YONGHUA; et al.
Favorite |  | Submit date:2024/08/03
Cross-Tracer and Cross-Scanner Transfer Learning-Based Attenuation Correction for Brain SPECT Journal article
Sun, Hao, Du, Yu, Lin, Ching Ni, Jiang, Han, Huang, Wenbo, Chiu, Pai Yi, Hung, Guang Uei, Lu, Lijun, Mok, Greta S.P.. Cross-Tracer and Cross-Scanner Transfer Learning-Based Attenuation Correction for Brain SPECT[J]. IEEE Transactions on Radiation and Plasma Medical Sciences, 2024, 8(6), 664-676.
Authors:  Sun, Hao;  Du, Yu;  Lin, Ching Ni;  Jiang, Han;  Huang, Wenbo; et al.
Favorite | TC[WOS]:1 TC[Scopus]:0  IF:4.6/3.6 | Submit date:2024/05/16
Attenuation Correction (Ac)  Brain Spect  99mtc-trodat-1  99mtc-ecd  Transfer Learning (Tl)  
Targeted therapies of inflammatory diseases with intracellularly gelated macrophages in mice and rats Journal article
Gao, Cheng, Wang, Qingfu, Ding, Yuanfu, Kwong, Cheryl H.T., Liu, Jinwei, Xie, Beibei, Wei, Jianwen, Lee, Simon M.Y., Mok, Greta S.P., Wang, Ruibing. Targeted therapies of inflammatory diseases with intracellularly gelated macrophages in mice and rats[J]. Nature Communications, 2024, 15(1), 328.
Authors:  Gao, Cheng;  Wang, Qingfu;  Ding, Yuanfu;  Kwong, Cheryl H.T.;  Liu, Jinwei; et al.
Favorite | TC[WOS]:8 TC[Scopus]:8  IF:14.7/16.1 | Submit date:2024/05/16
IR780/Gemcitabine-conjugated metal-phenolic network enhanced photodynamic cancer therapy Journal article
Zhou, Songtao, Tian, Hao, Yan, Jie, Zhang, Zhan, Wang, Guohao, Yu, Xinying, Sang, Wei, Li, Bei, Mok, Greta S.P., Song, Jie, Dai, Yunlu. IR780/Gemcitabine-conjugated metal-phenolic network enhanced photodynamic cancer therapy[J]. Chinese Chemical Letters, 2024, 35(1), 108312.
Authors:  Zhou, Songtao;  Tian, Hao;  Yan, Jie;  Zhang, Zhan;  Wang, Guohao; et al.
Favorite | TC[WOS]:9 TC[Scopus]:7  IF:9.4/7.3 | Submit date:2024/02/22
Metal Phenolic Network  Ir780  Photodynamic Therapy  Breast Cancer  Gemcitabine  
Machine learning combined with radiomics and deep learning features extracted from CT images: a novel AI model to distinguish benign from malignant ovarian tumors Journal article
Ya-Ting Jan, Pei-Shan Tsai, Wen-Hui Huang, Ling-Ying Chou, Shih-Chieh Huang, Jing-Zhe Wang, Pei-Hsuan Lu, Dao-Chen Lin, Chun-Sheng Yen, Ju-Ping Teng, Greta S. P. Mok, Cheng-Ting Shih, Tung-Hsin Wu. Machine learning combined with radiomics and deep learning features extracted from CT images: a novel AI model to distinguish benign from malignant ovarian tumors[J]. Insights into Imaging, 2023, 14(1).
Authors:  Ya-Ting Jan;  Pei-Shan Tsai;  Wen-Hui Huang;  Ling-Ying Chou;  Shih-Chieh Huang; et al.
Favorite | TC[WOS]:19 TC[Scopus]:21  IF:4.1/5.9 | Submit date:2023/08/03
Computed Tomography  Deep Learning  Machine Learning  Ovarian Tumor  Radiomics  
Lipid bilayer-based biological nanoplatforms for sonodynamic cancer therapy Journal article
Li, Songhao, Mok, Greta S.P., Dai, Yunlu. Lipid bilayer-based biological nanoplatforms for sonodynamic cancer therapy[J]. Advanced Drug Delivery Reviews, 2023, 202.
Authors:  Li, Songhao;  Mok, Greta S.P.;  Dai, Yunlu
Favorite | TC[WOS]:9 TC[Scopus]:9  IF:15.2/17.6 | Submit date:2024/01/10
Cancer Immunotherapy  Cell Membrane Coating  Exosomes  Functional Liposomes  Sonodynamic Therapy  Tumor Microenvironment