Sections Text Area Representative Achievements Text Area An innovative intracranial optic tract injury model to reveal mechanisms of axonal rewiring following CNS injury Text Area Alzheimer's Disease-Protective Genetic Factors and Disease Mechanisms Text Area Microglia’s Crucial Role in Preventing Axonal Degeneration Following Spinal Cord Injury Text Area Highly Accurate Universal Diagnostic Blood Test for Alzheimer’s Disease and Mild Cognitive Impairment Text Area Promising Target for Alzheimer’s Disease Treatment Text Area Early Predictors of Glioma Evolution by Self-constructed Machine-learning Model CELLO2 Text Area Applying Artificial Intelligence for Early Risk Forecasting of Alzheimer’s Disease Text Area Novel Technology to Identify Rare Brain Tumor Cell "Spies" Text Area Intrinsic Immune Mechanism that Boosts Axon Regeneration in the Adult Nervous System Text Area Chromatin Signature of an Aging Cell Text Area Innovative strategy targeting a blood Protein for therapeutic treatment of Alzheimer's Disease Text Area Near-non-invasive in-vivo imaging in mouse cortex at an unprecedented depth Text Area A novel strategy using brain-wide genome-editing technology that can reduce Alzheimer’s disease pathologies in genetically modified AD mouse models Text Area A simple but robust blood test for early detection and screening of Alzheimer’s disease (AD) in Chinese patients, with an accuracy level of over 96% Text Area Strengthen Your Brain with Chinese Herbs to Prevent Alzheimer’s Text Area Using single-cell transcriptome analysis to study patients’ brain and identify new therapeutic targets for Alzheimer’s disease Text Area A new technology - adaptive optics two photon endomicroscopy - that enables in vivo imaging of deep brain structures at high resolution Text Area A novel mechanism that helps delay degradation of injured nerves Text Area Identification of new Alzheimer’s disease genetic risk factors in the Chinese population Text Area Breakthrough Discoveries at HKUST Offer New Hope for Treatment of Alzheimer's Disease Text Area Elucidating the role of EphA4 in the pathogenesis of Alzheimer’s disease Text Area A novel mechanism underlying brain cell production and cortical expansion that provides insights into pathology of autism and neurodevelopmental disorders