School of Pharmaceutical Science and Technology, Medical College
Professor
Dean
xiuyun_liu@tju.edu.cn
Room A203, Teaching Building No. 24, Tianjin University
300072
Xiuyun Liu is a Distinguished Professor at Tianjin University, Dean of the School of Pharmaceutical Science and Technology, and Deputy Dean of the Faculty of Medicine. She also serves as Deputy Director of the State Key Laboratory of Advanced Medical Materials and Devices and of the Haihe Laboratory of Brain–Computer Interaction and Human–Machine Integration, and as Executive Director of the MOE Innovation Center for Fundamental Medical Research in Neurocritical Care. She is the Principal Investigator of a National Key Research and Development Program project and a recipient of national-level talent recognitions, including the Tianjin Distinguished Young Scholar honor.
Professor Liu received her PhD in Clinical Neuroscience from the University of Cambridge and completed postdoctoral training at the University of California, San Francisco, and Johns Hopkins University. She joined Tianjin University in 2021.
She is a Fellow of the Royal Society of Medicine, a member of the SOCCA Academic Committee, and holds leadership roles in the Chinese Society of Biomedical Engineering, the Chinese Medical Rescue Association, and the Tianjin Society of Perioperative Medicine. She serves as Associate Editor of Journal of Intelligent Medicine and Co-Editor of Current Molecular Pharmacology.
Her honors include the MIT Technology Review Innovators Under 35 Asia Pacific, the inaugural National New Era Youth Pioneer Award, the First Prize of the Tianjin Science and Technology Progress Award as first principal contributor, and the Tianjin March 8 Red-Banner Holder.
- Doctoral degree| University of Cambridge| Clinical Neuroscience| 2017
- Master’s Degree| Tianjin University| Biomedical Engineering| 2012
- Bachelor’s Degree| Tianjin University| BME| 2009
- Neurocritical care and brain–computer interfaces for hydrocephalus-related reversible dementia, dementia, TBI, epilepsy, stroke, and delirium.
Developing diagnostic and therapeutic technologies to overcome engineering bottlenecks and enable precise therapy.
- Vice Chair, Acupuncture and Rehabilitation Branch, Tianjin Society of Perioperative Medicine
- Vice Chair, Life Support Technology Branch, Chinese Medical Rescue Association
- Council Member, Chinese Society of Biomedical Engineering; Vice Chair, Sensor Branch, Chinese Society of Biomedical Engineering
- Member, Academic Committee, Society of Critical Care Anesthesiologists (SOCCA)
- Fellow of the Royal Society of Medicine (FRSM)
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2024.5-Now
School of Pharmaceutical Science and Technology | Tianjin University | Dean and Professor  -
2019.6-2021.6
 Johns Hopkins University, USA  -
2021.7-2024.5
Medical School of Tianjin University、School of Precision Instrument and Opto-electronics Engineering | Tianjin University  -
2017.6-2019.6
 University of California, San Francisco, USA 
- Papers
- [1] Monitoring of Optimal Cerebral Perfusion Pressure in Traumatic Brain Injured Patients Using a Multi-Window Weighting Algorithm
- [2] Advancing Hydrocephalus Management: Pathogenesis Insights, Therapeutic Innovations, and Emerging Challenges. Aging Dis
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- [3] Lead (Pb) load interacts with oxidative stress in Drosophila melanogaster through MTF-1/Nrf2/JNK mediated metallothionein expression
- [4] Hydrocephalus: An update on latest progress in pathophysiological and therapeutic research
- [5] Insights on neuropharmacological benefits and risks: Aconitum carmichaelii Debx
- [6] Kukoamine A alleviates nephrolithiasis by inhibiting endogenous oxalate synthesis via the IL-6/JAK/STAT3/DAO signaling pathway
- [7] Deep learning-based classification and segmentation of interictal epileptiform discharges using multichannel electroencephalography
- [8] Multi-task transformer network for subject-independent iEEG seizure detection
- [9] Morphological changes of intracranial pressure quantifies vasodilatory effect of verapamil to treat cerebral vasospasm
- [10] Comparison of frequency and time domain methods of assessment of cerebral autoregulation in traumatic brain injury
- [11] Heart-brain axis: low blood pressure during off-pump CABG surgery is associated with postoperative heart failure
- [12] Impaired cerebral autoregulation: measurement and application to stroke
- [13] Congenital hydrocephalus: a review of recent advances in genetic etiology and molecular mechanisms
- [14] Wavelet pressure reactivity index: a validation study
- [15] Photoacoustic imaging in brain disorders: Current progress and clinical applications
- [16] Recent applications of EEG-based brain-computer-interface in the medical field
- [17] he association of bispectral index values and metrics of cerebral perfusion during cardiopulmonary bypass
- [18] Determining Thresholds for Three Indices of Autoregulation to Identify the Lower Limit of Autoregulation During Cardiac Surgery
- [19] Bispecific Nanosystems Enable Multi-effector Immune Cell Retargeting for Hematologic Malignancy Therapy
- [20] Comparison of different metrics of cerebral autoregulation in association with major morbidity and mortality after cardiac surgery
- [21] Cerebrovascular pressure reactivity monitoring using wavelet analysis in traumatic brain injury patients: A retrospective study
- Patents
- [1] United States Patent (Pending) AN INPH PREDICTION METHOD AND DEVICE BASED ON THE NEW/OLD STIMULUS BCI PARADIGM
- [2] United States Patent (Pending) APPLICATION OF CARBASALATE CALCIUM IN PREPARING DRUG FOR TREATMENT OF HYDROCEPHALUS
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- [3] United States Patent (Pending) MULTI-MODAL DATA ACQUISITION AND HYDROCEPHALUS DIAGNOSIS METHOD BASED ON CEREBROSPINAL FLUID CIRCULATION
- [4] United States Patent (Pending) IN VIVO NON-INVASIVE INTRACRANIAL PRESSURE MONITORING DEVICE AND METHOD BASED ON MENINGEAL ABSORBANCE CHANGES
- [5] China Invention Patent CN117752317B In Vivo Non-Invasive Intracranial Pressure Monitoring Device and Method Based on Meningeal Absorbance Changes
- [6] China Invention Patent CN117918856B iNPH Prediction Method and Device Based on New/Old Stimulus BCI Paradigm
- [7] China Invention Patent CN117751892B Method for Constructing a Neonatal Hemorrhagic Hydrocephalus Model
- [8] China Invention Patent CN117936066B iNPH Prediction Method Based on Visual Oddball Paradigm
- [9] China Invention Patent CN118177973B Augmented-Reality-Based Transcranial Doppler Intracranial Vascular Navigation and Localization Method and System
- [10] China Invention Patent CN118380139B U-Net-Based Single-Channel EEG Epileptic Spike Detection Method and Device
- [11] China Invention Patent CN119185330B Application of Carbasalate Calcium in Preparation of Drugs for Treating Hydrocephalus
- [12] China Design Patent CN308783817S Multimodal Intelligent Diagnostic Device for Hydrocephalus
- [13] China Software Copyright 2023SRO668137 Intraoperative Anesthetic Depth Calculation System for Patients V1.0
- [14] China Software Copyright 2024SR0739552 Automated Stroke Image Segmentation and Analysis System [abbr. SIAS] V1.0
- [15] China Software Copyright 2024SR0958353 Epileptic EEG Spike Analysis System V1.0
- [16] China Software Copyright 2024SR1185582 Brain Spatial Cognitive Ability Assessment and Enhancement System [abbr. SCAS] V1.0
- [17] China Software Copyright 2023SRO668138 Sepsis Multiple Organ Failure Prediction System [abbr. SMOFPS] V1.0
- [18] China Software Copyright 2025SR0634630 Automatic Identification and Prediction System for Fungal Morphology [abbr. FungusAI] V1.0
- Honors & Awards
- [1] Inaugural National New Era Youth Pioneer Award
- [2] Young Scientist Award, Ministry of Education of China
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- [3] National March 8 Red-Banner Holder
- [4] Baosteel Excellent Teacher Award
- [5] 8th Translational Medicine Award
- [6] MIT Technology Review Innovators Under 35 Asia Pacific
- [7] First Prize of Tianjin Science and Technology(1st Principal Contributor)
- [8] Grand Prize, World Robot Contest
- [9] Qidi Award for Global Women Scientists
- [10] Wiley China Highly Contribution Author Award




