1. Kao YC, Lui Y, Lu CF, Chen HL, Hsieh BY, Chen CY. Behavioral and structural effects of single and repeated closed-head injury. Am J Neuroradiol,
  2. Chui FY, Kuo DB, Chen YC, Kao YC, Chung HW, Chen CY. Diffusion Tensor-Derived Properties of Benign Oligemia, True “At Risk” Penumbra, and Infarct Core during the First Three Hours of Stroke Onset: A Rat Model. Kor J Radiol. 2018. 19(6):1161-1171.
  3. Lee GA, Ling TN, Chen CY, Mao SY, Huang YZ, Kao YC, Ma RY, Liao NS. Interleukin 15 blockade protects the brain from cerebral ischemia-reperfusion injury. Brain Behav Immun. 2018. 73:562-570.
  4. Lu CF, Hsu FT, Hsieh LC, Kao YC, Hsu BK, Tsai PH, Chen RC, CC Huang, Y Yen, Chen CY. Machine Learning-Based Radiomics for Molecular Subtyping of Gliomas. Clin Cancer Res. 2018. 24(18):4429-4436.
  5. Hsu FT, Liu HS, Ali AAA, Tsai PH, Kao YC, Lu CF, Huang HS, Chen CY. Assessing the Selective Therapeutic Efficacy ofSuperparamagnetic Erlotinib Nanoparticles in Lung Cancer by Using Quantitative Magnetic Resonance Imaging and a Nuclear Factor Kappa-B Reporter Gene System. -Nanotechnol. Biol. Med. 2018, 14:1019-1031.
  6. Chen HL, Hsu FT, Kao YC, Liu HS, Huang WZ, Lu CF, Tsai PH, Ali AAA, Lee GA, Chen RJ, Chen CY. Identification of epidermal growth factor receptor-positive glioblastoma using lipid-encapsulated targeted superparamagnetic iron oxide nanoparticles in vitro. J Nanobiotechnol. 2017. 15(1):86.
  7. Kao YC, Oyazabal E, Hua Z, Faber J. Shih YY*. The Role of Genetic Variation in Collateral Circulation in the Evolution of Acute Stroke: A Multimodal MRI Study. Stroke; 2017, 48:754-761.
  8. Decot H, Namboodiri VMK, Gao W, McHenry J, Jennings J, Lee SH, Kantak P, Kao YC, Das M, Witten I, Deisseroth K, Shih YY*, Stuber G*. Coordination of Brain Wide Activity Dynamics by Dopaminergic Neurons. Neuropsychopharmacol, 2017; 42(3):615-627.
  9. Yang LY, Greig NH, Huang YN, Hsieh TH, Tweedie D, Yu QS, Hoffer BJ, Kao YC, Wang JY. Post-traumatic Administration of the p53 Inactivator Pifithrin-α Oxygen Analogue Reduces Hippocampal Neuronal Loss and Improves Cognitive Deficits after Experimental Traumatic Brain Injury. Neurobiol Dis, 2016; 96:216-226.
  10. Lai HY, Albaugh DL, Kao YC, Younce JR, Shih YY*. Robust deep brain stimulation functional MRI procedures in rats and mice using an MR-compatible tungsten microwire electrode. Mag Res Med, 2015; 73:1246-1251.
  11. Kao YC, Li W, Lai HY, Oyazabal E, Lin W, Shih YY*. Dynamic Perfusion and Diffusion MRI of Cortical Spreading Depolarization in Photothrombotic Ischemia. Neurobiol Dis, 2014; 71:131-9.
  12. Shih YY*, Huang S, Chen YY, Lai HY, Du F, Kao YC, Hui E, Duong TQ. Imaging neurovascular function and functional recovery after stroke in the rat striatum using forepaw stimulation. J Cereb Blood Flow Metab, 2014; 34(9): 1483-92.
  13. Lai HY, Younce JR, Albaugh DL, Kao YC, Shih YY*. Functional MRI reveals frequency-dependent responses during deep brain stimulation at the subthalamic nucleus or internal globus pallidus. Neuroimage, 2014; 84(1):11-18.
  14. Shih YY*, Chen YY, Lai HY, Kao YC, Shyu BC, Duong TQ. Ultrahigh-resolution fMRI and electrophysiology of the rat primary somatosensory cortex. Neuroimage, 2013; 73:113-120.
  15. Kao YC, Jaw FS*. “Optimal Parameters of CO2 Laser-Induced Nociception for Electrophysiological Recordings,” J Comp Physiol A. 2012; 198:79-83.
  16. Jaw FS*, Kao YC, Chen CP, Liao WL. Cerebral Columnar Organization of the First Nociceptive Component Induced by CO2 Laser on the Tail of the Rat, Neuroscience 2009; 158: 945-950.
  17. Jaw FS*, Kao YC, Chen CP, Chen YY. High-fidelity Evoked Potential for Mapping the Rat Tail in Thalamus, Neuroscience 2008; 155:277-282.
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