2016, Time-dependent expression of MMP-2 and TIMP-2 after rats skeletal muscle contusion and their application to determine wound age. Journal of forensic sciences (in press). (SCI)
2015, Beneficial effects of cannabinoid receptor type 2 (CB2R) in injured skeletal muscle post-contusion. Histology and histopathology, 30(6): 737-749. (SCI)
2015, Time-dependent appearances of myofibroblasts during the repair of contused skeletal muscle in rat and its application for wound age determination. Journal of Forensic Medicine, 31(1): 1-6.
2015, Time-dependent changes of ratios of neutrophils and macrophages after skeletal muscle injury in rats. Chinese Journal of Forensic Medicine, 30(1): 16-19.
2015, Advanced study on matrix metalloproteinase-2 and its significance in forensic medicine. Chinese Journal of Forensic Medicine, 30(6): 593-596.
2014, Correlation between Percentages of PMN, MNC, FBC and Wound Age after Skeletal Muscle Injury in Rats. Journal of Forensic Medicine, 30(3): 166-168.
2014, Advance in study on transforming growth factor-β1 and its applicable value in forensic medicine. Chinese Journal of Forensic Medicine, 29(4): 333-336.
2014, Time-dependent changes of pathology after skeletal muscle injury in rats. Chinese Journal of Forensic Medicine, 29(5): 431-433.
2013, Quantitative analysis of neutrophils, macrophages and myofibroblasts after skeletal muscle injury in rats. Chinese Journal of Histochemistry and Cytochemistry, 22(6): 457-461.
2013, Advanced study on myofibroblasts in fibrotic diseases. Chinese Journal of Histochemistry and Cytochemistry, 22(2): 167-171.
2013, Progress in Myofibroblast and Its Application in Forensic Medicine. Journal of Forensic Medicine, 29(2): 140-142.
2010, The cannabinoid receptor type 2 is time-dependently expressed during skeletal muscle wound healing in rats. Int J Legal Med, 124(5): 397-404. (SCI)
2008, Advances in the study on FAK-ERK and its applicable value in forensic medicine. Chinese Journal of Forensic Medicine, 23(5): 318-320.
2008, Animal model of grading skeletal muscle contusion due to blunt impact in rats. Journal of Forensic Medicine, 24(3): 168-171.