1.A three-dimensional virtual simulation platform for Mongolian medical brain vibration therapy constructed based on the three-dimensional motion capture technology
Xue BAI ; Xing WANG ; Guoping HONG ; Rushuo JIA ; Qi HAN ; Huaiyu GUO ; Hongkai NIU ; Shaojie ZHANG ; Lumen CHAO
Chinese Journal of Tissue Engineering Research 2025;29(18):3826-3832
BACKGROUND:Three-dimensional(3D)Motion Capture Technology can build accurate,objective,and quantized medical virtual simulation model,which is conducive to clinical learners'precise and in-depth understanding and mastery of various traditional therapies.The virtual simulation model of traditional Chinese medicine based on the 3D Motion Capture Technology has been reported,but such a system of traditional Mongolian medicine therapy has not been reported.OBJECTIVE:To construct an interactive 3D visualization virtual simulation model based on the 3D Motion Capture Technology.METHODS:Motion capture data of the professor of Mongolian Medicine Department were collected using the 3D optical motion capture system(Motion Analysis)and Plantar Force Platform.The 3D motion model of brain vibration therapy was constructed using Motion Builder software,and the role model was constructed using Maya software matched with the action model.Unity3D software was used to build a virtual simulation system of Mongolian medical brain vibration therapy.The system integrated information on 3D animation,kinematic and dynamic parameters of Mongolian medical brain vibration therapy.RESULTS AND CONCLUSION:By using 3D Motion Capture Technology and Computer Simulation Technology to reconstruct the operation of Mongolian medical brain vibration therapy,it can display the posture of the operator and subject and record the key parameters of spatial position and changes of joint motion to obtain kinematic and dynamic parameters.The interactive 3D virtual simulation technology is used to realize the visual presentation of 3D virtual simulation of Mongolian medical brain vibration therapy.It lays a foundation for the standardization,digitization and visualization of Mongolian medical brain vibration therapy.
2.A three-dimensional virtual simulation platform for Mongolian medical brain vibration therapy constructed based on the three-dimensional motion capture technology
Xue BAI ; Xing WANG ; Guoping HONG ; Rushuo JIA ; Qi HAN ; Huaiyu GUO ; Hongkai NIU ; Shaojie ZHANG ; Lumen CHAO
Chinese Journal of Tissue Engineering Research 2025;29(18):3826-3832
BACKGROUND:Three-dimensional(3D)Motion Capture Technology can build accurate,objective,and quantized medical virtual simulation model,which is conducive to clinical learners'precise and in-depth understanding and mastery of various traditional therapies.The virtual simulation model of traditional Chinese medicine based on the 3D Motion Capture Technology has been reported,but such a system of traditional Mongolian medicine therapy has not been reported.OBJECTIVE:To construct an interactive 3D visualization virtual simulation model based on the 3D Motion Capture Technology.METHODS:Motion capture data of the professor of Mongolian Medicine Department were collected using the 3D optical motion capture system(Motion Analysis)and Plantar Force Platform.The 3D motion model of brain vibration therapy was constructed using Motion Builder software,and the role model was constructed using Maya software matched with the action model.Unity3D software was used to build a virtual simulation system of Mongolian medical brain vibration therapy.The system integrated information on 3D animation,kinematic and dynamic parameters of Mongolian medical brain vibration therapy.RESULTS AND CONCLUSION:By using 3D Motion Capture Technology and Computer Simulation Technology to reconstruct the operation of Mongolian medical brain vibration therapy,it can display the posture of the operator and subject and record the key parameters of spatial position and changes of joint motion to obtain kinematic and dynamic parameters.The interactive 3D virtual simulation technology is used to realize the visual presentation of 3D virtual simulation of Mongolian medical brain vibration therapy.It lays a foundation for the standardization,digitization and visualization of Mongolian medical brain vibration therapy.
3.Intestinal lymph drainage reduces lung tissue cell apoptosis of hemorrhagic shock rats
Daxin DU ; Haiyan ZHANG ; Huaiyu CHAO ; Yonghua SI ; Limin ZHANG ; Zigang ZHAO ; Chunyu NIU
Chinese Journal of Primary Medicine and Pharmacy 2012;19(6):801-803
ObjectiveTo explore the effect of the intestinal lymph drainage on lung tissue cell apoptosis in rats with hemorrhagic shock after resuscitation,rich ALI intestinal lymphatic pathway theory.MethodsTUNEL method was used to determine the apoptosis of lung tissue cells,the brown nuclei were apoptotic cells.SABC was used to determine Bcl-2 and Bax protein expression.ResultsThe shock group and shock + drainage group lung tissue cell apoptosis rate were significantly higher than those in the sham operation group,but the shock + drainage group,the apoptosis of lung tissue cells was significantly lower than the shock group.Sham operation group showed Bcl-2,Bax protein of expression; In shock group,lung tissue cell Bcl-2 expression was significantly lower than the sham operation group,the Bax expression was significantly higher than that in the sham operation group; In shock + drainage group,lung tissue cells shored enhanced expression of Bcl-2,Bax expression was reduced,and the shock + drainage group lung tissue cell Bcl-2 expression was significantly higher than that in the shock group,the expression of Bax was significantly lower than the shock group.ConclusionThe excessive apoptosis of lung tissue cells was one of the mechanisms of lung injury after shock.Intestinal lymph drainage could reduce lung tissue cell apoptosis,the mechanism invdved the regulation of Bcl-2/Bax protein expression.

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