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Viscoelastic evaluation of fetal umbilical vein for reconstruction of middle cerebral artery 被引量:3
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作者 dongyuan li Donghui Xu +3 位作者 Peng li Jun Wei Kun Yang Conghai Zhao 《Neural Regeneration Research》 SCIE CAS CSCD 2013年第32期3055-3062,共8页
The transplantation of artificial blood vessels with 〈 6 mm inner diameter as substitutes for human arterioles or veins has not achieved satisfactory results. Umbilical vein has been substituted for ar- tery in vascu... The transplantation of artificial blood vessels with 〈 6 mm inner diameter as substitutes for human arterioles or veins has not achieved satisfactory results. Umbilical vein has been substituted for ar- tery in vascular transplantation, but it remains unclear whether the stress relaxation and creep be- tween these vessels are consistent. In this study, we used the fetal umbilical vein and middle cere- bral artery from adult male cadavers to make specimens 15 mm in length, 0.196-0.268 mm in tu- nica media thickness, and 2.82-2.96 mm in outer diameter. The results demonstrated that the stress decrease at 7 200 seconds was similar between the middle cerebral artery and fetal umbilical vein specimens, regardless of initial stress of 18.7 kPa or 22.5 kPa. However, the strain increase at 7 200 seconds of fetal umbilical veins was larger than that of middle cerebral arteries. Moreover, the stress relaxation experiment showed that the stress decrease at 7 200 seconds of the fetal umbilical vein and middle cerebral artery specimens under 22.5 kPa initial stress was less than the decrease in these specimens under 18.7 kPa initial stress. These results indicate that the fetal umbilical vein has appropriate stress relaxation and creep properties for transplantation. These properties are advantageous for vascular reconstruction, indicating that the fetal umbilical vein can be transplanted to repair middle cerebral artery injury. 展开更多
关键词 neural regeneration neural plasticity middle cerebral artery fetal umbilical vein stress relaxationproperties creep properties VISCOELASTICITY TRANSPLANTATION biomaterial BIOMECHANICS NEUROREGENERATION
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Experimental Simulation and Verification of Position Servo Control of Mechanical Rodless Cylinder 被引量:1
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作者 Yeming ZHANG Kaimin li +4 位作者 Hongwei YUE Shuangyang HE dongyuan li Kun LYU Feng WEI 《Mechanical Engineering Science》 2020年第2期25-34,I0005,共11页
In order to improve the position control accuracy of rodless cylinder,the valve control cylinder system based on pneumatic proportional servo is studied deeply.According to the working principle of the mechanical rodl... In order to improve the position control accuracy of rodless cylinder,the valve control cylinder system based on pneumatic proportional servo is studied deeply.According to the working principle of the mechanical rodless cylinder control system,under the condition of uniform speed,the driving voltage of the proportional valve is changed to measure multiple sets of friction force and corresponding velocity data.Analyzed the physical structure of each component in pneumatic system,established the mathematical model of pneumatic system,and introduced MATLAB system identification toolbox to identify the parameters of the transfer function.and the experiment verifies its correctness. 展开更多
关键词 mechanical rodless cylinder friction characteristics mathematical model parameter identification
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Comparison of viscoelasticity between normal human sciatic nerve and amniotic membrane 被引量:1
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作者 Donghui Xu Conghai Zhao +2 位作者 Huili Ma Jun Wei dongyuan li 《Neural Regeneration Research》 SCIE CAS CSCD 2013年第14期1269-1275,共7页
Sciatic nerve tissue was obtained from the gluteus maximus muscle segment of normal human cadavers and amniotic membrane tissue was obtained from healthy human puerperant placentas. Both tissues were analyzed for thei... Sciatic nerve tissue was obtained from the gluteus maximus muscle segment of normal human cadavers and amniotic membrane tissue was obtained from healthy human puerperant placentas. Both tissues were analyzed for their stress relaxation and creep properties to determine suitability for transplantation applications. Human amniotic membrane and sciatic nerve tissues had similar tendencies for stress relaxation and creep properties. The stress value of the amniotic membrane stress relaxation group decreased to a greater extent compared with the sciatic nerve stress relaxation group. Similarly, the stress value of the amniotic membrane creep group increased to a greater extent compared with the sciatic nerve creep group. The stress relaxation curve for human amniotic membrane and sciatic nerve showed a logarithm correlation, while the creep curve showed an exponential correlation. These data indicate that amniotic membrane tissue has better stress relaxation and creep properties compared with sciatic nerve tissue. 展开更多
关键词 neural regeneration basic research CADAVER HUMAN sciatic nerve amniotic membrane stressrelaxation creep VISCOELASTICITY stress BIOMECHANICS nerve tissue engineering NEUROREGENERATION
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