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基于大型波流水槽的FL-TENG水动力试验研究
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作者 李俊锋 杨小龙 +3 位作者 赵正华 曾海铃 邵俊洁 巫志文 《广西水利水电》 2024年第3期13-20,共8页
本研究以莲花状摩擦纳米发电装置(FL-TENG)为研究对象。利用大型波流水槽构建FL-TENG模型试验,得到FL-TENG在不同工况下的发电性能和水动力性能。分析FL-TENG的电流和电压等效值以及横摇和缆力幅值随波浪波高、周期、流速以及装置负重... 本研究以莲花状摩擦纳米发电装置(FL-TENG)为研究对象。利用大型波流水槽构建FL-TENG模型试验,得到FL-TENG在不同工况下的发电性能和水动力性能。分析FL-TENG的电流和电压等效值以及横摇和缆力幅值随波浪波高、周期、流速以及装置负重等工程变量的变化规律;并从船舶动力学和FL-TENG结构原理的角度出发,分析和讨论呈现该变化规律的原因;最后通过分析不同工况变量的情况下,FL-TENG的发电性能随横摇幅值的变化规律,得到FL-TENG发电性能和横摇幅值的关系。 展开更多
关键词 FL-TENG 多自由度 发电性能 水动力性能 波流激励
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Mitochondrial Oxidative Stress Enhances Vasoconstriction by Altering Calcium Homeostasis in Cerebrovascular Smooth Muscle Cells under Simulated Microgravity 被引量:3
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作者 LIU Zi Fan WANG Hai Ming +8 位作者 JIANG Min WANG Lin LIN Le Jian ZHAO Yun Zhang shao jun jie ZHOU Jing Jing XIE Man Jiang LI Xin ZHANG Ran 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2021年第3期203-212,共10页
Objective Exposure to microgravity results in postflight cardiovascular deconditioning in astronauts.Vascular oxidative stress injury and mitochondrial dysfunction have been reported during this process.To elucidate t... Objective Exposure to microgravity results in postflight cardiovascular deconditioning in astronauts.Vascular oxidative stress injury and mitochondrial dysfunction have been reported during this process.To elucidate the mechanism for this condition,we investigated whether mitochondrial oxidative stress regulates calcium homeostasis and vasoconstriction in hindlimb unweighted(HU)rat cerebral arteries.Methods Three-week HU was used to simulate microgravity in rats.The contractile responses to vasoconstrictors,mitochondrial fission/fusion,Ca^(2+) distribution,inositol 1,4,5-trisphosphate receptor(IP3 R)abundance,and the activities of voltage-gated K+channels(KV)and Ca^(2+)-activated K+channels(BKCa)were examined in rat cerebral vascular smooth muscle cells(VSMCs).Results An increase of cytoplasmic Ca^(2+) and a decrease of mitochondrial/sarcoplasmic reticulum(SR)Ca^(2+) were observed in HU rat cerebral VSMCs.The abundance of fusion proteins(mitofusin 1/2[MFN1/2])and fission proteins(dynamin-related protein 1[DRP1]and fission-mitochondrial 1[FIS1])was significantly downregulated and upregulated,respectively in HU rat cerebral VSMCs.The cerebrovascular contractile responses to vasoconstrictors were enhanced in HU rats compared to control rats,and IP3 R protein/mRNA levels were significantly upregulated.The current densities and open probabilities of KV and BKCa decreased and increased,respectively.Treatment with the mitochondrial-targeted antioxidant mitoTEMPO attenuated mitochondrial fission by upregulating MFN1/2 and downregulating DRP1/FIS1.It also decreased IP3 R expression levels and restored the activities of the KV and BKCa channels.MitoTEMPO restored the Ca^(2+) distribution in VSMCs and attenuated the enhanced vasoconstriction in HU rat cerebral arteries.Conclusion The present results suggest that mitochondrial oxidative stress enhances cerebral vasoconstriction by regulating calcium homeostasis during simulated microgravity. 展开更多
关键词 MICROGRAVITY Mitochondrial oxidative stress Calcium homeostasis VASOCONSTRICTION
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