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5篇 您的检索式:作者名="QUAN Run"
    题名 作者 年代 出处 被引量
1美国山核桃在云南的引种研究进展及发展前景显示文摘总结了云南53a来对美国山核桃引种、选种、生物学特性、生态适应性、苗木繁殖、丰产栽培、虫害防治的研究进展和示范推广情况。认为美国山核桃市场潜力大,在云南栽培效益高、适栽区域广、符合该省经济林树种结构调整需要,将来定会得到大力推广发展。习学良 XI XUE LIANG 范志远 FAN ZHI YUAN 董润泉 DONG RUN QUAN 张雨 ZHANG YU 2001江西林业科技2001,,6:25
2New research trends on high-precision time transfer technology显示文摘High-precision time transfer plays an important role in the areas of fundamental research and applications. Accompanying w ith the remarkable improvements in the ability of generating and measuring high-accuracy time-frequency signal,seeking for new time-transfer techniques betw een distant clocks w ith much further improved accuracy attracts attentions w orld-w idely. The time-transfer technique based on optical pulses has the highest precision presently,and the further improvement in the accuracy is heavily dependent on the time-domain properties of the pulse as w ell as the sensitivity of the applied measurement on the exchanged pulse. The application of optical frequency comb in time transfer for a precision up to femtosecond level are currently the focus of much interest,and has recently achieved many breakthroughs. Further investigations show that,utilizing quantum techniques,i.e. quantum measurement technique and quantum optical pulse source,can lead to a new limit on the measured timing information. Furthermore,it can be immune from atmospheric parameters,such as pressure,temperature,humidity and so on.Such quantum improvements on time-transfer have a bright prospect in the future applications requiring extremely high-accuracy timing and ranging. The potential achievements w ill form a technical basis for the future realization of sub-femtosecond time transfer system.DONG Ruifang QUAN Run'ai HOU Feiyan WANG Shaofeng XIANG Xiao ZHOU Conghua WANG Mengmeng LIU Tao ZHANG Shou'gang 2015Instrumentation2015,2,4:5
3Hydrogen solubility prediction for diesel molecules based on a modified Henry equation显示文摘Diesel hydrotreatment removes heteroatoms and polycyclic aromatics in diesel in the presence of highpressure hydrogen gas.The hydrogen solubility is the basis for hydrogen consumption prediction and process design/optimization.In the presented study,we established a method to predict the hydrogen solubility of diesel molecules and mixture.A modified Henry equation was proposed to illustrate the hydrogen solubility variation among the temperature and pressure.The parameters of the modified Henry equation for typical molecules were regressed from literature data.Then we established an empirical correlation between the parameter and the structure and property of molecules.The method was then combined with a molecular-level compositional model to accurately predict the hydrogen solubility in diesel,illustrating the validity of the method.Run Guo Xiang Bai Yang Lu Lin-Zhou Zhang Xing-Ying Lan Zhen-Tao Chen Quan Shi Suo-Qi Zhao 2022Petroleum Science2022,19,1:0
4DN-9: a multifunctional agonist of opioid and neuropeptide FF receptors that produces nontoleranceforming analgesia via peripheral opioid receptors in inflammatory and neuropathic pain models显示文摘OBJECTIVE Considerable effort has recently been directed at developing multifunctional opioid drugs as an alternative strategy to minimize the unwanted side effects of opioid analgesics.We recently developed a novel multifunctional agonist for opioid and neuropeptide FF(NPFF) receptors named DN-9.The present study was conducted to evaluate the pharmacological activities of DN-9 after peripheral administration.METHODS Antinociceptive activities of subcutaneous DN-9 were investigated in mouse models of acute inflammatory and neuropathic pain.Furthermore,the side-effects of DN-9 were evaluated after peripheral injection in rotarod,antinociceptive tolerance,abuse and gastrointestinal transit tests.RESULTS Subcutaneous DN-9 dose-dependently produced antinociception via peripheral mu-and kappa-opioid receptors,independent of delta-opioid and NPFF receptors,in the tail-flick assay.Similarly,a dose-dependent antinociceptive effect of DN-9 was mediated via peripheral opioid receptors in other inflammatory and neuropathic pain models.Repeated treatment with DN-9 produced antinociceptive effects without a loss of potency in various models of acute,inflammatory and neuropathic pain.DN-9 maintained potent analgesia in morphine-tolerant mice.The gastrointestinal motility inhibition and abuse properties of DN-9 were significantly reduced after subcutaneous injection compared to morphine.DN-9 did not significantly influence the motor coordination of mice.CONCLUSION Subcutaneous administration of DN-9 produces potent analgesic activities with minimal side effects.These data strengthen the therapeutic potential of peripherally acting opioids with multifunctional agonistic properties that are active in a broad range of experimental pain models after peripheral delivery.XU Biao ZHANG Meng-na SHI Xue-rui ZHANG Run LI Ning FANG Quan 2018中国药理学与毒理学杂志2018,32,9:0
5Surpassing the classical limit of the microwave photonic frequency fading effect by quantum microwave photonics显示文摘With energy-time entangled biphoton sources as the optical carrier and time-correlated single-photon detection for high-speed radio frequency(RF)signal recovery,the method of quantum microwave photonics(QMWP)has presented the unprecedented potential of nonlocal RF signal encoding and efficient RF signal distilling from the dispersion interference associated with ultrashort pulse carriers.In this paper,its capability in microwave signal processing and prospective superiority are further demonstrated.Both QMWP RF phase shifting and transversal filtering functionality,which are the fundamental building blocks of microwave signal processing,are realized.Besides good immunity to the dispersion-induced frequency fading effect associated with the broadband carrier in classical MWP,a native two-dimensional parallel microwave signal processor is provided.These results well demonstrate the superiority of QMWP over classical MWP and open the door to new application fields of MWP involving encrypted processing.YAQING JIN YE YANG HUIBO HONG XIAO XIANG RUN'AI QUAN TAO LIU NINGHUA ZHU MING LI SHOUGANG ZHANG RUIFANG DONG 2023Photonics Research2023,11,6:0
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