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5篇 您的检索式:作者名="Prativa"
    题名 作者 年代 出处 被引量
1Controversies and evolving new mechanisms in subarachnoid hemorrhage 显示文摘Sheng Chen Hua Feng Prativa Sherchan 2014Progress in Neurobiology2014,115,:1
2Isoflurane delays the development of early brain injury after subarachnoid hemorrhage through sphingosine-related pathway activation in mice*显示文摘Orhan Altay Yu Hasegawa Prativa Sherchan Hidenori Suzuki Nikan H. Khatibi Jiping Tang John H. Zhang 2012Critical Care Medicine2012,,6:1
3Inhibition of Rho kinase by hydroxyfasudil attenuates brain edema after subarachnoid hemorrhage in rats显示文摘Mutsumi Fujii Kamil Duris Orhan Altay Yoshiteru Soejima Prativa Sherchan John H. Zhang 2012Neurochemistry International2012,,3:1
4评估农林业适应气候变化的潜力:尼泊尔拉姆琼案例研究显示文摘农林系统具有多种效益,包括通过使用肥用树种来提高土壤质量,通过树冠改善小气候,以及生产薪柴和其他医药产品等森林产品以提高经济效益。农林复合经营有助于更好的土地管理、生计多样化和提高土地生产力。然而,政策制定者和其他利益相关方在农林业作为气候变化适应战略中作用的争辩却越来越多。本研究的目的是评估农林业作为气候变化适应战略的潜力。数据主要通过问卷调查从拉姆琼县Taksar的120名受访者中收集,采用卡方检验和二元logistic模型分析了影响气候变化适应策略的家庭选择因素。同样,通过访谈、讨论和观察以及后续的文件分析,对所获得的数据进行三角互证和验证。研究表明,农民采取了许多应对气候变化的策略,这些策略包括农牧多样化(71%)、使用改良作物品种、化肥和农药(73%)、农林复合经营(68%)、创收多样化(72%)、改变作物种植日期(57%)和复种措施(67%)等。从卡方检验和二元logistic模型中发现,“耕作经验”、“教育水平”、“农场规模”和“性别”对气候变化适应策略具有显著影响。农林复合经营具有不同的效益,如增加河流汇水(79.2%)、改善小气候(80.8%)、增加木材产品(71.7%)、提高粮食产量(83.3%)、改善牲畜健康和畜产品(77.5%)、提高土壤肥力(84.2%)和多样化生计选择(82.2%)。基于这些发现,该研究得出结论:农林复合经营是一种可以减少气候变化对当地环境影响的农业生产方法,推广和采用农林业可以帮助当地社区减少气候变化的影响。JOSHI Rajeev TAMANG Gyanu Maya BHANDARI Prativa SHARMA Bharat JOSHI Dikshya BHUSAL Shushma 2024Journal of Resources and Ecology2024,15,2:0
5Recent advances in lung-on-a-chip technology for modeling respiratory disease显示文摘Tissue engineering approaches,including those to functional lung tissues,are finely honed by the inclusion of upgraded devices that mimic biophysical and biochemical features in vivo.Perfusion culture is one of these essential biophysical characteristics enabled by the introduction of microfluidic devices in recent years.This review links the importance of dynamic culture for in vitro maintenance of functional lung cells to the modeling of respiratory disease.We identify and discuss different parameters for fabricating the requisite microfluidic models for lung cells,as well as their application in modeling lung diseases caused by external factors such as smoking and pollution.The possibility of creating a multi-organ-on-a-chip to establish a more physiologically relevant model is highlighted.Overall,the focus is on different prospects for the in vitro modeling approach and for lungs-on-a-chip for developing advanced,reliable technology to analyze the pathophysiology of respiratory diseases and screen potential treatments.Jorge A.Tavares-Negrete Prativa Das Sahar Najafikhoshnoo Steven Zanganeh Rahim Esfandyarpour 2023Bio-Design and Manufacturing2023,6,5:0
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