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8篇 您的检索式:作者名="Avat"
    题名 作者 年代 出处 被引量
1Cloning andcharacterization of a cDNA for murine macrophage inflammatoryprotein(MIP),a novel monokine with inflammatory andchemokinetic properties显示文摘avatelis G Tekamp-Olson P Wolpe SD 1988J Exp Med1988,167,:1
2Up front submandibularsalivary gland transfer in pharyngeal cancers显示文摘Pathak KA Bha!avat RL Mistry RC 2004Oral Onco12004,40,9:1
3Effects of slow and rapid warming on the cryopreservation of marine microalgae显示文摘Can avate J P Lubian L M 1997Cryobiology1997,35,2:1
4Chemical composition analysis of the essential oil of Melissa officinalis L. from Kurdistan, Iran by HS/SPME method and calculation of the biophysicochemical coefficients of the components显示文摘Avat (Arman) Taherpour Hossein Maroofi Zeinab Rafie Kambiz Larijani 2012Natural Product Research2012,,2:1
5Natural carbon stable isotope ratios as indicators of the relative contribution of live and inert diets to growth in larval Senegalese sole (Solea senegalensis)显示文摘GAMBOA-DELGADO J CA(N)AVATE J P ZEROLO R 2008Aquaculture2008,280,1:1
6Synthesis of alkyl bis(dimethylamino)methylenecarbamodithioates from 1,1,3,3-tetramethylguanidine,CS_2 and oxiranes显示文摘烷基二度(dimethylamino ) 的有效合成在好收益,经由在 1,1,3,3-tetramethylguanidine,碳二硫化物和代替的 oxiranes 之间的一个壶反应的 methylenecarbamodithioates 被描述。Sima Yavari Samira Nasiri-Gheidari Avat(Arman)Taherpour Issa Yavari 2012Chinese Chemical Letters2012,23,6:0
7微波辐射下氧化N-烷基酰胺合成二酰亚胺(英文)显示文摘二酰亚胺是一个很有用的官能团,它广泛存在于天然产物和有药物活性的分子中.通过微波辐射条件合成它吸引了很多化学家的注意.极性反应物可以吸收微波辐射,化学家将微波应用于一些化学反应中.N-烷基酰胺(NH邻位有一个亚甲基CH2)和N上没有取代的内酰胺可以被过氧化物和过渡金属盐氧化成二酰亚胺.报道了在乙酸乙酯中过氧叔丁醇和乙酰丙酮锰(III)在微波条件(90W,5min)下,酰胺迅速、高选择性地、高产率地转变为二酰亚胺的方法.TAHERPOUR Avat Arman ABRAMIAN Araz KARDANYAZD Haniyeh 2007有机化学2007,27,1:0
8Cotton stomatal closure under varying temperature and vapor pressure deficit,correlation with the hydraulic conductance trait显示文摘Background:Cotton(Gossypium hirsutum L.)is often grown in locations characterized by high atmospheric evaporative demand.It has been hypothesized that plants which resist hydraulic flow under this condition will limit water use and conserve soil water.Therefore,in a series of controlled environment experiments ten cotton cultivars were exposed to two different temperature and vapor pressure deficit(VPD)conditions(i.e.,38℃,>3 kPa and 32℃,1∼1.5 kPa)as well as a progressive soil drying.Then,individual differences in shoot hydraulic conductance(K_(shoot))was measured using a hydraulic conductance flow meter(HCFM).Physiological parameters were reported included leaf area,dry leaf weight,stomatal conductance(g_(s)),and water use efficiency coefficient(WUE_(k)).Results:Differences were observed in K_(shoot) among cultivars under the 38℃,>3 kPa but not the 32℃,1∼1.5 kPa environment.Under the 38℃,>3 kPa environment,correlations were found between K_(shoot),stomatal conductance(gs),VPD breakpoint,WUEk,total leaf area,dry leaf weight,fraction transpirable soil water(FTSW)threshold,and slope of TR decline after FTSW threshold.Conclusion:Results show that the ability of some cotton cultivars to restrict water loss under high evaporative demand through early stomatal closure is associated with the cultivars’K_(shoot).The K_(shoot) is influential in the limitation of TR trait under high temperature and VPD.WEDEGAERTNER Kurt SHEKOOFA Avat PURDOM Sam WALTERS Kellie DUNCAN Lori RAPER Tyson B 2022Journal of Cotton Research2022,5,3:0
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