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29篇 您的检索式:作者名="Gross Daniel"
    题名 作者 年代 出处 被引量
1The role of FOXO in the regulation of metabolism显示文摘Danielle N. Gross Min Wan Morris J. Birnbaum 2009Current Diabetes Reports2009,,3:2
2Player Teacher Career Paths,Teacher Quality, and Persis-tence in the Classroom: Are Public Schools Keeping Their Best 显示文摘Dan Goldhaber & Betheny Gross & Daniel 2011Journal of Policy Analysis and Management2011,30,1:1
3From non-functionalrequirements to design through patterns显示文摘Gross Daniel Yu Eric 2001Requirements Eng2001,6,:1
4Interactive cuts through 3-Dimensional soft tissue 显示文摘Daniel Bielser Volker A Maiwald Markus H Gross 1999Computer Graphics Forum (S0167-7055)1999,18,3:1
5SPET–CT in thyroid cancer: a systematic review显示文摘Ka Kit Wong Daniel J. Wale Lorraine M. Fig Milton D. Gross 2014Clinical and Translational Imaging2014,,:1
6Estimation of DNA sequence diversity in bovine cytokine genes显示文摘Michael P. Heaton William M. Grosse Steven M. Kappes John W. Keele Carol G. Chitko-McKown Larry V. Cundiff Andreas Braun Daniel P. Little William W. Laegreid 2001Mammalian Genome2001,,1:1
7Effects of epidermal growth factor receptor and insulin-like growth factor- I receptor inhibition on proliferation and intracellular signaling in cutaneous SCCHN: Potential for dual inhibition as a therapeutic modality显示文摘Clayburgh Daniel R Gross Neil D Proby Charlotte etal 2013Head and Neck-Journal for the Sciences and Specialties of the Head and Neck2013,,:1
8Surgical Management of Symptomatic Pericardial Effusion in Patients with Solid Malignancies显示文摘Jefferson Luiz Gross MD PhD Riad Naim Younes MD PhD Daniel Deheinzelin MD PhD Alessandro Landskron Diniz MD Rodrigo Afonso da Silva MD Fabio José Haddad MD PhD 2006Annals of Surgical Oncology2006,,12:1
9Modern topics and challenges in dynamic fracture 显示文摘Brian N Cox Huajian Gao Dietmar Gross Daniel Rittel 2005Journal of the Mechanics and Physics of solids2005,,53:1
10Efficacy of Daily Induction Dosing vs Standard Thrice Weekly Dosing of Interferon-α2B for Initial Treatment of Chronic Hepatitis C显示文摘Hernando J. Gonzalez Samuel B. Ho John B. Gross Craig Peine Daniel McKee Theresa Smith Midwest Hepatitis Study Group 2002Digestive Diseases and Sciences2002,,4:1
11Mechanically milled Mg composites for hydrogen storage: the relationship between morphology and kinetics 显示文摘Karl J Gross Daniel Chartouni Eric Leroy 1998Journal of Alloys and Compounds1998,269,12:1
12Forty-eight-hour ph monitoring increases sensitivity in detecting abnormal esophageal acid exposure显示文摘Daniel Tseng M.D. Adnan Z. Rizvi M.D. M. Brian Fennerty M.D. Blair A. Jobe M.D. Brian S. Diggs Ph.D. Brett C. Sheppard M.D. Steven C. Gross M.D. Lee L. Swanstrom M.D. Nicole B. White M.D. Ralph W. Aye M.D. John G. Hunter M.D 2005Journal of Gastrointestinal Surgery2005,,8:1
13From Non-Functional Requirements to Design through Patterns显示文摘Daniel Gross Eric Yu 2001Requirements Engineering2001,,1:1
14Estimating air leakage through doors for smoke control 显示文摘Daniel Gross 1990Fire Technology1990,,:1
15From Non-Functional Requirements to Design through Patterns显示文摘Daniel Gross Eric Yu 2001Requirements Engineering2001,,1:1
16Cellular growth response to epidermal growth factor in colon carcinoma cells with an amplified epidermal growth factor receptor derived from a familial adenomatous polyposis patient显示文摘Gross ME Zorbas MA Daniels YL 1991Cancer Res1991,51,5:1
17Human aldehyde dehydrogenase-catalyzed oxidation of ethylene glycol ether aldehydes显示文摘Aaron Gross Ta Ren Ong Rainer Grant Todd Hoffmann Daniel D. Gregory Lakshmaiah Sreerama 2008Chemico-Biological Interactions2008,,:1
18看他们用惰性赚钱显示文摘毫无疑问,工作的拖沓会在经济上产生负效益。这些人总是在上班的时间,要么去泡杯咖啡,要么就去吸口烟。当然在这样一个每时每刻都不停工作的经济环境下,要不断蹦出些有创意的想法,的确需要频繁的休息。有时候,'偷懒'的确无可避免,但是如果员工总是心不在焉、频发短信或者老上YouTube视频网站的话,公司就会蒙受损失,这样的'偷懒'就真的毫无益处了。当你放下手上工作的时候,你可能就给其他的公司创造了销售的机会。你浪费的时间越多,别人赚的钱也就越多。Daniel Gross Michael Huang 2008城色2008,0,11:0
19Effect of matrix-nanoparticle interactions on recognition of aryldiazonium nanoparticle-imprinted matrices显示文摘The selective recognition of nanoparticles (NPs) can be achieved by nanoparticle-imprinted matrices (NAIMs),where NPs are imprinted in a matrix followed by their removal to form voids that can reuptake the original NPs.The recognition depends on supramolecular interactions between the matrix and the shell of the NPs,as well as on the geometrical suitability of the imprinted voids to accommodate the NPs.Here,gold NPs stabilized with citrate (AuNPs-cit) were preadsorbed onto a conductive surface followed by electrografting of p-aryldiazonium salts (ADS) with different functional groups.The thickness of the matrix was carefully controlled by altering the scan number.The AuNPs-cit were removed by electrochemical dissolution.The recognition of the NAIMs was determined by the reuptake of the original AuNPs-cit by the imprinted voids.We found that the recognition efficiency is a function of the thickness of the NAIM layer and is sensitive to the chemical structure of the matrix.Specifically,a subtle change of the functional group of the p-aryldiazonium building block,which was varied from an ether to an ester,significantly affected the recognition of the NPs.Netta Bruchiel-Spanier Linoy Dery Noam Tal Shahar Dery Elad Gross Daniel Mandler 2019Nano Research2019,12,2:0
20小胶质细胞控制成年小鼠海马中的谷氨酸能突触显示文摘小胶质细胞是调节大脑突触发育和可塑性的重要细胞类型,但其影响突触的正常功能的机制尚不清楚。在本研究中,我们通过PLX5622造成小胶质细胞耗竭,并观察其对成年野生型小鼠海马CA3-CA1突触的影响。在小胶质细胞耗竭后,与树突棘密度降低相关的自发和诱发谷氨酸能活动的减少,出现未成熟突触特征以及突触的可塑性提高。小胶质细胞耗竭的小鼠在新物体识别任务的获取方面表现出缺陷。海马星形胶质细胞出现增生,但并没有神经炎症反应。在Cx3cr1-/-小鼠中,PLX不能导致海马出现上述改变。这说明CX3CL1/CX3CR1轴在小胶质细胞对突触功能的控制中有重要作用。PLX5622停用后,小胶质细胞的重新增殖,海马突触恢复,小鼠的学习功能也出现恢复。综上所述,小胶质细胞对维持成人大脑的突触的正常功能用重要的作用,去除小胶质细胞会导致谷氨酸能突触组织和活动的可逆变化。Bernadette Basilico Laura Ferrucci Patrizia Ratano Maria T Golia Alfonso Grimaldi Maria Rosito Valentina Ferretti Ingrid Reverte Caterina Sanchini Maria C Marrone Maria Giubettini Valeria De Turris Debora Salerno Stefano Garofalo Marie-Kim St-Pierre Micael Carrier Massimiliano Renzi Francesca Pagani Brijesh Modi Marcello Raspa Ferdinando Scavizzi Cornelius T Gross Silvia Marinelli Marie-Ève Tremblay Daniele Caprioli Laura Maggi Cristina Limatola Silvia Di Angelantonio Davide Ragozzino 2021神经损伤与功能重建2021,16,10:0
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