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41篇 您的检索式:作者名="Aviv S"
    题名 作者 年代 出处 被引量
1端粒缩短,而不是端粒消耗率,与颈动脉粥样硬化相关显示文摘端粒是真核生物细胞线性染色体末端一段特殊的DNA蛋白质复合物,有两个主要功能:(1)防止染色体末端识别为有害的DNA双链断裂;(2)通过募集端粒酶(一种合成新的端粒DNA重复序列的逆转录酶)来确保完整的DNA复制。端粒缩短参与了机体的衰老。端粒的过度损耗导致血管内皮细胞、内皮祖细胞以及平滑肌细胞衰老和功能障碍,Toupance S Labat C Temmar M Rossignol P Kimura M Aviv A Benetos A 刘莉 叶鹏 2017中华高血压杂志2017,25,7:4
2Protein F: an adhesin of Streptococcus pyogenes binds fibronectin via two distinct do- mains 显示文摘Sela S Aviv A Tovi A 1993Mol Microbiol1993,10,5:1
3Alternative splicing modulation by a LAMMER kinase impinges on developmental and transcriptome expression显示文摘Savaldi-Goldstein S Aviv D Davydov O Fluhr R 0,,04:1
4Vascular and nonvascular mimics of the CT angiography 'spot sign' in patients with secondary imracerebra| hemorrhage显示文摘Gazzola S Aviv R I G|adstone I J 2008Stroke2008,39,4:1
5Suppression of atherosclerosis in female low-density lipoprotein receptor knockout mice following magnesium fortification of drinking water: the importance of diet 显示文摘Yaniv S Yehuda S Aviv S 2000Pathobiology2000,68,2:1
6白细胞端粒长度缩短较动脉粥样硬化的临床表现提前出现:血液和肌肉模型显示文摘白细胞端粒长度与动脉粥样硬化性心血管病(atherosclerotic cardiovascular disease,ASCVD)相关。目前还不清楚这种关系是否源于出生时天生较短的白细胞端粒长度(leukocy tetelomere length,LTL)和(或)之后较快的LTL消耗。LTL代表高增殖性造血系统中的端粒长度,而骨骼肌中的端粒长度(muscle tetelomere length,MTL)代表最低限度复制的组织。Benetos A Toupance S Gautier S Labat C Kimura M Rossi PM Settembre N Hubert J Frimat L Bertrand B Boufi M Flecher X Sadoul N Eschwege P Kessler ML Tzanetakou IP Doulamis IP Konstantopoulos PS Tzani AI Korou LM Gkogkos A Perreas KG Menenakos E Samanidis G Vasiloglou-Gkanis M Kark JD Malikov S Verhulst S Aviv A 刘青 叶鹏 2018中华高血压杂志2018,26,1:1
7Magnesium fortification of drinking water suppresses atherosclerosis in male LDL-receptor-deficient mice 显示文摘Yaniv S Aviv S 1999Pathobiology1999,67,4:1
8Alberta stroke program early CT scoring of CT perfusion in early stroke visualization and assessment 显示文摘Aviv R I Mandelcom J Chakraborty S 2007AJNR2007,28,10:1
9Hypopharyngeal perforation near-miss during transesophageal echocardiography显示文摘Aviv JE Di Tullio MR Homma S 2004Laryngoscope2004,114,5:1
10Genetic transformation of transgenic plants显示文摘 BLECICHAN S AVIV D 1990Plant Sci1990,69,:1
11Genetic transformation of citrus protoplasts and regeneration of transgenic plant显示文摘Vardi A Bleichman S Aviv D 1990Plant Sci1990,69,:1
12PEG mediated transformation of Citrus protoplasts and regeneration of transgenic planks显示文摘VARDI A BLEICHMAN S AVIV D 1990Plant Science1990,69,:1
13Genetic transformation of Citrus protoplasts and regeneration of transgenie plants显示文摘Vardi A Bleichan S Aviv D 1990Plant Sci1990,69,:1
14Genetic transformation of citrus protoplasts and regeneration of transgenic显示文摘Vardi A Bleichman S Aviv D 1990Plant Sci1990,,69:1
15Genetic transformation of citrus protoplasts and regeneration of transgenic plants 显示文摘Vardi A Bleichman S Aviv D 1990Plant Sci1990,69,:1
16Molecular properties and involvement of heparan ase in cancer progression and mammary gland morphogenesis 显示文摘 Metzger S Chajek-Shaul T Friedmann Y Pappo O Aviv A Elkin M Pecker I Peretz T Vlodavsky I 2001Mammary Gland Biol Neoplasm2001,6,3:1
17The I2c family from the wild disease resistance locus I2 belongs to the mucleotide binding leucin--rich--repeat superfamily of plant resisgance genes显示文摘Ori N Eshed Y Paran I Presting G Aviv D Tanksley S Zamir D Fluhr R 1997Plant cell1997,9,:1
18Vascular and nonvas- cular mimics of the CT angiography 'spot sign' in patients with secondary intracerebral hemorrhage 显示文摘Gazzola S Aviv RI Gladstone DJ 2008Stroke2008,39,4:1
19Genetic transformation of citrus protoplasts and regeneration of transgenic plants显示文摘Vardi A Beichman S Aviv D 0,,:1
20Vascular and nonvascular mimics of the CT angiography 'spot sign' in patients with secondary intracerebral hemorrhage显示文摘Gazzola S Aviv RI Gladstone DJ 2008Stroke2008,39,:1
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