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16篇 您的检索式:作者名="Hadrian"
    题名 作者 年代 出处 被引量
1Mulch effects on rainfall interception, soil physical characteris ties and temperature under Zea rnays L显示文摘Hadrian F C Gerardo S B V Howard C L 2006Soil and Tillage Research2006,91,12:1
2Compara- tive genetics of nueleotide binding site - leucine rich re- peat resistance gene homologues in the genomes of two dicotyledons: tomato and Arabidopsis 显示文摘Pan Q Liu Y S Budai -Hadrian O 2000Genetics2000,155,1:1
3Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L 显示文摘Hadrian F C Gerardo S B V Howard C L 2006Soil and Tillage Research2006,91,12:1
4Comparison of insufllated talc under thoracoscopic guidance with standard tetracycline and bleomycin pleurodesis for control of malignant pleural effusions显示文摘Hadrian Dl Gaither JM Kesler KA 1993J Thorac Cardiovasc Surg1993,105,4:1
5Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L.显示文摘Hadrian F. Cook Gerardo S.B. Valdes Howard C. Lee 2006Soil & Tillage Research2006,,1:1
6Mulch effectson rainfall interception, soil physical characteristics and temperature under Zea maysL显示文摘Hadrian FC Gerardo SBV Howard CL 2006Soil and Tillage Re-search2006,91,:1
7Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays显示文摘Hadrian F C Gerardo S B V Howard C L 2006Soil and Tillage Research2006,91,:1
8Tissue signature characterisation of diffusion tensor abnormalities in cerebral gliomas显示文摘Stephen J. Price Alonso Pe?a Neil G. Burnet Raj Jena Hadrian A. L. Green T. Adrian Carpenter John D. Pickard Jonathan H. Gillard 2004European Radiology2004,,10:1
9Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L显示文摘Hadrian F Gerardo B Howard C 2006Soil & Tillage Research2006,91,:1
10Mulch effects on rainfall interception,soil physical characteristics and temperature under Zea mays L显示文摘HADRIAN FC GERARDO SBV HO-WARD CL 2006Soil and Tillage Research2006,91,12:1
11Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L 显示文摘Hadrian FC Gerardo SBV Howard CL 2006Soil and Tillage Research2006,91,12:1
12Corporate social and environmental disclosure by Indonesian listed companies on their corporate web sites显示文摘Hadrian Gery Djajadikerta Terri Trireksani 2012Journal of Applied Accounting Research2012,,1:1
13Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L 显示文摘Hadrian F C Gerardo S B V Howard C L 2006Soil and Tillage Research2006,91,12:1
14Mulch effects on rainfall interception soil physical characteristics and temperature under Zea mays L显示文摘Hadrian FC Gerardo SBV Howard CL 2006Soil and Tillage Research2006,91,:1
15Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L 显示文摘Hadrian FC Gerardo SBV Howard CL 2006SoilTillage Res2006,91,:1
16The physiological polyphosphate as a healing biomaterial for chronic wounds:Crucial roles of its antibacterial and unique metabolic energy supplying properties显示文摘Insufficient metabolic energy,in the form of adenosine triphosphate(ATP),and bacterial infections are among the main causes for the development of chronic wounds.Previously we showed that the physi-ological inorganic polymer polyphosphate(polyP)massively accelerates wound healing both in animals(diabetic mice)and,when incorporated into mats,in patients with chronic wounds.Here,we focused on a hydrogel-based gel formulation,supplemented with both soluble sodium polyP(Na-polyP)and amor-phous calcium polyP nanoparticles(Ca-polyP-NP).Exposure of human epidermal keratinocytes to the gel caused a significant increase in extracellular ATP level,an effect that was even enhanced when Na-polyP was combined with Ca-polyP-NP.Furthermore,it is shown that the added polyP in the gel is converted into a coacervate,leading to encapsulation and killing of bacteria.The data on human chronic wounds showed that the administration of hydrogel leads to the complete closure of these wounds.Histological analysis of biopsies showed an increased granulation of the wounds and an enhanced microvessel forma-tion.The results indicate that the polyP hydrogel,due to its properties to entrap bacteria and generate metabolic energy,is a very promising formulation for a new therapy for chronic wounds.Werner E.G.Müller Hadrian Schepler Meik Neufurth Shunfeng Wang Veronica Ferrucci Massimo Zollo Rongwei Tan Heinz C.Schröder Xiaohong Wang 2023Journal of Materials Science & Technology2023,,4:0
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