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| 1 | Stromal Elements Act to Restrain, Rather Than Support, Pancreatic Ductal Adenocarcinoma显示文摘 | Andrew D. Rhim Paul E. Oberstein Dafydd H. Thomas Emily T. Mirek Carmine F. Palermo Stephen A. Sastra Erin N. Dekleva Tyler Saunders Claudia P. Becerra Ian W. Tattersall C. Benedikt Westphalen Jan Kitajewski Maite G. Fernandez-Barrena Martin E. Fernandez- | 2014 | Cancer Cell2014,,: | 5 |
| 2 | A Systematic Review of Intraoperative Radiotherapy in Early Breast Cancer显示文摘 | Astrid Cuncins-Hearn Christobel Saunders David Walsh Martin Borg John Buckingham Frank Frizelle Guy Maddern | 2004 | Breast Cancer Research and Treatment2004,,3: | 1 |
| 3 | Healing characteristics of free and pedicle fat grafts after dorsal laminectomy and durotomy in dogs显示文摘 | Martin RA Saunders GK | 1991 | Vet Surg1991,20,5: | 1 |
| 4 | Real-time PCR detection and identification of peohibited mammalian and avian material in animal feeds显示文摘 | Cawthraw S Saunders G C Martin T C | 2009 | J Food Prot2009,72,5: | 1 |
| 5 | Crystallization behavior of Ni_(54)Mn_(25.1)Ga_(20.9) ferromagnetic shape memory thin film显示文摘Ni_(54)Mn_(25.1)Ga_(20.9) ferromagnetic shape memory thin film was deposited onto Al foil using r.f.magnetron sputtering technique.The crystallization behavior of the film was investigated by XRD and DSC.The activation energy of crystallization of the film was calculated by Kissinger's method.The results show that the crystallization temperature of Ni_(54)Mn_(25.1)Ga_(20.9) free-standing thin film in martensite state is 372 ℃,and the activation energy of crystallization is about 191.9 kJ·mol-1. | MARTIN Saunders | 2007 | Rare Metals2007,26,S1: | 1 |
| 6 | Multi‐centre reproducibility of diffusion MRI parameters for clinical sequences in the brain显示文摘 | Matthew Grech‐Sollars Patrick W. Hales Keiko Miyazaki Felix Raschke Daniel Rodriguez Martin Wilson Simrandip K. Gill Tina Banks Dawn E. Saunders Jonathan D. Clayden Matt N. Gwilliam Thomas R. Barrick Paul S. Morgan Nigel P. Davies James Rossiter Dorothee | 2015 | NMR Biomed2015,,: | 1 |
| 7 | Time course of haemoglobin mass during 21?days live high:train low simulated altitude显示文摘 | Sally A. Clark M. J. Quod M. A. Clark D. T. Martin P. U. Saunders C. J. Gore | 2009 | European Journal of Applied Physiology2009,,3: | 1 |
| 8 | Noble gas atoms inside fullerenes 显示文摘 | Martin Saunders James Cross R Hugo A | 1996 | Science1996,271,: | 1 |
| 9 | A Systematic Review of Intraoperative Radiotherapy in Early Breast Cancer显示文摘 | Astrid Cuncins-Hearn Christobel Saunders David Walsh Martin Borg John Buckingham Frank Frizelle Guy Maddern | 2004 | Breast Cancer Research and Treatment2004,,3: | 1 |
| 10 | Measurements necessary for assessing the net ecosystem carbon budget of croplands显示文摘 | Pete Smith Gary Lanigan Werner L. Kutsch Nina Buchmann Werner Eugster Marc Aubinet Eric Ceschia Pierre Béziat Jagadeesh B. Yeluripati Bruce Osborne Eddy J. Moors Aurore Brut Martin Wattenbach Matt Saunders Mike Jones | 2010 | Agriculture Ecosystems and Environment2010,,3: | 1 |
| 11 | Mitomycin or cisplatin chemoradiation with or without maintenance chemotherapy for treatment of squamous-cell carcinoma of the anus (ACT II): a randomised, phase 3, open-label, 2×2 factorial trial显示文摘 | Roger D James Robert Glynne-Jones Helen M Meadows David Cunningham Arthur Sun Myint Mark P Saunders Timothy Maughan Alec McDonald Sharadah Essapen Martin Leslie Stephen Falk Charles Wilson Simon Gollins Rubina Begum Jonathan Ledermann Latha Kadalayil Davi | 2013 | Lancet Oncology2013,,6: | 1 |
| 12 | Panorama of boron nitride nanostructures via lamp ablation显示文摘A diverse range of remarkable boron n itride (BN) nano structures subsumi ng nano-homs, nano-rods, nano-platelets, and clusters of hollow nano spheres (nano-onions, arguably of greatest applied and fun damental in terest) have bee n produced exclusively from crystalline BN precursor powder via lamp ablation. The procedure is safe, devoid of toxic reagents, simple, rapid and scalable—generating some genres of nan oparticles that had previously proved elusive. Product structure and composition were unambiguously assessed by high-resoluti on transmission electron microscopy, energy-dispersive X-ray spectroscopy and electron energy loss spectroscopy. | Sehrina Eshon Weike Zhang Martin Saunders Yujun Zhang Hui Tong Chua Jeffrey M. Gordon | 2019 | Nano Research2019,12,3: | 0 |
| 13 | Activation of Transition Metal(Fe,Co and Ni)-Oxide Nanoclusters by Nitrogen Defects in Carbon Nanotube for Selective CO_(2) Reduction Reaction显示文摘The electrochemical carbon dioxide reduction reaction(CO_(2)RR),which can produce value-added chemical feedstocks,is a proton-coupled-electron process with sluggish kinetics.Thus,highly efficient,cheap catalysts are urgently required.Transition metal oxides such as CoO_(x),FeO_(x),and NiO_(x)are low-cost,low toxicity,and abundant materials for a wide range of electrochemical reactions,but are almost inert for CO_(2)RR.Here,we report for the first time that nitrogen doped carbon nanotubes(N-CNT)have a surprising activation effect on the activity and selectivity of transition metal-oxide(MO_(x)where M=Fe,Ni,and Co)nanoclusters for CO_(2)RR.MO_(x)supported on N-CNT,MO_(x)/N-CNT,achieves a CO yield of 2.6–2.8 mmol cm−2 min−1 at an overpotential of−0.55 V,which is two orders of magnitude higher than MO_(x)supported on acid treated CNTs(MO_(x)/O-CNT)and four times higher than pristine N-CNT.The faraday efficiency for electrochemical CO_(2)-to-CO conversion is as high as 90.3%at overpotential of 0.44 V.Both in-situ XAS measurements and DFT calculations disclose that MO_(x)nanoclusters can be hydrated in CO_(2)saturated KHCO_(3),and the N defects of N-CNT effectively stabilize these metal hydroxyl species under carbon dioxide reduction reaction conditions,which can split the water molecules and provide local protons to inhibit the poisoning of active sites under carbon dioxide reduction reaction conditions. | Yi Cheng Jinfan Chen Chujie Yang Huiping Wang Bernt Johannessen Lars Thomsen Martin Saunders Jianping Xiao Shize Yang San Ping Jiang | 2023 | Energy & Environmental Materials2023,6,1: | 0 |