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19篇 您的检索式:作者名="Korchev"
    题名 作者 年代 出处 被引量
1Diode-like single-ion track membrane prepared by electro-stopping显示文摘Apel P Y Korchev Y E Siwy Z 0,,:1
2Cell volume measurement us- ing scanning ion conductance microscopy显示文摘Korchev YE Gorelik J Lab MJ 2000Biophys J2000,78,1:1
3Hybrid scanning ion conductance and scanning near-field optical microscopy for the study of living cells显示文摘KORCHEV YE RAVAL M LAB MJ GORELIK J EDWARDS CR RAYMENT T Kenerman D 2000Biophys J2000,78,5:1
4Functional localization of single active ion channels on the surface of a living cell显示文摘KORCHEV Y E NEGULYEV Y A EDWARDS C R 0,,:1
5Polymer-initiated photogeneration of silver nanoparticles in SPEEK/PVA films:Direct metal photopatterning显示文摘Korchev A S Bozack M J Staten B L 0,,01:1
6Radical-induced generation of small silver particles in SPEEK-PVA polymer films and solutions:UV-Vis,EPR,and FT-IR studies显示文摘Korchev A S Konovalova T Cammarata V 0,,01:1
7Scanning ion conductance microscopy of living cells显示文摘KORCHEV Y E BASHFORD C L MILOVANOVIC M 1997Biophys J1997,73,2:1
8Specialized scanning ion-conductance microscope for imaging of living cells显示文摘KORCHEV Y E MILOVANOVIC M BASHFORD C L 1997J Microsc1997,188,1:1
9A conserved tryptophan in pneumolysin is a determinant of the characteristics of channels formed by pneumolysin in cells and planar lipid bilayers显示文摘KORCHEV Y E BASHFORD C L PEDERZOLLI C 1998Biochem J1998,329,:1
10Specialized scanning ion-conductance microscope for imaging of living cells显示文摘KORCHEV Y E MILOVANOVIC M BASHFORD C L 1997Journal of Microscopy1997,188,1:1
11A conserved tryptophan in pneumolysin is a determinant of the characteristics of channels formed by pneumolysin in cells and planar lipid bilayers显示文摘Korchev YE Bashford CL Pederzolli CA 1988Biochem J1988,329,:1
12Hybrid scanning ion conductance and scanning near- field optical microscopy for the study of living cells 显示文摘Korchev YE Raval M Lab MJ 2000Biophys J2000,78,5:1
13A conserved tryptophan in pneumolysin is a determinant of the characteristics of channels formed by pneumolysin in cells and planar lipid hi- layers 显示文摘Korchev YE Bashford CL Pederzolli C 1998Biochem J1998,329,3:1
14Diode-like single-ion track membrane prepared by electro-stopping显示文摘Ape1 P Korchev Y Siwy S 2001Nuclear Instruments and Methods in Physics Research B2001,,184:1
15Functional localization of single active ion channels on the surface of a living cell显示文摘Korchev YE Negulyaev YA Edwards CR 2000Nat Cell BM2000,2,9:1
16Scanning ion conductance microscopy of living cells 显示文摘Korchev Y E Bashford C L Milovanovic M C 1997Biophys J1997,73,:1
17Potential biomedical applications of the scanned nanopipette显示文摘Klenerman D Korchev Y 2006Nanomedicine2006,1,1:1
18High resolution imaging using scanning ion conductance microscopy with improved distance feedback control显示文摘Microscopy is an essential technique for observation on living cells.There is currently great interest in applying scanning probe microscopy to image-living biological cells in their natural environment at the nanometer scale.Scanning ion conductance microscopy is a new form of scanning probe microscopy,which enables non-contact high-resolution imaging of living biological cells.Based on a scanned nanopipette in physiological buer,the distance feedback control uses the ion current to control the distance between the pipette tip and the sample surface.However,this feedback control has diculties over slopes on convoluted cell surfaces,which limits its res-olution.In this study,we present an improved form of feedback control that removes the contribution of up to the third-order slope from the ion current signal,hence providing a more accurate signal for controlling the distance.We show that this allows faster and lower noise topographic high-resolution imaging.Chao Li Nicholas Johnson Victor Ostanin Andrew Shevchuk Liming Ying Yuri Korchev David Klenerman 2008Progress in Natural Science:Materials International2008,18,6:1
19Hybrid scanning ion conductance and scanning near-field optical microscopy for the study of living cells显示文摘KORCHEV Y E RAVAL M LAB M J 2000Biophys2000,78,5:1
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