We detail the operation mechanism and instrumental limitations for potentiometric-scanning ion conductance microscopy (P-SICM). P-SICM makes use of a dual-barrel probe, where probe position is controlled by the current measured in one barrel and the potential is measured in a second barrel. Here we determine the interaction of these two barrels and resultant effects in quantitation of signals. Effects due to the size difference in pipet tip opening are examined and compared to model calculations. These results provide a basis for quantitation and image interpretation for P-SICM
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Ion transport regulated by protein channels is of great importance in biological systems. Such regul...
Scanning ion conductance microscopy (SICM) is a scanned probe microscopy technique in which the prob...
A concentration gradient driven imaging mechanism is described for scanning ion conductance microsco...
Scanning ion-conductance microscopy (SICM) belongs to the family of scanning-probe microscopies. Th...
Scanning ion conductance microscopy (SICM) is a scanning probe technique that utilizes the increase ...
Spatial resolution of images recorded with scanning ion conductance microscopy (SICM) was examined w...
Integration of dual‐barrel membrane patch‐ion channel probes (MP‐ICPs) to scanning ion conductance m...
Integration of dual‐barrel membrane patch‐ion channel probes (MP‐ICPs) to scanning ion conductance m...
Scanning ion conductance microscopy (SICM) is a scanning probe technique that allows investigating s...
Scanning ion-conductance microscopy (SICM) is an emerging microscope technique among the family of s...
Scanning ion-conductance microscopy (SICM) is an emerging microscope technique among the family of s...
The scanning ion conductance microscope (SICM) is an emerging tool for noncontact topography imaging...
Scanning ion conductance microscopy (SICM) is a nanopipette-based technique that has traditionally b...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Ion transport regulated by protein channels is of great importance in biological systems. Such regul...
Scanning ion conductance microscopy (SICM) is a scanned probe microscopy technique in which the prob...
A concentration gradient driven imaging mechanism is described for scanning ion conductance microsco...
Scanning ion-conductance microscopy (SICM) belongs to the family of scanning-probe microscopies. Th...
Scanning ion conductance microscopy (SICM) is a scanning probe technique that utilizes the increase ...
Spatial resolution of images recorded with scanning ion conductance microscopy (SICM) was examined w...
Integration of dual‐barrel membrane patch‐ion channel probes (MP‐ICPs) to scanning ion conductance m...
Integration of dual‐barrel membrane patch‐ion channel probes (MP‐ICPs) to scanning ion conductance m...
Scanning ion conductance microscopy (SICM) is a scanning probe technique that allows investigating s...
Scanning ion-conductance microscopy (SICM) is an emerging microscope technique among the family of s...
Scanning ion-conductance microscopy (SICM) is an emerging microscope technique among the family of s...
The scanning ion conductance microscope (SICM) is an emerging tool for noncontact topography imaging...
Scanning ion conductance microscopy (SICM) is a nanopipette-based technique that has traditionally b...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Scanning Ion Conductance Microscopy (SICM) is an emerging nanotechnology tool to investigate the mor...
Ion transport regulated by protein channels is of great importance in biological systems. Such regul...