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1                                      We used scanning ion conductance microscopy and conventional cel
2 we describe the development of a bioinspired scanning ion conductance microscopy (bio-SICM) approach
3                             We conclude that scanning ion conductance microscopy can be used to follo
4 ted cAMP signals, using a combined nanoscale scanning ion conductance microscopy-Forster resonance en
5                                              Scanning ion conductance microscopy imaging of battery e
6 ons supplied by intact axons identified with scanning ion conductance microscopy in primary hippocamp
7        Recently, we described potentiometric-scanning ion conductance microscopy (P-SICM) for ion-con
8 a new instrumental technique, potentiometric scanning ion conductance microscopy (P-SICM), that utili
9  tTJs with a technique termed potentiometric scanning ion conductance microscopy (P-SICM).
10 bility of integrating plasmonic imaging with scanning ion conductance microscopy (SICM) and other sca
11 ng probe nanopipet that enables simultaneous scanning ion conductance microscopy (SICM) and scanning
12 on of protein nanopores with high-resolution scanning ion conductance microscopy (SICM) extends the u
13 pographical imaging is demonstrated, using a scanning ion conductance microscopy (SICM) format.
14                                              Scanning ion conductance microscopy (SICM) has developed
15                                              Scanning ion conductance microscopy (SICM) is a nanopipe
16                                              Scanning ion conductance microscopy (SICM) is a powerful
17                                              Scanning ion conductance microscopy (SICM) is a scanned
18                                              Scanning ion conductance microscopy (SICM) is a scanning
19                                              Scanning ion conductance microscopy (SICM) is a super-re
20                                              Scanning ion conductance microscopy (SICM) is demonstrat
21 ss and cell surfaces that allows noninvasive scanning ion conductance microscopy (SICM) of cells and
22                                              Scanning ion conductance microscopy (SICM) offers the ab
23                                              Scanning ion conductance microscopy (SICM) offers the ab
24 cation and use of nanoscale dual function pH-scanning ion conductance microscopy (SICM) probes is rep
25                            We report a novel scanning ion conductance microscopy (SICM) technique for
26 s for nanoscience, particularly when used in scanning ion conductance microscopy (SICM) to determine,
27                                              Scanning ion conductance microscopy (SICM) was used to i
28                                         With scanning ion conductance microscopy (SICM), a noncontact
29 ell patch clamping, confocal microscopy, and scanning ion conductance microscopy (SICM).
30                     We describe hopping mode scanning ion conductance microscopy that allows nonconta
31                                      We used scanning ion conductance microscopy to image changes in
32 itu measurements were performed by utilizing scanning ion conductance microscopy to measure the chang
33 e use of a novel recording approach based on scanning ion conductance microscopy to resolve tight jun
34        Using a combination of macropatch and scanning ion conductance microscopy we show that loss of
35        Using a combination of macropatch and scanning ion conductance microscopy we show that loss of

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