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1 , followed by partial enclosure into a glass micropipet.
2 ulated with chemoattractant delivered from a micropipet.
3 by repositioning of a chemoattractant-filled micropipet.
4 n source of error is usually the accuracy of micropipets.
5 s convenient and less costly than the use of micropipets.
6 n-limited delivery of chemoattractant from a micropipet allowed for maintaining an almost constant ch
8 d electric field on the distance between the micropipet and the surface are measured, and the results
11 myocytes were introduced into the chamber by micropipetting and subsequently capped with a layer of m
13 simulate the dynamics of neutrophils during micropipet aspiration using various plausible assumption
14 microscopy, Fourier transform analysis, and micropipet-aspiration experiments to assess mechanical p
16 equipped with an array of 16 silicon nitride micropipet-based ion-selective microelectrodes with a di
22 id/liquid interfaces supported at the tip of micropipet electrodes for direct determination of the di
25 Cyclic voltammetry and chronoamperometry at micropipet electrodes were applied to study the phase tr
30 ts in which ions are ejected from one of two micropipets ("generator") into the external solution and
36 ld an automated liquid handler that controls micropipetting of liquids in 3D space at speeds and posi
37 DEX droplets were formed either by manual micropipetting or within a continuous PEG phase by compu
38 ing the ion-selective SECM tips based on the micropipet- or nanopipet-supported interfaces between tw
39 is created by putting an electrode inside a micropipet positioned over the electrode and applying a
40 ration uses microelectrodes, capillaries, or micropipets positioned near single, adherent cells to in
43 he fabrication and characterization of novel micropipet probes for use in scanning electrochemical mi
45 External calibration curves were prepared by micropipetting standards with internal standard (IS) on
47 res into amperometric SECM tips based on the micropipet-supported interface between two immiscible el
49 ific nucleic acid (NA) detection utilizing a micropipet tapered to a 2 mum diameter pore and 3 mum di
51 ked by chemical secretagogues delivered from micropipets that were calibrated with respect to respons
52 gration of the metallic nanostructure with a micropipet, the nanoblade generates a micrometer-sized m
53 mes of sample without the need of commercial micropipets; this device did not damage the nitrocellulo
54 novalent ions is determined using FIB-milled micropipet tips to establish a theoretical formula for t
61 ucted by insulating gold-coated borosilicate micropipets with electrophoretic paint and exposing a ri