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1 tes were stretched by approximately 7% using carbon fibres.
2  matrix and allow this matrix to wet-out the carbon fibres.
3  structure in the outer skin of the nitrided carbon fibres.
4        Under the external mechanical load of carbon fibres, absolute force developed in myocytes from
5 1 beta cells was assessed through the use of carbon fibre amperometry in combination with Fura-2.
6  due to malfunctioning fusion pores, we used carbon fibre amperometry to record pre-spike feet, which
7 ll catecholaminergic exocytosis, measured by carbon fibre amperometry, is synchronized to an AP.
8 ected with cell capacitance measurements and carbon fibre amperometry.
9                                              Carbon-fibre amperometry can evaluate the effect of M ch
10                              As monitored by carbon-fibre amperometry, the sustained [Ca(2+)](i) incr
11 lasses in the titania-silica family, Kevlar, carbon fibres, anisotropic Invar Fe-Ni alloys, ZrW2O3 an
12 ine oxidase (ChO) enzymes were fabricated on carbon fibre (CF) substrate.
13 tegrated composite electrode consisting of a carbon-fibre core, a poly(p-xylylene)-based thin-film co
14 ntinuous exocytosis that was detected with a carbon fibre electrode from dopamine-loaded cells (10 ce
15  ileum using electrochemical techniques with carbon fibre electrodes to measure local concentrations
16 using in vitro continuous amperometry with a carbon fibre microelectrode and video imaging.
17 e was measured by fast cyclic voltammetry at carbon fibre microelectrodes in rat striatal slices.
18 ividual phaeochromocytoma (PC12) cells using carbon fibre microelectrodes to investigate the effects
19      Amperometric recordings using polarized carbon fibre microelectrodes were used to detect exocyto
20 ed with fast cyclic voltammetry at implanted carbon fibre microelectrodes.
21 n cyclic voltammetry to detect DA release at carbon-fibre microelectrodes in acute striatal slices fr
22 affin cells was monitored using amperometric carbon-fibre microelectrodes.
23 ither by mechanical loading of the cell with carbon fibres or by stretching the cell.
24                                              Carbon fibre reinforced polymers (CFRP) were introduced
25 -class athletes without amputations, using a carbon fibre running-specific prosthesis (RSP).
26 to minimise diffusion of the catalyst in the carbon fibre substrate.
27 port that Si nanowires grown on a conducting carbon-fibre support provide a robust model battery syst
28 ng - a coating applied to the surface of the carbon fibres to assist handling, improve the interfacia
29 at ventricular myocytes were stretched using carbon fibres to investigate the mechanisms underlying t
30                    Myocytes were attached to carbon fibre transducers and stretched, sarcomere length
31 izing, namely carbon nanotubes (CNTs) on the carbon fibres, which in addition imparts electrical and
32 th ex situ microscopy clearly shows nitrided carbon fibres with embedded iron particles that are not

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