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USE OF THE PATCH CLAMP – A TUTORIAL
Axopatch 200B, Copyright 1997-1999, Axon Instruments, Inc.
M A X I M U M A C H I E V A B L E
% P R E D I C T I O N ( % )
V
STEP
(mV)
Figure 4.
Maximum % PREDICTION as a functioning voltage step.
After adjusting the whole-cell capacitance as described above (Figure 5a; same as Figure
3d), advance the PREDICTION potentiometer setting to 95 or 96%. Without any other
adjustments, set the LAG at 10 µs and advance the CORRECTION potentiometer setting to
about 95%. A rather large transient should appear in the current at the beginning and end
of the command step. Its peak-to-peak amplitude should be 2-4 nA and it should undergo
several distinct "rings" requiring 2-4 ms to disappear into the noise (Figure 5b). To
completely eliminate this transient, begin by reducing the setting of the SERIES
RESISTANCE control by about 2-3%. As you reduce this setting, the amplitude of the
transient first decreases and then begins to increase. A distinct minimum exists and the
desired setting of the SERIES RESISTANCE control is at this minimum (Figure 5c).
Next, slightly decrease the FAST MAG setting. The fast leading edge transient should
decrease along with the peak-to-peak magnitude of the overall transient. Stop when the
leading edge transient disappears as in Figure 5d.
If all controls were set correctly from Figure 3d (or 5a), you should be able to completely
obliterate the remaining transient with a small increase in the WHOLE-CELL CAP. setting.
If the transient cannot be completely eliminated in this way, minor readjustments of the
SERIES RESISTANCE
control may be required, followed by further readjustments of
FAST MAG and FAST
τ
. An iterative procedure works best. It should be possible to
reach this high degree of compensation without any residual transient as shown in Figure
5e.
Содержание Axopatch 200B
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Страница 153: ...Circuit Diagrams Request Form ...