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FUNCTIONAL CHECKOUT
•
7
Chapter 2
This clamps 10 mV across the 10 M
Ω
resistor in the model cell BATH position. The
panel meter should read the correct current (1 nA) within error limits (2% for the
meter, 1% for the resistor and 1% for the HOLDING COMMAND generator plus
errors for zeroing, etc.).
11) Turn the HOLDING COMMAND switch OFF. Place the CONFIG. switch in the
PATCH position. Zero the panel meter using the PIPETTE OFFSET knob.
Switch the HOLDING COMMAND to "+" with the toggle to "x1". This again clamps
10 mV across the 10 M
Ω
resistor in the model cell. The panel meter should read 1 nA.
At this point the INTEGRATOR RESET LED
should be illuminated continuously
because of the large number of resets needed to pass a continuous current of 1 nA.
Test I-CLAMP and TRACK (I=0):
12) Set mode switch to TRACK and turn the panel meter to V
TRACK
. The meter should read
0 mV. Turn the PIPETTE OFFSET control one full turn clockwise. Meter should read
+50 mV. This is the voltage applied by the TRACK circuit to keep the current at zero.
13) Turn the PIPETTE OFFSET control counterclockwise until the meter again reads
0 mV.
14) Switch mode to I-CLAMP NORMAL. Switch meter to V
HOLD
/I
HOLD
. Rotate HOLDING
COMMAND control until meter reads 1.0 nA. Turn meter switch to V
m
. Meter should
read +10 mV. Confirm that you get the same reading when I-CLAMP FAST mode is
chosen. You may need to adjust the FAST PIPETTE CAPACITANCE
COMPENSATION to remove oscillations.
Test SERIES RESISTANCE and WHOLE-CELL CAPACITANCE COMPENSATION:
15) Turn HOLDING COMMAND OFF. Then set CONFIG. to WHOLE CELL (
β
= 1) and
mode to V-CLAMP.
16) Again remove the foil from the headstage and unplug the model cell. Now connect the
model cell in the CELL position to the headstage input connector and reattach the foil
making sure it is grounded as before. Turn on the SEAL TEST switch. Again you
should see capacitance transients on the oscilloscope screen but now they should be
Содержание Axopatch 200B
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