Exact(6)
Two SALs can be connected with each other via USB for double recordings.
A lot of knowledge about the connectivity between different lobula plate cells has been learned from double recordings, i.e. experiments where current was injected into one cell while the membrane potential of another cell was simultaneously recorded.
Thus, we carried out simultaneous whole-cell double recordings from infected and uninfected neurons as described above.
The repeatability of the measurement was assessed in 82 sets of double recordings obtained from 26 patients (20 double recordings at PEEP 0 cmH2O; 25 at PEEP 5 cmH2O; 26 at PEEP 10 cmH2O, and 11 at PEEP 15 cmH2O to a total of 164 recordings).
Simultaneous recordings from presynaptic CR cells and postsynaptic GABAergic interneurons were performed to test for functional connectivity in (n = 146) double recordings in slices obtained from P11 P23 CXCR4-EGFP mice.
First, to test whether acutely knocking-down Ng alters synaptic transmission, we carried out simultaneous whole-cell double recordings from neurons co-expressing Ng-siRNA and GFP, and untransfected neurons.
Similar(54)
Recordings of PWA and carotid-femoral PWV were obtained by applanation tonometry (SphygmoCor® CPV system®, AtCor Medical, Sydney, Australia) as double-recordings by a trained observer.
Recordings of pulse wave analysis (PWA) and carotid-femoral PWV were obtained by applanation tonometry (SphygmoCor® CPV system®, AtCor Medical, Sydney, Australia) as double-recordings by a trained observer.
This observation was corroborated in simultaneous double patch recordings, where the same stimulus elicited similar EPSPs but smaller EPSCs in young DGCs (Figure 4D and 4E).
Simultaneous double whole-cell recordings were obtained for nearby pairs of infected (fluorescent) and uninfected (non-fluorescent) neurons under visual guidance using differential interference contrast illumination.
The effect of GFP-Ng on synaptic transmission was evaluated by simultaneous double whole-cell recordings from pairs of nearby infected and uninfected neurons under voltage-clamp configuration.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com