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Typus
Verschleierung
Bearbeiter
Hindemith
Gesichtet
Yes.png
Untersuchte Arbeit:
Seite: 14, Zeilen: 16-27
Quelle: Granz 2009
Seite(n): 16, Zeilen: 10-21
Electrophysiological recordings

Extracellular field potentials were recorded with glass microelectrodes (150 mmol/l NaCl; 2–10 MΩ) connected to the amplifier by an Ag/AgCl–KCl bridge in the third layer of temporal neocortical tissues as well as in the entorhinal cortex and hippocampal CA1 and CA3 areas. Field potentials were traced by an ink-writer and recorded by a digital oscilloscope.

Induction of neocortical SD

SD was elicited by KCl microinjection. A glass electrode filled with 2 M KCl was fixed in a special holder connected with plastic tube to a pressure injector and the tip inserted into the sixth layer of the neocortical slices. A high-pressure pulse was applied to inject an amount of K+ in the tissue sufficient to induce cortical SD (tip diameter: 2 m; [sic] injection pressure 0.5–1.0 bar applied for 200-300 ms, two injections, 1–3 nl per pulse).

1. Electrophysiological recordings

Extracellular field potentials were recorded with glass microelectrodes (150 mmol/l NaCl; 2–10 MΩ) connected to the amplifier by an Ag/AgCl–KCl bridge in the third and the fifth layers of neocortical tissues. Field potentials were traced by an ink-writer and recorded by a digital oscilloscope.

2. Induction of neocortical SD

SD was elicited by KCl microinjection. A glass electrode filled with 2 M KCl was fixed in a special holder connected with plastic tube to a pressure injector and the tip inserted into the sixth layer of the neocortical slices. A high-pressure pulse was applied to inject an amount of K+ in the tissue sufficient to induce cortical SD (tip diameter: 2 m; [sic] injection pressure 0.5–1.0 bar applied for 200-300 ms, two injections, 1–3 nl per pulse).

Anmerkungen

The source is not mentioned.

Sichter
(Hindemith) Schumann

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