Risk and advantages of using strongly beveled microelectrodes for electrophysiological studies in cardiac Purkinje fibers

scientific article published on May 15, 1979

Risk and advantages of using strongly beveled microelectrodes for electrophysiological studies in cardiac Purkinje fibers is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1007/BF00582618
P953full work available at URLhttp://link.springer.com/content/pdf/10.1007/BF00582618.pdf
http://link.springer.com/article/10.1007/BF00582618/fulltext.html
http://link.springer.com/content/pdf/10.1007/BF00582618
P698PubMed publication ID572044

P2093author name stringG. Isenberg
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Current-voltage relations in the lobster giant axon membrane under voltage clamp conditionsQ34262795
Intracellular ionic activity measurements in nerve and muscleQ37774282
Letter: Impalement artifacts in microelectrode recordings of epithelial membrane potentialsQ41483464
A simple method for beveling micropipettes for intracellular recording and current injectionQ43408500
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Iontophoretic application of acetylcholine: advantages of high resistance micropipettes in connection with an electronic current pump.Q47826689
Fluorescent staining of cat motoneurons in vivo with beveled micropipettes.Q51148372
VOLTAGE CLAMP TECHNIQUE IN MAMMALIAN CARDIAC FIBRES.Q51273529
A pressure device for intracellular injection.Q52476063
Volume changes and potential artifacts of epithelial cells of frog skin following impalement with microelectrodes filled with 3 m KCl.Q54157219
The positive dynamic current and its inactivation properties in cardiac Purkinje fibres.Q54677929
Cardiac Purkinje fibres: resting, action, and pacemaker potential under the influence of [Ca2+]i as modified by intracellular injection techniquesQ66902805
A Method for Rapid Bevelling of Micropipette ElectrodesQ67441680
A comparison of chloride- and citrate-filled microelectrodes for d-c recordingQ69547000
Beveling of fine micropipette electrodes by a rapid precision methodQ69794892
The dynamic chloride component of membrane current in Purkinje fibersQ70938889
Passing current through recording glass micro-pipette electrodesQ72940024
The specific ionic conductances and the ionic movements across the motoneuronal membrane that produce the inhibitory post-synaptic potentialQ73882749
The effect of internal and external potassium concentration on the membrane potential of frog muscleQ74258618
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectphysiologyQ521
electrophysiologyQ1154774
MicroelectrodesQ72028672
P304page(s)91-98
P577publication date1979-05-01
1979-05-15
P1433published inPfluegers ArchivQ1091689
P1476titleRisk and advantages of using strongly beveled microelectrodes for electrophysiological studies in cardiac Purkinje fibers
P478volume380

Reverse relations

cites work (P2860)
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Q46180941Calcium tolerant ventricular myocytes prepared by preincubation in a "KB medium".
Q71189150Decoupling of heart muscle cells: correlation with increased cytoplasmic calcium activity and with changes of nexus ultrastructure
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Q59095830Glycocalyx is not required for slow inward calcium current in isolated rat heart myocytes
Q54476484Intracellular ion activities in frog skin in relation to external sodium and effects of amiloride and/or ouabain.
Q67249294Isolated bovine ventricular myocytes. Characterization of the action potential
Q62988574KCl leakage from microelectrodes and its impact on the membrane parameters of a nonexcitable cell
Q66981528Microelectrode artifacts and frog skin potentials
Q53958401Properties of electrolyte-filled glass microelectrodes: an experimental study.
Q54540501Some properties of KCl-filled microelectrodes: correlation of potassium "leakage" with tip resistance.
Q34248545The effects of the Anemonia sulcata toxin (ATX II) on membrane currents of isolated mammalian myocytes

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