Publications by authors named "O Llobera"

It was designed a fast solid state electronic waveform recording system (Digitalizer), which can record, store and display action potentials or any type of event, either single pulse or repetitive, as a function of time. Above all, its capacity to record fast transients and to give the output in analog and digital form, makes this electronic device more convenient that conventional recorders or single trace oscilloscope systems.

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The action potential digitalized and stored by means of a fast solid state electronic waveform recording system (Digitalizer) can be directly read out on a printer or in a computer for further processing. It has been designed a digital interface allowing the automatization of these bioelectrical data acquisition and printing process.

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The effects of high doses of X-radiation (100 kilorads) on the neuromuscular transmission of isolated sciatic nerve-sartorius muscle preparations of the frog, as evaluated by bioelectrical characteristics, were explored. Intracellular microelectrode recordings after X-irradiation showed that the resting, excitation and action potentials of nerve fibers approaching the synaptic terminal region of the motor end-plate became lessened, and also presented a slower velocity of impulse propagation, earlier than that observed in muscle cells. After forty minutes following the irradiation period, the neuromuscular transmission became blocked, although muscle fibers still responded to direct electrical stimulation.

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The silver-plater developed for the preparation of silver-silver chloride electrodes attains constancy in electrochemical characteristics, circulating current during exactly identical periods with inverted polarity.

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A solid-state system designed for compensation of asymmetry potentials between microelectrodes, for bioelectric measurements, is described. Advantages over the manual compensator are the following: synchronic compensation of electrodes, application to automatized systems against aging effects in electordes, high speed, and elimination of general muisances of manual circuits. Besides, the system allows to measure digitally the polarization difference and resting membrane potential with precision of +/- 1 mV.

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