PubMed HealthSearch

PubMed · 7129665

An automatic procedure for pre-processing ECG/VCG signals.

Abstract

An automatic procedure for the pre-processing of ECG/VCG signals has been implemented on a HP2100 computer in order to test the significance of a few algorithms for the reduction of low-frequency and high-frequency noises superimposed on the tracings, i.e. baseline-drift evaluation and correction, low-pass and high-pass analogue and digital filterings. It is shown that such operations diminish the influence of noise and improve the phase of feature extraction in the processing program for a better measurement of wave amplitudes, durations and intervals. Such aspects are considered fundamental due to the increasing applications of 24-h Holter type recording, microprocessor-based modules both in the cardiological field and in patient monitoring systems, besides taking into account the new design concept of electrocardiographic equipments which, in the future, will become more and more a sort of data acquisition modules.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

S Cerutti, E Gatti, L Masciadri. 1982. An automatic procedure for pre-processing ECG/VCG signals.. https://doi.org/10.1016/0020-7101(82)90023-x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Semantic category imprecision: a connectionist study of the boundaries of word meanings.

The view that word meanings have a discrete symbolic character has led to misleading impressions about their neurobiological basis. We hypothesize that this lexical semantic knowledge is imprecise, overlapping, and widely distributed throughout the human temporal lobes. The present study uses a computer modeling experiment to investigate this hypothesis. The objects in the study are "cups" and "bowls." Thirty connectionist networks were taught that wide containers without handles are "bowls" and that narrow containers with handles are "cups." The network was then asked to identify 14 different cylindrical containers of seven different widths, some with handles and others without. When compared to a study of human performance, the networks manifested the normal pattern of object naming and the normal pattern of individual variability.

Computers