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Related Concept Videos

Pulse rhythm01:30

Pulse rhythm

1.6K
Pulse rhythm refers to the pattern of pulsations within specific intervals, offering valuable insights into the regularity or irregularity of the heart's beats as observed through the pattern of pulsation within specific intervals. A regular pulse exhibits a consistent heart rate with uniform waveforms and pulsation force, variations of which can be classified as normal, weak, or bounding.
Conversely, an irregular pulse pattern is termed dysrhythmia, stemming from disruptions in cardiac...
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Special considerations while measuring pulse01:13

Special considerations while measuring pulse

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Assessing a patient's pulse is a fundamental skill in healthcare, but certain situations require special attention:
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Pulse01:16

Pulse

2.6K
When the heart pumps blood out, arterial elastic fibers play a crucial role in sustaining a high-pressure gradient. They expand to accommodate the received blood and then recoil - a process known as the pulse that can be either manually palpated or electronically quantified. Despite a reduction in its effect with increased distance from the heart, elements of the pulse's systolic and diastolic components persist, observable even at the arteriole level.
The pulse serves as a clinical...
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Electrocardiogram01:29

Electrocardiogram

7.6K
An electrocardiogram (ECG or EKG) is a critical diagnostic tool that records the electrical signals produced by the heart during each heartbeat. This recording is achieved through electrodes placed strategically on the arms, legs, and chest. The electrocardiograph amplifies these signals and produces 12 distinct tracings, offering a comprehensive understanding of the heart's electrical activity.
Three major waveforms are present in a typical ECG recording: the P wave, the QRS complex, and...
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ECG Interpretation of Rhythms01:24

ECG Interpretation of Rhythms

18.2K
An electrocardiogram (ECG)graphically represents the heart's electrical activity on ECG paper or a monitor.
Components of the Electrocardiogram
The primary components of a normal ECG waveform in Normal sinus rhythm(NSR) include the P wave, PR interval, QRS complex, ST segment, T wave, and occasionally a U wave.
ECG waveforms are divided by vertical and horizontal lines at standard intervals.
The horizontal axis measures time and rate, and the vertical axis measures amplitude or voltage....
18.2K
Pulse amplitude and quality01:17

Pulse amplitude and quality

3.6K
Pulse amplitude is a crucial indicator of cardiac health because it provides valuable insights into the strength of left ventricular contractions and the overall uniformity of blood circulation within the vasculature. The strength of the pulse is directly related to the force with which the heart contracts and the volume of blood being pumped.
A weak or absent pulse may indicate reduced cardiac output or poor left ventricular contraction, which can be signs of cardiovascular dysfunction or...
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An Algorithm for Real-Time Pulse Waveform Segmentation and Artifact Detection in Photoplethysmograms.

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    A new algorithm accurately detects artifacts in photoplethysmogram (PPG) signals, improving the reliability of data from medical devices. This real-time pulse waveform analysis enhances signal quality determination and data compression.

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    Area of Science:

    • Biomedical Engineering
    • Signal Processing
    • Medical Device Technology

    Background:

    • Photoplethysmography (PPG) is vital for medical monitoring, but artifacts often compromise signal integrity.
    • Existing artifact detection algorithms have limitations in design and scope.
    • Reliable artifact identification is crucial for accurate PPG-based medical measurements.

    Purpose of the Study:

    • To develop and validate a novel embedded algorithm for real-time pulse waveform (PWF) segmentation and artifact detection.
    • To address limitations in current PPG artifact detection methods.
    • To improve the reliability and utility of PPG signals in medical applications.

    Main Methods:

    • Developed a time-domain contour analysis algorithm for PWF segmentation and artifact detection.
    • Implemented the algorithm on a 32-bit ARM core microcontroller for real-time processing.
    • Validated the algorithm using PPG data from 63 subjects across diverse clinical settings (sleep, ergometry, ICU).

    Main Results:

    • The algorithm achieved high performance in beat-to-beat comparisons: 99.6% sensitivity, 90.5% specificity, 98.5% precision, and 98.3% accuracy.
    • Excellent interrater agreement was demonstrated with Cohen's kappa of 0.927 and F-measure of 0.990.
    • The algorithm effectively segmented PWF and detected artifacts, outperforming existing methods.

    Conclusions:

    • The developed PWF analysis is a robust method for determining PPG signal quality.
    • The algorithm supports real-time annotation, data compression, and calculation of pulse wave metrics.
    • This approach enhances the diagnostic value and applicability of PPG in various medical fields.