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Related Concept Videos

Pulse rhythm01:30

Pulse rhythm

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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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Holter monitoring is a continuous electrocardiography (ECG) recording that tracks the heart's electrical activity over an extended period, generally 24 to 48 hours. This noninvasive diagnostic tool detects irregular heart rhythms that may not be captured during a standard ECG performed in a clinical setting.DeviceThe Holter monitor is a portable, small device connected to several electrodes on the patient's chest. These electrodes detect the heart's electrical signals and transmit them to the...
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Diagnosing Pulmonary EmbolismDiagnosing pulmonary embolism (PE) involves clinical assessment and advanced imaging tests. The preferred diagnostic tool is the spiral (helical) CT scan or CT angiography (CTA), which uses intravenous contrast media to visualize the pulmonary vasculature and identify emboli.A ventilation-perfusion (V/Q) scan is an alternative for patients unable to receive contrast media. This scan includes both perfusion and ventilation scanning. Perfusion scanning involves...
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AssessmentA comprehensive assessment is essential in managing a patient with rheumatic heart disease (RHD). Begin with obtaining a detailed medical history, including recent streptococcal infections, a history of rheumatic fever, or previously diagnosed rheumatic heart disease. Assess the patient for symptoms such as fever, chest pain, widespread joint pain (arthralgia), tachycardia, pericardial friction rub, muffled heart sounds, heart murmurs, peripheral edema, subcutaneous nodules, and...
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Remote Patient Monitoring for Global Emergencies: Case Study in Patients With COVID-19.

Ramin Ramezani1, Wenhao Zhang1, Minh Cao2

  • 1Department of Computer Science, University of California, Los Angeles, 550, 404 Westwood Plaza, Engineering 6, Los Angeles, CA, 90095, United States, 1 4242997051.

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Summary

Remote patient monitoring systems effectively tracked COVID-19 recovery, showing improved vital signs and activity levels. This technology is crucial for enhancing home-based care and preparing for future health emergencies.

Keywords:
Bluetooth Low Energy beaconsCOVID-19health care delivery modelsindoor localizationmobile phonephysical activityremote sensing technologysmartwatcheswearable sensors

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Area of Science:

  • Digital Health
  • Wearable Technology
  • Infectious Disease Management

Background:

  • The COVID-19 pandemic underscored the need for telehealth and remote patient monitoring (RPM).
  • Widespread adoption of on-body sensors faces challenges despite accelerated acceptance during the pandemic.
  • Sustained integration of RPM into routine care is essential beyond emergency situations.

Purpose of the Study:

  • To assess if RPM system metrics offer insights into COVID-19 recovery.
  • To demonstrate RPM adaptability for diverse patient cohorts during emergencies.
  • To illustrate the ease of deploying integrated RPM systems.

Main Methods:

  • Exploratory analysis of 73 COVID-19 patients over 2 weeks (Nov 2020-Jul 2021).
  • Collected daily sensor data: activity, energy expenditure, localization, SpO2, respiratory rate, heart rate, temperature.
  • Focused on characteristics and behaviors captured by the RPM system.

Main Results:

  • 41 patients adhered to monitoring; 22 provided substantial data.
  • Increased patient activity and improved SpO2 and respiratory rates observed.
  • Fatigue and headache were most prevalent symptoms, followed by cough and loss of smell.

Conclusions:

  • Monitoring patients outside hospitals is critical, especially during pandemics, to reduce transmission risks.
  • RPM efficacy in home settings prepares healthcare professionals for future events.
  • Integrated RPM data improves care accuracy, reduces data collection burden, and enhances home care quality and cost-effectiveness.