Heavy-duty industrial valve for fluid control by APS Technology
Heavy-duty industrial valve for fluid control by APS Technology
Durable stainless steel valve used in bulk handling and chemical processing
Durable stainless steel valve used in bulk handling and chemical processing
High-performance valve for irrigation and fluid transfer systems
High-performance valve for irrigation and fluid transfer systems
Industrial-grade valve designed for mining and food processing applications
Industrial-grade valve designed for mining and food processing applications
Reliable flow control valve with precision engineering from APS Technology
Reliable flow control valve with precision engineering from APS Technology

APPLICATIONS

  • Routine cardiac function evaluation

  • Drug effect monitoring and treatment guidance

  • Real-time monitoring during surgery and recovery

  • Early detection of hemodynamic instability

  • Continuous cardiovascular monitoring in critical care

  • Hemodynamic assessment in clinical research environments

FEATURES



Feature

Description

Monitoring Type

Non-invasive impedance cardiography (ICG)

Design

Compact modular plug-in architecture

Hemodynamic Data

Real-time cardiac output and circulatory monitoring

Signal Acquisition

Stable and reliable impedance detection

Waveform Monitoring

ECG, impedance waveform, differential impedance waveform

Electrode System

Four-electrode configuration for accurate readings

Integration

Compatible with patient monitoring systems

Monitoring Capability

Continuous real-time patient monitoring

Key hemodynamic parameters

  • CO (Cardiac Output)

  • SV (Stroke Volume)

  • CI (Cardiac Index)

  • SI (Stroke Index)

  • HR (Heart Rate)

  • PEP (Pre-ejection Period)

  • LVET (Left Ventricular Ejection Time)

  • STR (Systolic Time Ratio)

  • EF (Ejection Fraction)

  • TFC (Thoracic Fluid Content)

Supports up to 22 hemodynamic parameters.

ICG Module / Hemodynamic Monitoring

ICG Module / Hemodynamic Monitoring

Non-invasive cardiac output monitoring using impedance cardiography (ICG)

The APS Technology Multi-parameter ICG Module provides real-time, non-invasive cardiac output and hemodynamic monitoring using advanced impedance cardiography technology.

Designed for modern healthcare environments, the system enables clinicians to continuously assess cardiac performance without the risks associated with invasive monitoring methods. Its compact modular architecture allows seamless integration with compatible patient monitoring systems for ICU, operating room, emergency care, and research applications.

With reliable signal acquisition and continuous monitoring capability, the ICG Module helps healthcare professionals make faster and more informed clinical decisions while improving workflow efficiency and patient safety.

What is an ICG hemodynamic monitor?

An ICG hemodynamic monitor is a non-invasive monitoring system used to evaluate cardiac function and circulatory dynamics by measuring electrical impedance changes within the thorax during cardiac cycles.

Using impedance cardiography (ICG) technology, the system calculates cardiac output and other hemodynamic parameters without the need for invasive catheter-based procedures.

These systems are widely used in modern healthcare because they provide continuous real-time cardiovascular assessment while improving patient safety and reducing monitoring risks.

Benefits & specifications of the ICG module

The APS ICG Module provides several advantages over traditional invasive hemodynamic monitoring systems.

First, it delivers real-time cardiac output and hemodynamic monitoring using non-invasive impedance cardiography technology, helping clinicians continuously assess cardiovascular performance.

Second, the module supports advanced waveform monitoring including ECG waveform, cardiac impedance waveform, and differential impedance waveform, providing a comprehensive view of circulation dynamics.

Third, its compact modular design allows easy integration with compatible patient monitoring systems across critical care and clinical environments.

Finally, the ICG Module improves patient safety by reducing the risks and costs associated with invasive cardiac monitoring procedures while supporting faster clinical decision-making.

SPECIFICATIONS



Parameter

Details

Monitoring Method

Impedance Cardiography (ICG)

Electrode Method

Four-electrode configuration

Accuracy Correlation

r ≈ 0.94 compared with thermodilution methods

Dimensions

175 × 75 × 100 mm

Monitoring Capability

Continuous real-time monitoring

Integration

Plug-in module for compatible patient monitors

Signal Monitoring

ECG, impedance waveform, differential impedance waveform

Applicable departments

  • ICU / CCU

  • Operating Room

  • Anesthesiology

  • Emergency Room

  • Cardiology Department

  • Clinical Research Facilities

FEATURES



Feature

Description

Monitoring Type

Non-invasive impedance cardiography (ICG)

Design

Compact modular plug-in architecture

Hemodynamic Data

Real-time cardiac output and circulatory monitoring

Signal Acquisition

Stable and reliable impedance detection

Waveform Monitoring

ECG, impedance waveform, differential impedance waveform

Electrode System

Four-electrode configuration for accurate readings

Integration

Compatible with patient monitoring systems

Monitoring Capability

Continuous real-time patient monitoring

Key hemodynamic parameters

  • CO (Cardiac Output)

  • SV (Stroke Volume)

  • CI (Cardiac Index)

  • SI (Stroke Index)

  • HR (Heart Rate)

  • PEP (Pre-ejection Period)

  • LVET (Left Ventricular Ejection Time)

  • STR (Systolic Time Ratio)

  • EF (Ejection Fraction)

  • TFC (Thoracic Fluid Content)

Supports up to 22 hemodynamic parameters.

APPLICATIONS

  • Routine cardiac function evaluation

  • Drug effect monitoring and treatment guidance

  • Real-time monitoring during surgery and recovery

  • Early detection of hemodynamic instability

  • Continuous cardiovascular monitoring in critical care

  • Hemodynamic assessment in clinical research environments

Conclusion

The APS Technology Multi-parameter ICG Module provides a reliable and efficient solution for non-invasive cardiac output and hemodynamic monitoring.

Its combination of real-time assessment, advanced waveform monitoring, compact modular integration, and patient-safe monitoring technology makes it suitable for a wide range of clinical and research applications.

By helping clinicians monitor cardiovascular performance without invasive procedures, the ICG Module improves patient safety, supports faster decision-making, and enhances workflow efficiency in critical care environments.

Get in touch to discuss your specific monitoring requirements.

Get in touch to discuss your specific needs

Get in touch to discuss your specific needs