Hemodynamics
Continuous Blood Pressure and Cardiovascular Dynamics
Hemodynamic monitoring provides continuous, high-resolution insight into cardiovascular function, including blood pressure, cardiac output, and autonomic regulation.
What You Can Measure
Continuous Blood PressureBeat-to-beat, non-invasive measurement of arterial pressure
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Cardiac Output & HemodynamicsStroke volume, cardiac output, and key cardiovascular parameters
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Blood Pressure VariabilityShort- and long-term variability in arterial pressure
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Autonomic Cardiovascular Regulation
Insights into nervous system control of cardiovascular function
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Why Hemodynamic Measurement Matter
Continuous measurement reveals physiological dynamics that static measurements cannot capture.
Hemodynamic monitoring provides insight into how the cardiovascular system functions in real time — not just at isolated points.
Unlike intermittent measurements, continuous monitoring captures dynamic changes in blood pressure, cardiac output, and vascular regulation as they occur.
This is critical for understanding physiological responses to stress, interventions, and disease states, particularly in research and clinical environments where subtle changes on a beat-to-beat basis can be significant.
Unlike intermittent measurements, continuous monitoring captures dynamic changes in blood pressure, cardiac output, and vascular regulation as they occur.
This is critical for understanding physiological responses to stress, interventions, and disease states, particularly in research and clinical environments where subtle changes on a beat-to-beat basis can be significant.
Core Systems
Finapres NOVAContinuous non-invasive blood pressure monitoring with advanced hemodynamic and autonomic analysis for real-time assessment of cardiovascular regulation.
Supports detailed cardiovascular analysis including cardiac output, stroke volume, baroreflex sensitivity, and autonomic function testing in both research and clinical environments. Built on decades of validated research use, Finapres systems are widely used for high-resolution cardiovascular and autonomic studies. |
Why MedTach
We don’t just supply systems — we help ensure they are implemented correctly, understood by your team, and used effectively in real-world research and clinical environments.
Specialized expertise in non-invasive hemodynamic monitoring
Deep understanding of cardiovascular measurement techniques and applications
Structured onboarding and training
Ensure consistent, high-quality data collection from day one
Remote-first technical support
Ongoing troubleshooting and guidance without delays
Proven experience supporting Canadian research and clinical teams across diverse study environments
Practical insight into real-world lab and study environments
Deep understanding of cardiovascular measurement techniques and applications
Structured onboarding and training
Ensure consistent, high-quality data collection from day one
Remote-first technical support
Ongoing troubleshooting and guidance without delays
Proven experience supporting Canadian research and clinical teams across diverse study environments
Practical insight into real-world lab and study environments
Build a Complete Measurement System
Combine hemodynamic monitoring with complementary systems to gain a more complete view of cardiovascular and physiological function.
Cardiac Monitoring (ECG/HRV)Combine electrical cardiac activity with hemodynamic data to analyze heart–vascular interactions and autonomic regulation.
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Vascular Function (PWV/ABI)Assess arterial stiffness and vascular health alongside central hemodynamics to understand systemic cardiovascular function.
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Cerebral Blood Flow (TCD)Integrate systemic hemodynamics with real-time cerebral circulation measurements for brain–cardiovascular studies.
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Applications
Designed for research and clinical environments requiring high-resolution cardiovascular data and reproducible measurements.
Cardiovascular physiology research
Study systemic hemodynamics, cardiac output, and blood pressure regulation
Autonomic function and HRV studies
Analyze cardiovascular responses to autonomic nervous system activity
Exercise physiology and performance research
Monitor cardiovascular adaptation during stress and recovery
Clinical research and translational studies
Bridge laboratory findings with real-world physiological outcomes
Pharmacological and intervention studies
Evaluate cardiovascular responses to drugs and therapeutic interventions
Study systemic hemodynamics, cardiac output, and blood pressure regulation
Autonomic function and HRV studies
Analyze cardiovascular responses to autonomic nervous system activity
Exercise physiology and performance research
Monitor cardiovascular adaptation during stress and recovery
Clinical research and translational studies
Bridge laboratory findings with real-world physiological outcomes
Pharmacological and intervention studies
Evaluate cardiovascular responses to drugs and therapeutic interventions
Not Sure Where to Start?
We’ll help you select the right system and approach for your application!