Hemodynamics Module
Cardiac Output Module
Witleaf Cardiac Output Module use the Edward Cather to measure the C.O. of the patient which is widely used in the OR and ICU.Witleaf's Cardiac Output Module solution can provided:
> C.O. Measurement with Edward Cather;
> 2×IBP Measurement;
> 2 Channel Realtime pulse waveform;
> Hemodynamic parameter calculation;
> Ti automatic and manual mode;
> Realtime Tb waveform;
> Integrated tools and technical support;
> Certificated support and standard test report.
Table 1 IBP/CO Module Select Table
Model
Electrical Characteristics
Measured parameter
Applicability people
Recommended applications
(M601)
DC12V
2 Channels IBP/CO
Adult/Pediatric/Neonate
Surgical Care
Intensive Care
(M603)
DC12V
4 Channels IBP
Adult/Pediatric/Neonate
Surgical Care
Intensive Care
(M601 V)
DC12V
2 Channels IBP/CO
Big/Medium/Small animal
Veteriany monitoring
(M603 V)
DC12V
4 Channels IBP
Big/Medium/Small animal
Veteriany monitoring
(M605)
DC12V
ICG
Adult/Pediatric/Neonate
Intensive Care
Model:
(M601)
Electrical Characteristics:
DC12V
Measured parameter:
2 Channels IBP/CO
Applicability people:
Adult/Pediatric/Neonate
Recommended applications:
Surgical Care Intensive Care
Model:
(M603)
Electrical Characteristics:
DC12V
Measured parameter:
4 Channels IBP
Applicability people:
Adult/Pediatric/Neonate
Recommended applications:
Surgical Care Intensive Care
Model:
(M601 V)
Electrical Characteristics:
DC12V
Measured parameter:
2 Channels IBP/CO
Applicability people:
Big/Medium/Small animal
Recommended applications:
Veteriany monitoring
Model:
(M603V)
Electrical Characteristics:
DC12V
Measured parameter:
4 Channels IBP
Applicability people:
Big/Medium/Small animal
Recommended applications:
Veteriany monitoring
Model:
(M605)
Electrical Characteristics:
DC12V
Measured parameter:
ICG
Applicability people:
Adult/Pediatric/Neonate
Recommended applications:
Intensive Care
Thermodilution
The thermodilution method of determining cardiac output is to inject a certain amount of saline or glucose solution at a certain temperature into the heart instantaneously at the injection end of the floating catheter (generally at 0℃ or room temperature). Due to the great difference between the temperature of the injected solution and the temperature of the blood, it can bring about rapid changes in the internal energy of the heart, and through the high-sensitivity thermistor at the end of the floating catheter at the pulmonary artery.
it can accurately record the change of the bleeding temperature, and the change of this blood temperature can be depicted in a curve, which is known as the time-thermal dilution curve, and through the relevant formulas and algorithms, it can be accurately projected from the cardiac output by analyzing this curve.
Thoracic impedance(ICG)
Different perfusion induces different impedance changes, and cardiac output per beat can be predicted by monitoring changes in thoracic impedance.
noninvasive impedance method of cardiac output monitoring (ICG) is noninvasive, sensitive, and low-cost.
Related Products