BIPBSC Patienten-Biosignal-Simulationseinrichtung in der Biomedizin, Computergesteuert (PC)

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATOR - BIPBSC

Unit: BIPBSC. Computer Controlled Biomedical Patient Biosignals Simulator

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC

Unit details

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC

BIPBSC/CIB. Control Interface Box: The Control Interface Box is part of the SCADA system

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC

Process diagram and unit elements allocation

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC

BIPBSC/SOF. EG5C Software. Main Screen

COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATOR - BIPBSC
COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC
COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC
COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC
COMPUTER CONTROLLED BIOMEDICAL PATIENT BIOSIGNALS SIMULATION UNIT - BIPBSC

INNOVATIVE SYSTEME

The Computer Controlled Biomedical Patient Biosignals Simulator, "BIPBSC", is a complete unit which allows the user to simulate the main Biosignals of a patient and to monitor them in a real in a real patient monitor. It includes a patient simulator, which imitates the Biosignals that can be studied by the unit.

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ÄHNLICHE NEUIGKEITEN

ALLGEMEINE BESCHREIBUNG

The monitoring of a patient carries the most relevant information for a doctor to know how this patient is reacting to a certain treatment.

This monitoring consists on the measurement of different biosignals to understand the physicochemical and physiological processes in the patient.

The Computer Controlled Biomedical Patient Biosignals Simulator, "BIPBSC", is a complete unit which allows the user to simulate the main Biosignals of a patient and to monitor them in a real in a real patient monitor. It includes a patient simulator, which imitates the Biosignals that can be studied by the unit.

The Computer Controlled Biomedical Patient Biosignals Simulator, "BIPBSC", unit is provided with a set of practical exercises, through which the user will understand the basic principles about the monitoring of a patient in a realistic clinical environment, as well as interpret the most important Biosignals patterns.

The Computer Controlled Biomedical Patient Biosignals Simulator, "BIPBSC", unit allows the students to learn how to interpret and perform the most important biosignal measurements: Electrocardiography (ECG), Pulse oximetry (SpO2), Blood Pressure (BP) and Capnography (etCO2).

A Patient simulator mimics the above-mentioned biological signals (among others) by means of a software with different programmable scenarios of healthy and ill patients. Also, a real vital signs patient monitor can be connected to the mannequin for the real measurement of the simulated signals.

This Computer Controlled Unit is supplied with the EDIBON Computer Control System (SCADA), and includes: The unit itself + a Control Interface Box + a Data Acquisition Board + Computer Control, Data Acquisition and Data Management Software Packages, for controlling the process and all parameters involved in the process.

ÜBUNGEN UND GEFÜHRTE PRAKTIKEN

GEFÜHRTE PRAKTISCHE ÜBUNGEN IM HANDBUCH ENTHALTEN

  1. Basic principles of biosignals acquisition.
  2. Understanding of biosignal measuring devices.
  3. Interpretation of the ECG normal pattern.
  4. Analysis of ECG pattern changes.
  5. Interpretation of the SpO2 normal pattern.
  6. Analysis of SpO2 pattern changes.
  7. Interpretation of the etCO2 normal pattern.
  8. Analysis of etCO2 pattern changes.
  9. Interpretation of the non-invasive blood pressure normal pattern.
  10. Analysis of non-invasive blood pressure pattern changes.
  11. Interpretation of the invasive blood pressure normal pattern (ABP,PAP and CVP).
  12. Analysis of invasive blood pressure (ABP, PAP and CVP) pattern changes.
  13. Understanding the reaction that certain drugs have onbiopotentials.
  14. Cardiopulmonary resuscitation (CPR).
  15. Basic principles of pacemakers.
  16. Analysis of the patient ECG stimulated by a transcutaneous pacemaker.

MEHR PRAKTISCHE ÜBUNGEN FÜR DAS GERÄT

  1. Many students view results simultaneously.To view all results in real time in the classroom by means of aprojector or an electronic whiteboard.
  2. Open Control, Multicontrol and Real Time Control.This unit allows intrinsically and/or extrinsically to change thespan, gains, proportional, integral, derivative parameters, etc,in real time.
  3. The Computer Control System with SCADA allows a realindustrial simulation.
  4. This unit is totally safe as uses mechanical, electrical/electronic,and software safety devices.
  5. This unit can be used for doing applied research.
  6. This unit can be used for giving training courses to Industrieseven to other Technical Education Institutions.
  7. Control of the BIPBSC unit process through the control interfacebox without the computer.
  8. Several other exercises can be done and designed by the user.

ÄHNLICHE VERFÜGBARE GERÄTE

QUALITÄT

KUNDENDIENST

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