ECG SENSOR ML84M USER S GUIDE. CENTRE FOR MICROCOMPUTER APPLICATIONS

Similar documents
EKG Sensor Product Number: ENEKG189

11/18/13 ECG SIGNAL ACQUISITION HARDWARE DESIGN. Origin of Bioelectric Signals

BIO 360: Vertebrate Physiology Performing and analyzing an EKG Lab 11: Performing and analyzing an EKG Lab report due April 17 th

Electrocardiogram sensor (ECG/EKG sensor)

2The Concept of Periodic Functions

LABORATORY INVESTIGATION

Science in Sport. 204a ECG demonstration (Graph) Read. The Electrocardiogram. ECG Any 12 bit EASYSENSE. Sensors: Loggers: Logging time: 10 seconds

Analyzing the Heart with EKG

Figure 1 muscle tissue to its resting state. By looking at several beats you can also calculate the rate for each component.

HUMAN ANATOMY AND PHYSIOLOGY

Outline. Electrical Activity of the Human Heart. What is the Heart? The Heart as a Pump. Anatomy of the Heart. The Hard Work

Lab 4: Introduction to Physiological Measurements - Cardiovascular

How Do We Sense, Think, and Move? -- Lab #11 Bioelectronics Measuring Electrical Properties of the Body

Sample. Analyzing the Heart with EKG. Computer

EKG Sensor (Order Code EKG-BTA)

Blood Pressure Laboratory

L63 - Bioelectronics Measuring Electrical Properties of the Body

ECG MACHINE KEC- Series

Biology 13A Lab #10: Cardiovascular System II ECG & Heart Disease

II. PROCEDURE DESCRIPTION A. Normal Waveform from an Electrocardiogram Figure 1 shows two cycles of a normal ECG waveform.

12 Lead EKG. Brigham and Women's Hospital

INTRODUCTION TO ECG. Dr. Tamara Alqudah

Chapter 3 Biological measurement 3.1 Nerve conduction

Cardiac Cycle. Each heartbeat is called a cardiac cycle. First the two atria contract at the same time.

APPLICATIONS OBJECTIVES PRE-LECTURE

Electrocardiography Normal 5. Faisal I. Mohammed, MD, PhD

3/26/15 HTEC 91. EKG Sign-in Book. The Cardiac Cycle. Parts of the ECG. Waves. Waves. Review of protocol Review of placement of chest leads (V1, V2)

Interpreting Electrocardiograms (ECG) Physiology Name: Per:

Cardiovascular Physiology

Lab #3: Electrocardiogram (ECG / EKG)

CORONARY ARTERIES HEART

The Function of an ECG in Diagnosing Heart Conditions. A useful guide to the function of the heart s electrical system for patients receiving an ECG

Lab #3: Electrocardiogram (ECG / EKG)

The Normal Electrocardiogram

Pain Relief Patch. Operation Manual Read Before Using MODEL # ET

Evaluation copy. EMG and Muscle Fatigue. Computer

PHYS 1112L - Introductory Physics Laboratory II

Cardiovascular Effects of Exercise. Background Cardiac function

COPYRIGHT Ramsey Medical, Inc.

CAMOSUN COLLEGE BIOLOGY 144 (2010) LABS

EI2311 BIOMEDICAL INSTRUMENTATION

Compressor Nebulizer. Guidebook

Testing the Accuracy of ECG Captured by Cronovo through Comparison of ECG Recording to a Standard 12-Lead ECG Recording Device

EEG, ECG, EMG. Mitesh Shrestha

POWER EFFICIENT PROCESSOR FOR PREDICTING VENTRICULAR ARRHYTHMIA BASED ON ECG

iworx Sample Lab Experiment HP-7: Hypothesis-driven Biofeedback Lab/Research Study

HST-582J/6.555J/16.456J-Biomedical Signal and Image Processing-Spring Laboratory Project 1 The Electrocardiogram

Experiment HH-3: Exercise, the Electrocardiogram, and Peripheral Circulation

The HeartCheck TM PEN Handheld ECG Is your heartbeat slow, fast, or irregular? Are you at risk? Put your heart health in your own hands

Panorama. Arrhythmia Analysis Frequently Asked Questions

An electrocardiogram (ECG) is a recording of the electricity of the heart. Analysis of ECG

ECE ECE PRINCIPLES OF BIOMEDICAL SYSTEMS & DEVICES LAB 1 - ELECTROCARDIOGRAM

Electromyography II Laboratory (Hand Dynamometer Transducer)

Vital Scout Wellness Monitor Reviewer Guide

A m e r i c a s D e n t a l E q u i p m e n t C o m p a n y. Rev 2/15. D a n s e r e a u

The Electrocardiogram

Design of the HRV Analysis System Based on AD8232

Lesson 4 ECG 2 Electrocardiography

Design of Context-Aware Exercise Measurement SoC Based on Electromyogram and Electrocardiogram

Reviewed Date: Supersedes (Policy #/description & date): Prepared by: Jacque Callis, RN Approved by: D.R. Johnson, MD

Compressor Nebulizer. Guidebook

Experiment HE-12: Targeted Exercise with Wireless Electrocardiogram (ECG)

Electrocardiography for Healthcare Professionals

Building an Electrocardiogram (ECG) Diagnostic System. Collection Editor: Christine Moran

Lesson 1: Types of ECG s

PD233: Design of Biomedical Devices and Systems

RASPBERRY PI BASED ECG DATA ACQUISITION SYSTEM

Each student should record the ECG of one of the members of the lab group and have their own ECG recorded.

Practical Guidelines For the Enraf-Nonius Commercial Training Myomed 632

CP lead resting electrocardiograph

CAUTION...2 INSTRUCTION...5 IF-4000 INTERFERENTIAL STIMUATOR CONTROLS AND FUCTIONS...7 HOW TO USE YOUR IF-4000 STIMULATOR...14 ELECTRODES CARE...

Sheet 5 physiology Electrocardiography-

Biology 212: Anatomy and Physiology II. Lab #5: Physiology of the Cardiovascular System For Labs Associated With Dr. Thompson s Lectures

5- The normal electrocardiogram (ECG)

PHONOCARDIOGRAPHY (PCG)

Arrhythmias. Pulmonary Artery

A Simple Portable ECG Monitor with IOT

This leaflet is intended for patients with permanent pacemakers and their parents.

12.2 Monitoring the Human Circulatory System

The heart's "natural" pacemaker is called the sinoatrial (SA) node or sinus node.

Dissection and Contraction of Frog Heart

Pacing Lead Implant Testing. Document Identifier

The Heart 1 of 34 Boardworks Ltd 2012

PORTABLE COMPRESSOR NEBULIZER Guidebook & Manual Reorder No. 5606

C200 bands are available in a variety of colors. Visit us at LifeTrakUSA.com

VENTRICULAR DEFIBRILLATOR

ECG Acquisition System and its Analysis using MATLAB

AWAY Model # RTLAGF-900 REV

iworx Sample Lab Experiment HH-4: The Six-Lead Electrocardiogram

Objectives of the Heart

SLEEP IMPROVING WRISTBAND. Item No Owner s Guide

: Biomedical Signal Processing

ECG. Prepared by: Dr.Fatima Daoud Reference: Guyton and Hall Textbook of Medical Physiology,12 th edition Chapters: 11,12,13

Newer pacemakers also can monitor your blood temperature, breathing, and other factors and adjust your heart rate to changes in your activity.

Lab 5: Electromyograms (EMGs)

Temporal Analysis and Remote Monitoring of ECG Signal

Activated Transponder & Activator Instruction Manual

- why the T wave is deflected upwards although it's a repolarization wave?

Birmingham Regional Emergency Medical Services System

Falls clinic tests explained

Transcription:

ECG SENSOR ML84M USER S GUIDE CENTRE FOR MICROCOMPUTER APPLICATIONS http://www.cma-science.nl

Short description The ECG sensor measures electrical potentials produced by the heart (Electro- cardiogram). These small voltages are measured at the skin of the wrists and elbow through electrodes. The ECG sensor can also be used to measures the electrical potentials generated by muscles cells when these cells contract and relax (Electromyogram). For safety reasons the sensor uses an optical coupler to avoid any direct electrical contact between the person whose ECG is measured and the measurement interface or computer. The ECG sensor is delivered together with a Figure 1. The ECG electrode patches. package of 100 electrode patches. The ECG sensor is an I2C digital sensor and can only be connected to special interfaces that support I2C digital sensors like the CMA MoLab interface. Sensor specifications The ECG sensor ML84m is a digital sensor that converts the measured voltage value to a digital value via 14- bit analog- to- digital conversion. The resolution of the sensor is 0.3 μv. Safety instructions The ECG sensor consists of two electronic circuits that are isolated from each other. One of the circuits is connected to the person whose ECG is measured. The other circuit is connected to the measurement interface. The measured in the first circuit voltages are amplified, filtered and transferred through an optical coupler to a second electrical circuit. This is to protect the person from dangerous voltages in case of defects or errors. However, for safe operation it is also necessary to always respect the following safety instructions when using the ECG sensor: 1. The sensor, electrode patches and alligator clips of the sensor must never come into contact with water or any other liquid. 2. Never use the sensor if the insulation of any of the wires is damaged. 3. Never connect the alligator clips of the sensor to anything other than the electrodes. 4. Make sure the alligator clips of the sensor are not within reach of a wall outlet or any other power source. The ECG sensor is to be used for educational purposes only. It is not appropriate for medical applications and not suitable for patient diagnosis. 2 ML84m ECG Sensor User s Guide

Connecting of the ECG sensor to the body Because the electrical signal that is produced by the heart and measured at the skin is very weak, a good contact between skin and electrode is essential for the correct working of the ECG sensor. Remember to follow the safety instructions. 1. Clean the areas of the skin where the electrode patches will be applied (inside of left and right wrist and right elbow). 2. Peel an electrode patch from its backing paper and put it firmly on the inside of the right elbow. This is for reference. 3. Peel a second electrode patch and put it firmly on the inside of the right wrist. 4. Peel a third electrode patch and put it firmly on the inside of the left wrist. 5. Connect the white alligator clip from the sensor to the tab of the right elbow electrode (see photo below). 6. Connect the red clip to the tab of the right wrist electrode. 7. Connect the blue clip to the tab of the left wrist electrode. Figure 2. Connection of the ECG electrodes to the body. Tips for use Contracted muscles will produce electrical signals that are much stronger then the signal produced by the heart. To obtain a nice ECG signal, it is therefore necessary that the muscles of the arms (and also other muscles) are as relaxed as possible. It is easiest to put your arms on the arms of a chair or on a table. Also, breathe slowly. If the signal is not satisfactory, maybe the contact between the skin and the electrode patches is not good enough. Clean the skin with soap and water or alcohol, dry with a paper towel and reapply new patches. The electrode patches have a limited lifetime, especially after a package has been ML84m ECG Sensor User s Guide 3

opened. Check if the patches are still good. Open packages can be conserved best in an airtight box in a refrigerator. Additional packages of electrode patches (100 per package) can be ordered at CMA. Collecting data This ECG sensor works only with specific interfaces. The sensor will be automatically detected when connected to such an interface. For detailed information about measurements with sensors consult the User Manuals of the interface and the Coach 6 software. Calibration The ECG sensor is supplied with a factory calibration and gives values in mv. The Coach 6 program allows shifting the pre- defined calibration. Suggested experiments The ECG sensor can be used for various experiments such as: Monitoring ECG in rest and after mild exercise Investigating ECG changes with mild stimulants Studying the P, Q, R, S, T waveforms Studying the effect of different body positions on the ECG Recording the electrical activity of a muscle (EMG) Associate amount of electrical activity with strength of muscle contraction. Investigate the relation between the EMG and the force exerted by the arm. 4 ML84m ECG Sensor User s Guide

The electrocardiogram A schematic ECG of one heartbeat is shown in the figure 4. Every (normal) heartbeat is composed of a P wave, a QRS complex and a T wave. The P wave is caused by depolarization of the atrial tissue prior to contraction. The QRS waves are generated by currents when the ventricular tissue depolarizes, prior to contraction. The T wave is caused by Figure 3. Schematic ECG currents generated as the ventricle recovers from depolarization. The P- R interval is between 0.12 and 0.20 seconds for most persons. The length of this interval is independent of the heartbeat rate. Figure 4. Two registrations of an ECG from the same person; on the left at a heartbeat of 80, on the right at a heartbeat of 162 beats per minute. In general ECG's produced with the CMA ECG sensor will show this pattern. However no ECG, produced with this equipment is the same. Specifically, the height of the P wave and the length of the S wave may differ from the pattern shown in medical books (compare figure 4 and figure 5). Figure 4 is taken from a medical book; figure 5 are ECG's made with the CMA ECG sensor. This might be due to the method of measuring (the electrodes are placed on the wrists instead of on the breast), but also to the fact that the CMA ECG sensor is an instrument that doesn't meet medical standards. ML84m ECG Sensor User s Guide 5

Technical Specifications Sensor kind Measuring range Resolution Current consumption Digital: on- sensor digital conversion (14- bits resolution, communication via I2C) 0 to 5 mv 0.3 μv (Typical) 40 70 ma Maximal sampling rate 1000 Hz Connection 5- pins mini jack plug Warranty: The ECG sensor ML84m is warranted to be free from defects in materials and workmanship for a period of 12 months from the date of purchase provided that it has been used under normal laboratory conditions. This warranty does not apply if the sensor has been damaged by accident or misuse. Rev. 08/09/2013 Note: This product is to be used for educational purposes only. It is not appropriate for industrial, medical, research, or commercial applications. 6 ML84m ECG Sensor User s Guide