Lead systems – how an ECG works (2024)

An electrocardiogram (ECG) is a recording of the heart’s electrical activity. It is totally painless and can be performed quickly. The heart’s electricity is detected by adhesive electrodes attached to the skin. The resulting measurements are referred to as leads. Various lead systems have been developed and improved over the past century from which electrocardiograms are transcribed. These include the lead systems from Einthoven, Goldberger, and Wilson.

Einthoven’s Lead System

Goldberger’s Lead System

Wilson’s Lead System

Frank’s Lead System

EASI Lead System

360°Lead System

Common Electrocardiograms of Today

1-lead ECG

3-lead ECG

12-lead ECG

Vector ECG

EASI Lead System of Today

360° Lead System of Today

Lead systems – how an ECG works (1)
Lead systems – how an ECG works (2)

Einthoven’s Lead System

Einthoven recorded the first ECG in the world in 1903. As there were no adhesive electrodes or intensifying systems available at this time, the only way to contact the body was to place the extremities in a bucket of salt solution. Einthoven was able to produce a sufficient contact resistance to the body to make the first ECG visible with the help of a string galvanometer. Einthoven could measure the tension between the right and left arm (lead I), the right arm and left leg (lead II), and the left arm and left leg (lead III).

Lead systems – how an ECG works (3)

Goldberger’s Lead System

As Einthoven’s leads were far apart from one another, Goldberger had the idea in 1942 to close this gap. The angle between leads I and II, II and III and II and I is 120°. To improve diagnosis, Goldberger thought it made sense to cut the angles in half, which he accomplished with the help of a resistor network. This corresponds to an analog calculation of the following rules:

-aVR = (I + II) / 2 aVL = (I - III) / 2 aVF = (II + III) / 2 Together with Einthoven’s leads, six vertical (coronal) axes were available.

Wilson’s Lead System

Wilson further developed the ECG system in 1934 by adding a horizontal axis through the heart. He did this by attaching electrodes directly to the chest wall and measuring them against a virtual reference point, located in the middle of the heart. This reference point was called the CT (Common Terminal), and was generated from a resistor network. The Wilson leads are known as V1-V6, and portray the chest wall and the left side of the heart. Together with the leads from Einthoven and Goldberg, the 12-lead ECG was created. This lead system created the 12-lead ECG that is known today as the gold standard for ECGs.

Frank’s Lead System

The further development of lead systems has resulted in the classic 12 leads of today.

The focus was less on understanding the workings of the electrophysiology of the heart, but more on the phenomenological view of the heart’s electrical activity outside the body. In 1956 Frank described the heart as a rotating dipole within space. In principle, a rotating dipole is like a battery with a positive and negative pole spinning in space. Frank asked himself how this rotating dipole could most effectively be measured and described. He placed the electrodes on the body so that the measured leads X, Y and Z (see image 10) were placed in a row, thereby making a Cartesian coordinate system. This results in a representation in the form of a so-called vector loop. This corresponds to a 3D representation of the rotating heart’s dipole in space.

EASI Lead System

In 1988 Dower made Frank’s electrode system even simpler, as he reduced the number of electrodes to five. He was furthermore able to calculate the classic 12 leads from the vector loop. Dower thereby made it possible for classically-trained physicians to be able to read and understand the measurements from a vector ECG.

360° Lead System

CardioSecur is based upon the EASI lead system. Dower’s lead system alone, however, still has the inadequacies of the 12-lead ECG, overlooking things such as posterior wall infarcts. CardioSecur provides 22 leads from the coronal and horizontal planes, providing additional information about the right and posterior walls of the heart, therefore closing the gaps of the classic 12-lead ECG.

Lead systems – how an ECG works (4)

The first 360-degree view of the heart!

ESC guidelines recommend examination of the posterior wall. CardioSecur goes beyond standard 12-lead ECGs by offering synchronized leads for V7-V9 and VR3-VR9. This makes CardioSecur unique – and on top of this, it only uses four electrodes!

The first 360-degree view of the heart!

Lead systems – how an ECG works (5)ESC guidelines recommend examination of the posterior wall. CardioSecur goes beyond standard 12-lead ECGs by offering synchronized leads for V7-V9 and VR3-VR9. This makes CardioSecur unique – and on top of this, it only uses four electrodes!

Common Electrocardiograms of Today

Lead systems – how an ECG works (6)
Lead systems – how an ECG works (7)

1-lead ECG

1-lead ECG systems are very common today. These systems may be used to record either a very long recording up to 14 days (like iRhythm) or a recording of merely a few seconds (like Alivecor). The medical relevance of one lead ECGs is very limited.

1 vertical and 0 horizontal visual axes

Leads:

  • unspecified

Diagnostic capabilities: ischemia cannot be recognized and the meaningfulness for detecting and localizing arrhythmias is severely limited. It can therefore be the case that disorders such as atrial fibrillation or extra ventricular beats will not be recorded.

Lead systems – how an ECG works (8)
Lead systems – how an ECG works (9)

3-lead ECG

3-lead ECGs are used most often for recording a 24-hour reading. A 24-hour reading is a frequently used tool for the diagnosis of heart problems and is reimbursed as a long-term reading.

3 vertical and 0 horizontal visual axes

Leads:

  • unspecified

Diagnostic Capabilities: ischemia cannot be recognized and the informative value of arrhythmias is severely limited. Disorders such as atrial fibrillation or extra ventricular beats may not be recorded.

Lead systems – how an ECG works (10)
Lead systems – how an ECG works (11)

12-lead ECG

A 12-lead ECG combines the lead systems from Einthoven, Goldberger and Wilson, thereby providing information about vertical and horizontal axes. The 12-lead ECG is the gold standard for ECG diagnosis and is used for both resting and stress ECGs.

6 vertical and 6 horizontal visual axes

Leads:

  • Extremities: I, II, III, aVR, aVL, aVF
  • Chest wall: V1, V2, V3, V4, V5, V6
  • Measured Leads: I, II, III, V1, V2, V3, V4, V5, V6
  • Calculated Leads: aVR, aVL, aVF

Diagnostic Capabilities: with the 12-lead ECG fundamentally all heart activity can be measured, and both rhythmic and ischemic abnormalities can be diagnosed on the anterior heart wall. However, according to guidelines, the posterior and right heart wall leads should also be measured when a heart attack is suspected. In practice, this is almost never done. This can be due to time constraints, usability problems and lead placement issues, as well as a lack of education. For example, it is very cumbersome to attach electrodes to the back of a patient experiencing an infarct.

Lead systems – how an ECG works (12)

Vector ECG

The vector ECG views the heart as a rotating dipole. This can be described via the three mutually perpendicular axes of a Cartesian coordinate system. The rotating dipole in space is represented in the form of a vector loop.

Leads:

  • X, Y, Z

Diagnostic Capabilities: until today, Frank’s vector ECG has represented a superior diagnostic possibility. Various ECG changes, e.g. a posterior infarct, are visible on a vector ECG but not on a classic 12-lead ECG. However, this method, although superior, has not caught on, as interpreting the 3D vector loop is extremely difficult and most literature and diagnostic teaching traditionally refers to the classic 12-lead ECG.

Lead systems – how an ECG works (13)
Lead systems – how an ECG works (14)

EASI Lead System of Today

The EASI lead system is based upon the vector loop of a vector ECG, with the classic 12 ECG leads being calculated from this vector loop.

Leads:

  • Extremities: I, II, III, aVR, aVL, aVF
  • Chest wall: V1, V2, V3, V4, V5, V6
  • Measured leads: R, M, L (not shown)
  • Calculated leads: I, II, III, aVR, aVL, aVF, V1, V2, V3, V4, V5, V6

Diagnostic capabilities: the EASI lead system has the same diagnostic capabilities of a 12-lead ECG; however, it is measured using only four electrodes. The model construction may lead to minor deviations between the two systems, most specifically in absolute amplitude or axis. However, these deviations do not have a medical significance for the diagnosis of the ECG.

Lead systems – how an ECG works (15)
Lead systems – how an ECG works (16)

360° Lead System of Today

The 360° lead system is based, as with the EASI ECG, on the vector loop of a vector ECG. In addition to the classic 12 ECG leads, the leads of the right and posterior heart can be calculated, making it an all-encompassing 22-lead ECG. It is the only ECG system that enables physicians to be 100% compliant with the cardiology guidelines without reattaching electrodes, which require anterior and posterior analysis of the heart.

CardioSecur uses lead technology that offers a 360-degree view of the heart and complies with cardiological guidelines.

6 Vertical Visual Axes and 16 Horizontal Visual Axes


Leads:

  • Extremities: I, II, III, aVR, aVL, aVF
  • Chest Wall: V1, V2, V3, V4, V5, V6
  • Measured Leads: R, M, L (not shown)
  • Calculated Leads: I, II, III, aVR, aVL, aVF, V1, V2, V3, V4, V5, V6, V7, V8, V9, VR3, VR4, VR5, VR6, VR7, VR8, VR9

Diagnostic Capabilities: with 22-leads, the diagnoses of the classic 12 leads can be clearly broadened. The possibility of diagnosing infarctions is maximized, as infarcts of the posterior and right heart wall can be equally diagnosed. In addition, the localization of heart rhythm disorders is finally possible.

Lead systems – how an ECG works (17)

Mobile electrocardiogram with 12 or 22 leads

CardioSecur Pro is the only 22-lead ECG with just 4 electrodes. Among others, it can be used to diagnose anterior, lateral and posterior wall infarctions.

Mobile electrocardiogram with 12 or 22 leads

Lead systems – how an ECG works (18)

CardioSecur Pro is the only 22-lead ECG with just 4 electrodes. Among others, it can be used to diagnose anterior, lateral and posterior wall infarctions.

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Lead systems – how an ECG works (2024)

FAQs

How do ECG leads work? ›

The electrodes are connected to an ECG machine by lead wires. The electrical activity of the heart is then measured, interpreted, and printed out. No electricity is sent into the body. Natural electrical impulses coordinate contractions of the different parts of the heart to keep blood flowing the way it should.

How does the ECG monitoring system work? ›

An electrocardiogram (ECG or EKG) is a test to record the electrical signals in the heart. It shows how the heart is beating. Sticky patches called electrodes are placed on the chest and sometimes on the arms or legs. Wires connect the patches to a computer, which prints or displays results.

How many lead systems are in an ECG? ›

The six chest leads (V1 to V6) “view” the heart in the horizontal plane. The information from the limb electrodes is combined to produce the six limb leads (I, II, III, aVR, aVL, and aVF), which view the heart in the vertical plane. The information from these 12 leads is combined to form a standard electrocardiogram.

How does an ECG circuit work? ›

The main function of the ECG hardware is to detect the electrical potentials from the body surface, transmit them into the pre-amplification stage of the circuit for amplification followed by common mode voltage rejection, filtering of any unwanted low and high frequency signals that may interfere with the desirable ...

How do you read a lead ECG? ›

First, the standard 12-lead ECG is a 10-second strip. The bottom one or two lines will be a full “rhythm strip” of a specific lead, spanning the whole 10 seconds of the ECG. Other leads will span only about 2.5 seconds. Each ECG is divided by large boxes and small boxes to help measure times and distances.

What is the acronym to remember ECG leads? ›

The mnemonic memory tricks to remember the limb electrodes and lead wires include: “White on Right” “Clouds over Grass” “Smoke over Fire”

What is the rhyme for the ECG lead? ›

A little rhyme I use to remember 5-Lead ECG placement is: Smoke over fire – (black over red) Clouds over grass – (white over green) Chocolate on the stomach- (but you must remember that it's not on the actual stomach but on the right sternal boarder of 4th intercoastal space)

How do you read an ECG step by step? ›

  1. Step 1: Locate the P wave.
  2. Step 2: Establish the relationship between P waves and the QRS complex.
  3. Step 3: Analyze the QRS morphology.
  4. Step 4: Search for other clues.
  5. Step 5: Interpret the rhythm in the clinical setting.
Aug 31, 2023

How does the ECG test work? ›

Ten small sticky patches called electrodes are put on your arms, legs and chest. These are connected by wires to an ECG machine which picks up the electrical signals that make your heart beat. This electrical activity is recorded and printed onto paper.

How do you process ECG signals? ›

The main steps of this multirate approach are: (1) decimation of the original signal, which includes antialising filtering, to a lower sampling rate better suited to filtering, (2) lowpass filtering to produce an estimate of the baseline wander, (3) interpolation of the estimate back to the original sampling rate, and ...

Which ECG lead is most important? ›

Lead II is the most common, most popular, and generally the best view because the placement of the positive electrode in Lead II views the wavefront of the impulse from the inferior aspect of the heart, as it travels from the right shoulder (RA) towards the left leg (LL).

How many ECG leads can you monitor at once? ›

The five-lead system is commonly used in most organizations. This system provides views from the six limb leads (I, II, III, aVR, aVL, aVF) plus one precordial (C or V) lead. Six-lead systems are also now available, and these systems allow monitoring of two precordial leads.

How does ECG pick up signal? ›

This electrical activity is transmitted throughout the body and can be picked up on the skin. This is the principle behind the ECG. An ECG machine records this activity via electrodes on the skin and displays it graphically.

Why is it called a 12 lead when there are only 10? ›

Why is it called a 12 lead ECG with 10 leads? Usually, An ECG reading requires 10 electrodes. Certain electrodes are included up as 2 pairs, thus paving the way for 2 leads. Thus, it is named as the 12 lead ecg as the 10 electrodes provide 12 perspectives of the heart's electrical activity at various angles.

What is lead 1, 2, 3 in ECG? ›

Einthoven could measure the tension between the right and left arm (lead I), the right arm and left leg (lead II), and the left arm and left leg (lead III).

How accurate is ECG lead placement? ›

Medani et al. (2018) found that only 10% of participants (doctors, nurses and cardiac technicians) correctly applied all of the leads, with the most common errors being the placement of the V1 and V2 leads too superiorly and the V5 and V6 leads too medially.

References

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