A machine helps a heart beat. 
Sometimes a heart beats in a bad way. 

Sometimes a heart beats in a bad way. This can be very dangerous. A machine called a defibrillator can help. It gives a dose of electric current to the heart. This is often called a shock.
The shock helps the heart stop a bad rhythm. After the shock, the heart's own natural pacemaker can start a normal beat again. This part of the heart is called the sinoatrial node. 
There are different kinds of these machines. Some are small and portable. We call these AEDs. They are automated external defibrillators. They are easy for anyone to use. The machine uses a voice to give instructions. It even checks the heart rhythm for you. 
Other machines are used in hospitals. Doctors use manual models. They must choose the right power and timing. Some people even have a tiny device inside them. This is an implantable cardioverter-defibrillator. It stays in the body to watch the heart. It can give a shock if the heart beats badly.
A heart helps our bodies work by beating in a steady rhythm. Sometimes, the heart gets into a dangerous rhythm called an arrhythmia. Two specific types are ventricular fibrillation and ventricular tachycardia. In these cases, the heart does not pump blood properly. Defibrillation is a medical treatment used to help in these moments. It works by sending a dose of electric current to the heart. This is often called a counter-shock.
How does this electrical shock actually work? It is a very interesting process. The shock causes a thing called depolarization in the heart muscle. This means the electricity stops the bad, messy rhythm. Once the bad rhythm ends, the heart can reset itself. The body has a natural pacemaker called the sinoatrial node. This node helps the heart start a normal rhythm again. 
There are many different ways to use a defibrillator. Some are manual models used by doctors in hospitals. These require a professional to choose the right voltage and timing. Every NHS ambulance in the United Kingdom has one for paramedics. In the United States, many paramedics are trained to use them. There are also internal models used during heart surgery. These use metal plates that touch the heart muscle directly.
Many people use automated external defibrillators, or AEDs. These are portable machines that anyone can use. They are helpful because they give voice instructions to the user. The machine even checks the heart rhythm all by itself. This makes it easier for bystanders to help during an emergency. In North America, survival rates for cardiac arrest outside a hospital are often less than 10%. Inside a hospital, the rate is higher at 20%. However, people with a shockable rhythm have better survival rates between 21 and 50%.
To give a shock, the machine must connect to the skin. This is done using electrodes. Some electrodes are hard paddles with plastic handles. A person must press these onto the chest with about 25 pounds of force. Other electrodes are self-adhesive pads that stick like a sticker. These pads often have a special gel on them. The gel helps the electricity move into the body easily. This helps prevent the skin from getting burned. 
Defibrillation is a critical medical treatment for life-threatening cardiac arrhythmias. An arrhythmia is a disturbance in the heart's normal rhythm. Defibrillation specifically targets ventricular fibrillation (V-Fib) and non-perfusing ventricular tachycardia (V-Tach). In these states, the heart cannot pump blood effectively to the rest of the body. The treatment involves delivering a dose of electric current to the heart. This is often referred to as a counter-shock.
While the exact process is not fully understood, the mechanism is quite specific. The electrical shock causes depolarization in a large amount of the heart muscle. This sudden electrical event stops the chaotic, irregular rhythm. Once the arrhythmia is interrupted, the body's natural pacemaker can take over. This pacemaker is a part of the heart called the sinoatrial node. It works to re-establish a normal sinus rhythm. It is important to note that defibrillation cannot restart a heart in asystole. Asystole is often called a flatline. In those cases, medical professionals use cardiopulmonary resuscitation (CPR) and medication instead.
There are several different types of defibrillation devices used in medicine. Manual external defibrillators are used by healthcare professionals. These require a provider to diagnose the rhythm using an electrocardiogram. The professional must then manually determine the correct voltage and timing. These are common in hospitals and ambulances. For example, every NHS ambulance in the United Kingdom carries one. In the United States, paramedics and advanced EMTs are trained to use them. 
Another type is the internal defibrillator. These are used during or after cardiac surgery, such as a heart bypass. They use round metal plates called electrodes. These plates make direct contact with the myocardium, which is the heart muscle. These are mostly used in operating rooms or during open-heart procedures in emergency rooms. There are also implantable cardioverter-defibrillators (ICDs). These are small devices implanted in a patient, similar to a pacemaker. They constantly monitor the heart and automatically deliver shocks if they detect life-threatening rhythms.
Automated external defibrillators (AEDs) are designed for a different purpose. They are portable machines meant for lay responders or bystanders. These devices can be used with little to no training. This is because they provide pre-recorded voice instructions to guide the user. The machine automatically analyzes the patient's heart rhythm. It then decides if a shock is necessary. Some AEDs are semi-automatic, requiring the user to press a button to shock. Others are fully automatic and deliver the shock on their own.
Survival rates for cardiac arrest vary depending on the setting and the heart's rhythm. In North America, survival rates for out-of-hospital cardiac arrests are often less than 10%. In a hospital setting, the rate is higher at 20%. However, the specific rhythm at the time of arrest is a major factor. People with a shockable rhythm, like V-Fib, have much better survival rates. These rates range between 21% and 50%. This is much higher than those with non-shockable rhythms like asystole or pulseless electrical activity (PEA).
To deliver electricity, the device must connect to the patient via electrodes. These electrodes use electrically conductive gel to minimize electrical resistance. This resistance is also called chest impedance. Using gel helps prevent the patient's skin from burning. Some electrodes are traditional metal paddles with insulated handles. A provider must press these against the chest with about 25 pounds of force. Other electrodes are self-adhesive pads that stick to the skin like a sticker. These pads are very common in non-hospital settings. They are easy for untrained users to apply quickly. 
🖼️ Images & Media (3)
More to explore
✨ What else?
Related topics you might enjoy
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.