Germs can move from person to person.
Germs can move from one person to another.
They can travel through the air. Small bits of wet air can fly out when you sneeze. Some tiny bits stay in the air for a long time.
Germs can also move by touch. You might touch a dirty thing. Then you touch your face. 
Sometimes, bugs like flies carry germs. They land on bad things and then land on food. Germs can also move from a mother to her baby.
It is important to stay clean. Do you wash your hands well?
Germs can move from one person to another. This is called transmission. It is how a pathogen, or a germ, spreads.
Germs can travel through the air. Some are in tiny wet drops. These drops come from coughing or sneezing. They stay in the air for a short time. Other germs are in very small dry bits. These stay in the air for a long time. They can reach the nose or mouth.
Some germs move by touch. You might touch a person. You might also touch a surface. We call these surfaces fomites. A fomite is an object like a towel or a tool. 
Other germs use a vector. A vector is a living thing that carries a germ. A fly can be a vector. It picks up germs on its body and moves them to food. 
Germs can even move from a mother to her baby. This can happen before or after birth. It can also happen through breast milk. Staying clean helps stop these germs from spreading.
Pathogens are tiny living things that can cause disease. When these germs move from one person to another, it is called transmission. This passing can happen to a single person or a whole group. It does not matter if the person was sick before. Transmission is a key part of how sickness spreads through a community. Scientists study these paths to understand how to keep people healthy.
There are many ways these germs travel. Some travel through the air in tiny bits. Droplets are small, wet particles that stay in the air for a short time. They usually happen when someone coughs or sneezes. Other germs are in very small, dry particles called droplet nuclei. These are less than 5 micrometers in size. They can stay floating in the air for a long time. This allows them to reach a person's nose or mouth even after the sick person has left.
Germs also move through physical contact. Direct contact happens when people touch skin-to-skin. This includes things like kissing or sharing a towel. Some diseases spread this way and are called contagious. Indirect contact is different because it uses an object. These objects are called fomites. A fomite could be a countertop, a tool, or even soil. You might touch a surface and then touch your own face. This can move the germ into your body. 
Sometimes, a living thing carries the germ for us. This living thing is called a vector. A vector does not cause the sickness itself. Instead, it moves the germ from one host to another. A housefly can be a mechanical vector. It might land on waste and pick up germs on its legs. Then, it lands on your food and drops the germs there. Some germs also move from a parent to a child. This is called vertical transmission. It can happen before birth, during birth, or through breast milk. 
Understanding these paths helps doctors find the source of an illness. If the source is known in a city, it is called local transmission. If the source is unknown, it is called community transmission. In 2024, the World Health Organization created new names for how breathing germs move. They used ideas from particle physics to make things clear. They look at inhalation and how particles land on surfaces. These new rules help experts plan how to stop germs from spreading.
Pathogen transmission is the process where a microorganism moves from an infected host to a new individual or group. This movement can cause communicable diseases. It occurs regardless of whether the new person was previously infected. Scientists study these pathways to understand how illnesses spread through populations. Understanding these routes is vital for public health and medicine. It helps experts predict how a disease might move through a city or a country.
One major way pathogens move is through the air. Scientists divide these into two categories based on particle size. Droplet transmission involves small, wet particles larger than 5 micrometers. These droplets usually stay in the air for a very short time. They typically require the host to be nearby to spread. Common examples include influenza, rhinovirus, and various coronaviruses. In contrast, airborne transmission involves much smaller particles under 5 micrometers. These are called droplet nuclei, which are the residue left after droplets evaporate. These tiny particles can stay suspended in the air for long periods. This allows for contamination even after the infected person has left the area. Diseases like tuberculosis, measles, and chickenpox use this route. Because these particles linger, they often require special ventilation or negative pressure environments to control.
Physical contact is another primary route for transmission. Direct contact occurs through skin-to-skin interaction. This includes activities like kissing or sexual intercourse. It also includes touching infected soil or vegetation. Some diseases spread through shared items like towels or clothing if they are not washed. These specific diseases are often called contagious. This term means they can spread easily between people. Examples include athlete's foot, impetsigo, and conjunctivitis. Indirect contact is slightly different because it involves an inanimate object. These objects are known as fomites. A fomite might be a surgical scalpel, bedding, or a handkerchief. A person might touch a contaminated surface and then touch their own face. This moves the pathogen into the body.
Certain pathogens follow a fecal-oral route. This happens when pathogens move from feces to the mouth. This is often caused by unwashed hands or contaminated food and water. This route is a major concern in pediatrics and veterinary medicine. It is also very important in developing countries where sanitation might be low. For example, a lack of clean water can increase the spread of cholera. Scientists can use these patterns to study disease. If polio is more common in cities without good plumbing, it suggests a fecal-oral route. 
Transmission can also involve other living organisms. A vector is an organism that carries a pathogen to a host without being sick itself. There are two types of vectors: mechanical and biological. A mechanical vector, like a housefly, carries germs passively on its body. A fly might land on animal waste and then land on human food. The pathogen never actually enters the fly's body. Biological vectors are different and more complex. Some pathogens also move through an intermediate host. For instance, a person might ingest improperly cooked pork containing a tapeworm. Other transmissions are vertical, meaning they pass from parent to offspring. This can happen before birth, during birth, or through breast milk. 
Medical settings also have specific risks for transmission. Iatrogenic transmission occurs because of medical procedures. This can happen through touching a wound or using contaminated equipment. It can also happen via contaminated hypodermic needles or blood products. Sharing needles for intravenous drugs can spread blood-borne diseases like Hepatitis C and HIV. Furthermore, scientists distinguish between different levels of spread in a population. Local transmission means the source of the infection has been identified in a specific area. Community transmission occurs when the exact source of the infection is unknown. In community transmission, the links between patients are difficult for epidemiologists to grasp.
To improve accuracy, the World Health Organization released a report in 2024. This report standardized the terminology for respiratory pathogen transmission. They aligned these terms with the principles of particle physics. The new categories include airborne transmission, inhalation, direct deposition, and contact. While these terms are more precise, they have not yet been fully translated into official policy. This includes infection control policies and international health regulations. Understanding these scientific distinctions helps the world prepare for future outbreaks. By tracing how a single particle moves, we can better protect entire communities.
🖼️ Images & Media (3)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 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.