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Reflex

life science Maturity 11-13

Your body can move on its own.

Greifreflex.JPG
Greifreflex.JPG
It happens very fast. You do not even think about it. This helps keep you safe. It is like a quick jump. Can you feel your body move?
Puĉi (55026762933).jpg
Puĉi (55026762933).jpg

37 words

Your body can move on its own.

Greifreflex.JPG
Greifreflex.JPG
This is called a reflex. It happens very fast. You do not even think about it.
Puĉi (55026762933).jpg
Puĉi (55026762933).jpg
A signal starts the move. The signal travels through your body. It does not always go to your brain. This quick move helps you stay safe. For example, a cat can land on its feet.
Flexor Reflex.jpg
Flexor Reflex.jpg
Babies have these moves too. They help babies react to the world.

74 words

A reflex is a quick move your body makes on its own.

Improved General Reflex Diagram.png
Improved General Reflex Diagram.png
You do not have to think about it. A stimulus, or a change in your world, starts the reflex. This signal travels through a reflex arc. A reflex arc is a path in your nervous system.
Flexor Reflex.jpg
Flexor Reflex.jpg
The signal does not always go to your brain. This makes the response very fast. Many reflexes help you stay safe. For example, the startle reflex helps you react to a surprise. A cat has a reflex to help it land on its feet.
Greifreflex.JPG
Greifreflex.JPG
Babies have many special reflexes. These are called primitive reflexes. They help babies react to things before they learn. One is the palmar grasp reflex. This is when a baby grips things. Doctors use reflexes to check your health. They look at how strong your moves are. They use a scale from 0 to 4 to grade them. A score of 2 is normal for most people.

166 words

A reflex is a quick and unplanned action. It is an involuntary response to a stimulus. This means your body reacts without you thinking about it.

Improved General Reflex Diagram.png
Improved General Reflex Diagram.png
These actions happen almost instantly to help living things survive. Some reflexes help with self-defense. For example, the startle reflex reacts to a surprise. The feline righting reflex helps a cat land safely after a fall. Many important body functions are also reflex actions. These include breathing, digestion, and your heartbeat. These processes keep your body working even when you are not thinking.

Reflexes work through special paths called reflex arcs. First, a stimulus starts a signal in an afferent nerve. This signal travels to a synapse, which is a tiny junction. The signal then jumps across the synapse to a motor neuron. This neuron then causes a specific response.

Flexor Reflex.jpg
Flexor Reflex.jpg
This path does not always travel to the brain. Because the signal can bypass the brain, the response is very fast. Some reflexes are simple and use only one synapse. Others are more complex and use many synapses to work.

Humans have many different types of reflexes. Skeletal reflexes involve the nervous system that is newer in evolution. Autonomic reflexes involve a more primitive nervous system. Doctors check your health by testing these reflexes. They look at muscle stretch reflexes, like the patellar reflex in your knee.

Improved General Reflex Diagram.png
Improved General Reflex Diagram.png
They use a scale from 0 to 4 to grade them. A score of 2 is usually considered normal. A score of 0 means the reflex is absent. A score of 4 means the reflex is hyperactive.

Newborn babies have special reflexes called primitive reflexes. These help infants respond to the world before they learn.

Greifreflex.JPG
Greifreflex.JPG
One example is the palmar grasp reflex where a baby grips things. Another is the sucking reflex. Babies also have the Moro reflex, which is a startle response. These reflexes are not usually seen in adults. Other reflexes involve cranial nerves, like the blink reflex in your eyes. The gag reflex is another example found in humans.

People have studied how these actions work for a long time. René Descartes shared ideas about automatic actions in 1664. He wrote in his work "Treatise on Man." He compared the body to a mechanical statue. Later, Marshall Hall explained reflexes scientifically in the 19th century. He published a paper in 1833 about the spinal cord.

Demonstration of reflex reversal.svg
Demonstration of reflex reversal.svg
He showed that reflexes are different from voluntary movements. He proved the spinal cord can control these actions without the brain. This helped us understand how our nervous system stays in control.

439 words

A reflex, or reflex action, is an involuntary and unplanned sequence of events. It is a nearly instantaneous response to a specific stimulus. These actions are vital because they often increase an organism's survival and self-defense. For instance, the startle reflex provides an automatic response to unexpected stimuli. Similarly, the feline righting reflex helps a cat reorient its body during a fall. This ensures the animal can achieve a safe landing.

Puĉi (55026762933).jpg
Puĉi (55026762933).jpg

Reflexes function through specific neural pathways called reflex arcs. The process begins when a stimulus activates an afferent nerve. This nerve carries a neural signal to a synapse, which is a tiny junction. The signal is then transferred across the synapse to a motor neuron. This neuron finally evokes the target response.

Improved General Reflex Diagram.png
Improved General Reflex Diagram.png
Because these signals do not always travel to the brain, the response is automatic. It does not require conscious thought to occur. Some reflexes are short-latency, meaning they have only a single synapse. Others are long-latency, requiring signals to be transduced across multiple synapses.

Scientists categorize reflexes into different anatomical types. Autonomic reflexes involve a primitive nervous system. In contrast, skeletal or somatic reflexes involve a nervous system that is more recent in evolutionary development. Reflexes can also be classified by how they are triggered. Myotatic reflexes, or muscle stretch reflexes, occur when a muscle contracts in response to being stretched. A tendon reflex occurs when a muscle contracts after its tendon is struck. There is also the Golgi tendon reflex, which acts as the inverse of a stretch reflex.

Flexor Reflex.jpg
Flexor Reflex.jpg

Medical professionals use reflexes to assess the integrity of the nervous system. They often use electromyography (EMG) to detect information regarding the central and peripheral nervous systems. Doctors typically grade reflex activity on a scale from 0 to 4. A score of 2+ is considered the normal level of activity. A score of 0 means the reflex is absent, or "mute." A score of 1+ indicates the reflex is hypoactive. Conversely, a 3+ score means it is hyperactive without clonus. A score of 4+ represents hyperactive behavior accompanied by clonus.

Demonstration of reflex reversal.svg
Demonstration of reflex reversal.svg

Humans possess a wide variety of specific reflex types. Cranial nerve reflexes include the pupillary light reflex and the corneal reflex, also known as the blink reflex. The gag reflex and the jaw jerk reflex are other examples. Newborn infants also exhibit "primitive reflexes" that adults do not have. These include the palmar grasp reflex, where an infant grips objects, and the sucking reflex. The Moro reflex, or startle reflex, is another common infant reaction.

Greifreflex.JPG
Greifreflex.JPG

Historically, the study of these automatic actions has evolved significantly. In the 17th century, René Descartes introduced the concept of automatic bodily responses. In his 1664 work, "Treatise on Man," he used the analogy of a mechanical statue. He suggested that sensory input could trigger motor responses in a deterministic way. Later, in the 19th century, the English physiologist Marshall Hall formulated the scientific concept of reflex action. In his 1833 paper, he explained how the spinal cord mediates these actions independently of the brain. This helped distinguish involuntary reflexes from voluntary movements controlled by the brain.

Reflexes are not always immutable or unchanging. Most reflexes are flexible and can be modified to meet the requirements of specific behaviors. This is known as reflex modulation. For example, the stretch reflex helps stabilize posture when a muscle is at rest. However, during voluntary movements, the intensity of this reflex is reduced. This prevents the resistance reflex from impeding intentional motion. The exact mechanisms of this modulation, such as presynaptic inhibition, are still being studied. Reflexes remain a fundamental connection between the environment and the biological systems of living things.

618 words
🖼️ Images & Media (5)
File:Improved General Reflex Diagram.png
Improved General Reflex Diagram.png
File:Greifreflex.JPG
Greifreflex.JPG
File:Flexor Reflex.jpg
Flexor Reflex.jpg
File:Puĉi_(55026762933).jpg
Puĉi_(55026762933).jpg
File:Demonstration of reflex reversal.svg
Demonstration of reflex reversal.svg
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