Technology Behind It

This page gives more information on how Evolutioner’s technology works.

“The medicine of the future will be the medicine of frequencies.”

Albert Einstein

Amplification

Evolutioner does not use an external pulsed electromagnetic field device (PEMF) to pulse the beneficial frequencies to the body. Instead, it uses the body’s own “PEMF” which is the brain.
The brain is an electromagnetic field system that pulses electrical signals. Soundwaves can enable the brain to pulse these beneficial electrical signals by itself. Using the brain’s natural electromagnetic pulses are safer and we believe it is far more superior than using an external PEMF.

Evolutioner uses a process called the Frequency Following Response (FFR) which refers to the brain’s electrical response to rhythmic sensory stimulation, such as pulses of sound.
When the brain is presented with a rhythmic stimulus, such as a pulsing tone, the rhythm is reproduced in the brain in the form of electrical pulses. For example: A pulsing tone of 10 beats per second will result in the brain pulsing an electromagnetic field signal of 10Hz (Alpha waves).

Evolutioner optimizes all frequency bands. This includes Delta (1 to 4Hz), Theta (4 to 8Hz), Alpha (8 to 12Hz), Beta (12 to 30Hz) and Gamma (30 to 100Hz) brainwaves.

The effects of the Frequency Following Response were first discovered by Dr. Gerald Oster and reported in the October 1973 issue of Scientific American.

Evolutioner has further developed this technology and created a program specifically designed to counter the effects of aging.

Amplification

Evolutioner does not use an external pulsed electromagnetic field device (PEMF) to pulse the beneficial frequencies to the body. Instead, it uses the body’s own “PEMF” which is the brain.
The brain is an electromagnetic field system that pulses electrical signals. Soundwaves can enable the brain to pulse these beneficial electrical signals by itself. Using the brain’s natural electromagnetic pulses are safer and we believe it is far more superior than using an external PEMF.

Evolutioner uses a process called the Frequency Following Response (FFR) which refers to the brain’s electrical response to rhythmic sensory stimulation, such as pulses of sound.
When the brain is presented with a rhythmic stimulus, such as a pulsing tone, the rhythm is reproduced in the brain in the form of electrical pulses. For example: A pulsing tone of 10 beats per second will result in the brain pulsing an electromagnetic field signal of 10Hz (Alpha waves).

Evolutioner optimizes all frequency bands. This includes Delta (1 to 4Hz), Theta (4 to 8Hz), Alpha (8 to 12Hz), Beta (12 to 30Hz) and Gamma (30 to 100Hz) brainwaves.

The effects of the Frequency Following Response were first discovered by Dr. Gerald Oster and reported in the October 1973 issue of Scientific American.

Evolutioner has further developed this technology and created a program specifically designed to counter the effects of aging.

Brainwaves

Delta Waves

Delta brainwaves (1 to 4Hz) are the slowest brainwaves associated with deep, dreamless, restorative sleep, crucial for physical healing, immune function, and clearing brain waste.

They represent the brain’s deepest relaxation state, allowing for cell repair, memory consolidation, and energy replenishment, contrasting with alert brain activity.

Insufficient delta brain waves prevent your body from properly rejuvenating. This deficit leads to chronic fatigue, a weakened immune system, cognitive decline, and memory consolidation issues. Over time, a lack of deep-sleep delta waves can accelerate the buildup of brain toxins, increasing the risk of cardiovascular disease and neurodegenerative conditions.

Too much delta brain wave activity during waking hours can cause severe cognitive and behavioral issues, including brain fog, learning disabilities, extreme difficulty focusing, and attention deficits.

Delta Waves

Delta brainwaves (1 to 4Hz) are the slowest brainwaves associated with deep, dreamless, restorative sleep, crucial for physical healing, immune function, and clearing brain waste.

They represent the brain’s deepest relaxation state, allowing for cell repair, memory consolidation, and energy replenishment, contrasting with alert brain activity.

Insufficient delta brain waves prevent your body from properly rejuvenating. This deficit leads to chronic fatigue, a weakened immune system, cognitive decline, and memory consolidation issues. Over time, a lack of deep-sleep delta waves can accelerate the buildup of brain toxins, increasing the risk of cardiovascular disease and neurodegenerative conditions.

Too much delta brain wave activity during waking hours can cause severe cognitive and behavioral issues, including brain fog, learning disabilities, extreme difficulty focusing, and attention deficits.

Theta Waves

Theta brainwaves (4 to 8Hz) are associated with extreme relaxation or light sleep. When you dream your brain is producing theta waves.

Studies have shown a connection between theta waves and many different phenomena in the brain. Research on emotions, neural plasticity, meditation, sleep, memory and even hypnosis has links to theta.

Theta has also been associated with very clear mental imagery, peacefulness, subconscious problem solving and a general pleasant emotion.

A lack of theta waves can severely impair your brain’s ability to consolidate memories, process emotions, and achieve deep relaxation. A deficiency often leads to difficulty accessing the subconscious mind, which stunts creativity and intuition, while contributing to persistent anxiety and chronic stress.

Excessive theta waves during waking hours disrupt cognitive function. When overactive, these slow brainwaves cause symptoms like severe mental fog, inattentiveness, excessive daydreaming, and poor memory recall. Chronically high theta activity is also frequently linked to conditions like ADHD, learning disabilities, and depression.

Theta Waves

Theta brainwaves (4 to 8Hz) are associated with extreme relaxation or light sleep. When you dream your brain is producing theta waves.

Studies have shown a connection between theta waves and many different phenomena in the brain. Research on emotions, neural plasticity, meditation, sleep, memory and even hypnosis has links to theta.

Theta has also been associated with very clear mental imagery, peacefulness, subconscious problem solving and a general pleasant emotion.

A lack of theta waves can severely impair your brain’s ability to consolidate memories, process emotions, and achieve deep relaxation. A deficiency often leads to difficulty accessing the subconscious mind, which stunts creativity and intuition, while contributing to persistent anxiety and chronic stress.

Excessive theta waves during waking hours disrupt cognitive function. When overactive, these slow brainwaves cause symptoms like severe mental fog, inattentiveness, excessive daydreaming, and poor memory recall. Chronically high theta activity is also frequently linked to conditions like ADHD, learning disabilities, and depression.

Alpha Waves

Alpha brainwaves (8 to 12Hz) are associated with a state of “relaxed alertness,” occurring when the brain is calm, resting, or meditating with eyes closed.

They bridge conscious, active thought (beta waves) and deep relaxation (theta waves), fostering creativity, reducing stress, and enhancing mental, focused, and calm states.

Not producing enough alpha waves (8–12 Hz) impairs the brain’s ability to “downshift” into a calm, relaxed state. When this happens, your nervous system can remain stuck in a high-alert “beta” state, which places ongoing strain on both the mind and body.

While alpha waves usually represent a calm, relaxed, and focused state, an overabundance during waking hours can cause excessive daydreaming, mental sluggishness, and a lack of focus. This dysregulation can make it difficult to transition to alert states. Additionally, when alpha waves intrude into deep sleep, they disrupt rest and can cause daytime fatigue.

Alpha Waves

Alpha brainwaves (8 to 12Hz) are associated with a state of “relaxed alertness,” occurring when the brain is calm, resting, or meditating with eyes closed.

They bridge conscious, active thought (beta waves) and deep relaxation (theta waves), fostering creativity, reducing stress, and enhancing mental, focused, and calm states.

Not producing enough alpha waves (8–12 Hz) impairs the brain’s ability to “downshift” into a calm, relaxed state. When this happens, your nervous system can remain stuck in a high-alert “beta” state, which places ongoing strain on both the mind and body.

While alpha waves usually represent a calm, relaxed, and focused state, an overabundance during waking hours can cause excessive daydreaming, mental sluggishness, and a lack of focus. This dysregulation can make it difficult to transition to alert states. Additionally, when alpha waves intrude into deep sleep, they disrupt rest and can cause daytime fatigue.

Beta Waves

Beta brainwaves (12 to 30Hz) are fast neural oscillations associated with active thinking, alertness, and focus during normal waking consciousness. They are essential for logical reasoning, decision-making, and high-level cognitive processing.

Too little beta brain wave activity leads to mental fatigue, brain fog, and poor concentration. People with insufficient beta often struggle with low motivation, making it difficult to follow through on tasks, process high-level information, or feel productive, which can resemble states of depression or chronic fatigue.

When the brain produces too much beta, especially in the high-beta range, it gets trapped in “overdrive”. This causes chronic anxiety, hypervigilance, racing thoughts, rumination, physical agitation, and severe sleep difficulties. The body also finds it difficult to heal.

Beta Waves

Beta brainwaves (12 to 30Hz) are fast neural oscillations associated with active thinking, alertness, and focus during normal waking consciousness. They are essential for logical reasoning, decision-making, and high-level cognitive processing.

Too little beta brain wave activity leads to mental fatigue, brain fog, and poor concentration. People with insufficient beta often struggle with low motivation, making it difficult to follow through on tasks, process high-level information, or feel productive, which can resemble states of depression or chronic fatigue.

When the brain produces too much beta, especially in the high-beta range, it gets trapped in “overdrive”. This causes chronic anxiety, hypervigilance, racing thoughts, rumination, physical agitation, and severe sleep difficulties. The body also finds it difficult to heal.

Gamma Waves

Gamma brainwaves (30 to 100Hz) are the fastest brainwave frequency linked to heightened awareness, peak focus, intense concentration, learning, and memory, reflecting high-level cognitive processing and often observed during deep meditation or problem-solving.

Insufficient gamma brain waves impair the brain’s ability to process information, form memories, and bind sensory inputs together. This lack of fast-frequency brain activity is heavily linked to learning disabilities, poor concentration, and conditions like Alzheimer’s disease, schizophrenia, and depression.

Having abnormally high levels of gamma waves can lead to overstimulation. Common side effects include anxiety, stress, insomnia, mental fatigue, and irritability.

Gamma Waves

Gamma brainwaves (30 to 100Hz) are the fastest brainwave frequency linked to heightened awareness, peak focus, intense concentration, learning, and memory, reflecting high-level cognitive processing and often observed during deep meditation or problem-solving.

Insufficient gamma brain waves impair the brain’s ability to process information, form memories, and bind sensory inputs together. This lack of fast-frequency brain activity is heavily linked to learning disabilities, poor concentration, and conditions like Alzheimer’s disease, schizophrenia, and depression.

Having abnormally high levels of gamma waves can lead to overstimulation. Common side effects include anxiety, stress, insomnia, mental fatigue, and irritability.