Brain Damage
Brain damage is an injury that causes the deterioration or destruction of brain cells. Brain damage includes both Traumatic Brain Injury (TBI), caused by an external force, and Acquired Brain Injury (ABI), occurring at the cellular level. The severity of damage can vary based on they type of injury, but can range from headaches, confusion, and memory problems, to more severe cognitive, behavioral, and physical disabilities.
Benefits of Hyperbaric Oxygen Therapy for Brain Damage:

Increases Amount of Oxygen in the Blood
Stimulates development of new blood vessels from pre-existing vessels as well as the natural development of new blood vessels.

Reduces Inflammation & Swelling
Suppresses the cellular activity of the immune system which triggers swelling when an injury or damage to the body occurs. While this reaction is meant to start healing and protect from injury it can result in secondary injury, pain, and prolonged recovery time.

Preserves, Repairs, & Enhances Cellular Functions
Boosts cellular metabolism, promotes rapid cell reproduction, and enhances collagen synthesis. Collagen is a protein in connective tissues like skin.
Key Research on Hyperbaric Oxygen Therapy for Brain Damage
Recent News on Hyperbaric Oxygen Therapy for Brain Damage
Miraculous Results Achieved with Hyperbaric Treatment
Article from Fox 29 San Antonio discusses the use of Hyperbaric Oxygen Therapy at Brook Army Medical Center to treat recovering service members. Healing from an injury can be tough, but doctors are now seeing amazing results with the use of a hyperbaric...
MSG Scott Roessler Testimony on the power of HBOT
Listen to Scott Roessler's powerful story about how he dealt with his post deployment symptoms with Hyperbaric Oxygen Therapy (HBOT).
Joe Namath on Using a HBOT to Treat Concussion Affects
NFL Hall of Fame Quarterback Joe Namath on his personal experience of a hyperbaric oxygen therapy (HBOT) to treat the effects of the concussions and Traumatic Brain Injury (TBI) he received while playing football. He also discusses the new research he is...
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Additional Research
The effect of oxygenation level on cerebral post-traumatic apoptotsis is modulated by the 18-kDa translocator protein (also known as peripheral-type benzodiazepine receptor) in a rat model of cortical contusion.
Abstract: Hyperbaric hyperoxia has been shown to reduce apoptosis in brain injury. As the 18-kDa translocator protein (TSPO), also known as peripheral-type benzodiazepine receptor, is closely associated with the mitochondrial transition pore and because of its role in...
Hyperbaric oxygen in traumatic brain injury.
Abstract: This critical literature review examines historical and current investigations on the efficacy and mechanisms of hyperbaric oxygen (HBO) treatment in traumatic brain injury (TBI). Potential safety risks and oxygen toxicity, as well as HBO's future potential,...
Protection of mitochondrial function and improvement in cognitive recovery in rats treated with hyperbaric oxygen following lateral fluid-percussion injury.
Abstract: Hyperbaric oxygen (HBO2) has been shown to improve outcome after severe traumatic brain injury, but its underlying mechanisms are unknown. Following lateral fluid-percussion injury (FPI), the authors tested the effects of HBO2 treatment as well as enhanced...