Therapeutic indications

Therapeutic protocols based on REAC® Technology are studied and specialized to act in different fields of application. The main medical macro-areas in which they operate are as follows.

Postural and motor disorders

The REAC protocols in this area, in particular the Neuro Postural Optimization (NPO) protocol, aim to optimize neuro-motor control. Clinical studies have shown that these treatments act on neuro-psychotherapy strategies to improve balance and coordination. Documented applications include functional improvement in individuals with neurological conditions, such as Parkinson's disease and Alzheimer's disease, and rehabilitation following joint trauma.

Disorders of mood and behavior

In this field, REAC neuromodulation treatments, specifically Neuro Psycho Physical Optimization (NPPO) protocols, are designed to improve the individual's response to environmental and internal stressors. The scientific literature reports applications aimed at reducing the symptoms associated with disorders such as anxiety, depression and stress. Further research has explored its use to mitigate the impact of these disorders in complex conditions such as fibromyalgia and autism spectrum disorders.

Algic syndromes

The application of REAC® Technology for pain management focuses on both the perception of the painful stimulus and the underlying biological processes. The protocols are designed to reduce painful symptoms in acute and chronic clinical settings, such as post-traumatic pain, fibromyalgia and nonspecific cervicalgia. The action is carried out through the modulation of local inflammatory processes and the optimization of the neurological response to pain.

Reparative and regenerative processes

In this area, REAC biomodulation protocols, known as Tissue Optimization (TO), are aimed at supporting and accelerating natural tissue healing processes. Scientific research has documented the effectiveness of these treatments in promoting the repair of skin lesions (venous ulcers, burns, post-surgical necrosis), muscle and ligamentous lesions. The mechanism of action is based on the ability to optimize endogenous bioelectric fields, fundamental for cellular repair processes.
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