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Benefits of Bio-Mechanical Stimulation Massage

The benefits of biomechanical stimulation massage are numerous. It eases tension in muscles and increases neurological excitability, decreases inflammation, increases blood flow and reduces inflammation. It also decreases depression and stress. Here are some of the most popular bio-mechanical massage benefits. 부산출장 Bio-mechanical stimulation is an excellent option to alleviate chronic pain. It also improves blood circulation and decreases inflammation. It can also help prevent painful conditions like osteoporosis and rheumatoidarthritis, tendonitis and rheumatoid arthritis.

Increases blood flow

Biomechanical stimulation massage has the obvious benefit of increasing blood flow. However, this effect may not be as obvious as you believe. While it can affect circulation, massage has several different biological effects. For instance, massage can enhance skin temperature and create superficial hyperaemia. The capillaries of the skin respond to the force of the massage and dilate. In addition when massage is applied to the skin it is possible that blood that normally circulate through the muscles is diverted to skin.

Reduces muscle tension

The benefits of bio-mechanical stimulation massage therapy are reducing muscle tension. It can help ease muscle spasms, enhance blood circulation and lymphatic drainage and reduces stress levels. It also improves posture, decreases soreness of muscles and to reduce the effects of aging. Bio-mechanical stimulation massage can restore hormone balance. The body produces natural hormones, and controls a variety of physiological functions, including inflammation and pain. The body's hormones are affected by environmental factors like pollution and stress. Apart from helping your body recover from injuries, biomechanical stimulation massage also assists in relieving muscle spasms, improves blood flow, and relieves muscle tension.

Neurological excitability increases

The effects of bio-mechanical stimulation (BMS) massage on neuromuscular excitability remain not known, but it's thought that it may decrease muscle tension, increase wellbeing, and improve the performance of athletes. Massage can reduce neuromuscular excitability via the process of post-activation potentiation. Massage may decrease neuromuscular excitability through stimulation of muscle mechanoreceptors and relaxing muscles. Massage can also stop muscle tension or spasms after exercise. Further research is needed to verify the relationship between neuromuscular excitability and massage.

Reduces muscle aches

Bio-mechanical stimulation massage helps in healing and muscle pain, tension relief and muscle soreness. This therapy is usually as part of a holistic therapy program. Apart from easing discomfort, it may also prevent muscle strain, promote blood flow, and boost lymph circulation. Because it helps the body relax and heal, biomechanical stimulation massages are an excellent choice for people with chronic pains and aches.

Increases satellite cell numbers

Recent research has demonstrated that massages using biomechanical stimulation can increase the number of satellite cell in skeletal muscle. Satellite cells are mechanosensitive, or cells that respond to the changes that occur in their niche's surroundings. They are tethered to the extracellular matrix by a dystrophin-associated glycoprotein complex. The extracellular matrix is amorphous and the mechanical properties of muscles also affect the number of satellite cells. Massage can increase the number of satellite cells.

Increases M1 macrophages

In addition to their anti-inflammatory capabilities They also have high levels of plasticity, which makes them prone to phenotype transitions, such as the conversion of M1 into M2. This phenotype change can result in a pro-inflammatory condition, or an anti-inflammatory condition. There are many avenues for modulating the inflammatory response. These include limiting the neutrophilic response and increasing the amount of M1 macrophages.

Prevents further injury

A new study by scientists from Colorado State University and The University of Kentucky suggests that bio-mechanical stimulation or a type of massage, can help to prevent further injury by increasing the amount of satellite cells that reside in the muscles. The study also suggests that the stimulation may trigger changes in the phenotypes of M1 macrophages, which transform into anti-inflammatory macrophages. The change in signaling may increase the body's capacity to adapt to rehabilitation.
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