shows the curve of hemolysis red blood cells with and without treatment, the expected behavior of
erythrocytes when exposed to different concentrations of NaCl. It is divided into three ranges: the first with
means hypotonic 0.02 to 0.06 moles, due to the low extracellular concentrations, induces the process of cell turgor
and therefore hemolysis is more noticeable [6]. The second interval is presented by the increase in concentrations
between hypotonic and isotonic solutions and a third interval revealed isotonic solutions similar to patterns
of the human body [5].
It is possible to compare the curved hemolysis of the treated blood with the blue LED visible light (420 - 490
nm), and the control. The blue LED is well-known for stimulating the production of proinflammatory cytokines,
including interleukin 1 (IL-1), tumor necrosis factor (TNF), and stimulating colony factor of granulocyte and
macrophage (GM-CSF). Thus, it appears to be relatively effective especially in the treatment of acne [7].
According to Morris and Davey [9] Hemiglobina or methemoglobin (Hi) has a peak absorption at around 480
nm initially. When compared to the wavelength of blue LED, specifically methemoglobin is found in greater
concentration in the solution which was irradiated by the blue LED when analyzed by the spectrophotometer,
justifying a higher level of hemolysis in hypotonic solutions that expressed statistical significance (p < 0.004).
Some concentrations of carboxyhemoglobin may be found in blood plasma due to radiation of wavelengths between
420 - 490 nm. The behavior of red blood cells in isotonic concentrations progressed to subsequent assuming
the normal pattern superposing the blood without treatment.
One can counteract the behavior of red blood cells treated by the green LED visible light (515 - 570 nm) with
untreated blood. The performance of the green LED is essentially the synthesis of fibroblasts, increasing the deposition
of type I collagen and reducing the activity of collagenase in dermal papillae [9], which could promote
rejuvenating effect. Other studies have also reported that when combined with longer wavelengths the same effects
are found [3].
The hemoglobin absorbs more green radiation around 515 nm second Morris and Davey [8], it is possible to
find oxyhemoglobin in the solution when submitted to spectrophotometer. These same authors report that other
shows the curve of hemolysis red blood cells with and without treatment, the expected behavior oferythrocytes when exposed to different concentrations of NaCl. It is divided into three ranges: the first withmeans hypotonic 0.02 to 0.06 moles, due to the low extracellular concentrations, induces the process of cell turgorand therefore hemolysis is more noticeable [6]. The second interval is presented by the increase in concentrationsbetween hypotonic and isotonic solutions and a third interval revealed isotonic solutions similar to patternsof the human body [5].It is possible to compare the curved hemolysis of the treated blood with the blue LED visible light (420 - 490nm), and the control. The blue LED is well-known for stimulating the production of proinflammatory cytokines,including interleukin 1 (IL-1), tumor necrosis factor (TNF), and stimulating colony factor of granulocyte andmacrophage (GM-CSF). Thus, it appears to be relatively effective especially in the treatment of acne [7].According to Morris and Davey [9] Hemiglobina or methemoglobin (Hi) has a peak absorption at around 480nm initially. When compared to the wavelength of blue LED, specifically methemoglobin is found in greaterconcentration in the solution which was irradiated by the blue LED when analyzed by the spectrophotometer,justifying a higher level of hemolysis in hypotonic solutions that expressed statistical significance (p < 0.004).Some concentrations of carboxyhemoglobin may be found in blood plasma due to radiation of wavelengths between420 - 490 nm. The behavior of red blood cells in isotonic concentrations progressed to subsequent assumingthe normal pattern superposing the blood without treatment.One can counteract the behavior of red blood cells treated by the green LED visible light (515 - 570 nm) withuntreated blood. The performance of the green LED is essentially the synthesis of fibroblasts, increasing the depositionof type I collagen and reducing the activity of collagenase in dermal papillae [9], which could promoterejuvenating effect. Other studies have also reported that when combined with longer wavelengths the same effectsare found [3].The hemoglobin absorbs more green radiation around 515 nm second Morris and Davey [8], it is possible tofind oxyhemoglobin in the solution when submitted to spectrophotometer. These same authors report that other
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