2007
DOI: 10.1117/12.752503
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Effects of laser-magnetic blood irradiation in vivo

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(7 citation statements)
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“…The reported changes [42,44] correlate with results of spectral investigations of blood in vitro [29,30] and investigations of photodissociation of heme-ligand bonds in hemoglobin solutions using femto-and picosecond laser radiation pulses (λ ex = 307, 580, and 610 nm) [45][46][47]. Important features of this process were found by studying photodissociation of hemoglobin complexes with ligands by laser spectroscopy [45][46][47].…”
Section: Spectral Manifestations Of Photochemical Reactions Induced Bsupporting
confidence: 66%
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“…The reported changes [42,44] correlate with results of spectral investigations of blood in vitro [29,30] and investigations of photodissociation of heme-ligand bonds in hemoglobin solutions using femto-and picosecond laser radiation pulses (λ ex = 307, 580, and 610 nm) [45][46][47]. Important features of this process were found by studying photodissociation of hemoglobin complexes with ligands by laser spectroscopy [45][46][47].…”
Section: Spectral Manifestations Of Photochemical Reactions Induced Bsupporting
confidence: 66%
“…Analogous broadening and low-frequency shifts of IR absorption bands of peptide NH, CN, and C=O groups that are indicative of conformational changes in the blood protein macromolecules were observed during UVI [42,44] and in certain instances were partially reversible like the changes in the absorption spectra in the UV-visible region that were noted above.…”
Section: Spectral Manifestations Of Photochemical Reactions Induced Bmentioning
confidence: 81%
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