About: In In vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields     Goto   Sponge   NotDistinct   Permalink

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  • Our research thus far has concerned the impact of external magnetic fields (50 Hz) and low (0.01-10 mT) induction on adherence capabilities of T lymphocytes obtained from the blood of patients with head and neck tumors. We know that the in vitro adherence capability of T lymphocytes towards surfaces in cancer patients is less than that of control. Previously, we have found that exposure to magnetic fields (50 Hz / 0.01-10 mT) increases the capability of T lymphocytes, in larynx/pharynx cancer patients, to adhere in vitro to surfaces, achieving almost physiological values, in not only pre-treatment patients but also those receiving treatment in the course of follow-up. The capability of T lymphocytes in controls (voluntary blood donors) to adhere to surfaces was also increased (50 Hz / 0.01-0.5 mT). The present study concentrates on the significance of the level of magnetic field induction in order to determine whether low induction values can restore T lymphocytes adherence capabilities. Testing a set of 20 patients showed a statistically significant difference (p < 0.05) in the in vitro adherence capacity of T lymphocytes between both 0.01 and 0.05, and 0.1 mT induction levels. In the control group (patients diagnosed with chronic sensorineural hearing loss) there was even a statistically significant difference between induction values of 0.05 and 0.01 mT. Therefore, we concluded that lower induction values resulted in a more biologically significant response.
  • Our research thus far has concerned the impact of external magnetic fields (50 Hz) and low (0.01-10 mT) induction on adherence capabilities of T lymphocytes obtained from the blood of patients with head and neck tumors. We know that the in vitro adherence capability of T lymphocytes towards surfaces in cancer patients is less than that of control. Previously, we have found that exposure to magnetic fields (50 Hz / 0.01-10 mT) increases the capability of T lymphocytes, in larynx/pharynx cancer patients, to adhere in vitro to surfaces, achieving almost physiological values, in not only pre-treatment patients but also those receiving treatment in the course of follow-up. The capability of T lymphocytes in controls (voluntary blood donors) to adhere to surfaces was also increased (50 Hz / 0.01-0.5 mT). The present study concentrates on the significance of the level of magnetic field induction in order to determine whether low induction values can restore T lymphocytes adherence capabilities. Testing a set of 20 patients showed a statistically significant difference (p < 0.05) in the in vitro adherence capacity of T lymphocytes between both 0.01 and 0.05, and 0.1 mT induction levels. In the control group (patients diagnosed with chronic sensorineural hearing loss) there was even a statistically significant difference between induction values of 0.05 and 0.01 mT. Therefore, we concluded that lower induction values resulted in a more biologically significant response. (en)
  • Our research thus far has concerned the impact of external magnetic fields (50 Hz) and low (0.01-10 mT) induction on adherence capabilities of T lymphocytes obtained from the blood of patients with head and neck tumors. We know that the in vitro adherence capability of T lymphocytes towards surfaces in cancer patients is less than that of control. Previously, we have found that exposure to magnetic fields (50 Hz / 0.01-10 mT) increases the capability of T lymphocytes, in larynx/pharynx cancer patients, to adhere in vitro to surfaces, achieving almost physiological values, in not only pre-treatment patients but also those receiving treatment in the course of follow-up. The capability of T lymphocytes in controls (voluntary blood donors) to adhere to surfaces was also increased (50 Hz / 0.01-0.5 mT). The present study concentrates on the significance of the level of magnetic field induction in order to determine whether low induction values can restore T lymphocytes adherence capabilities. Testing a set of 20 patients showed a statistically significant difference (p < 0.05) in the in vitro adherence capacity of T lymphocytes between both 0.01 and 0.05, and 0.1 mT induction levels. In the control group (patients diagnosed with chronic sensorineural hearing loss) there was even a statistically significant difference between induction values of 0.05 and 0.01 mT. Therefore, we concluded that lower induction values resulted in a more biologically significant response. (cs)
Title
  • In In vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields
  • In In vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields (cs)
  • InIn vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields (en)
skos:prefLabel
  • In In vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields
  • In In vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields (cs)
  • InIn vitro T lymphocyte adherence capabilities under the influence of lower induction values (0.1-0.01 mT) of 50 Hz external magnetic fields (en)
skos:notation
  • RIV/00064173:_____/11:#0000141!RIV12-MZ0-00064173
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  • V
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  • 012031
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  • 204006
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  • RIV/00064173:_____/11:#0000141
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  • Electromagnetic field of power frequency, the inhibition of adherence of T lymphocytes, head and neck cancer (en)
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  • GB - Spojené království Velké Británie a Severního Irska
http://linked.open...ontrolniKodProRIV
  • [CCCEC627028D]
http://linked.open...i/riv/nazevZdroje
  • Journal of Physics: Conference Series
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  • 329
http://linked.open...iv/tvurceVysledku
  • Hahn, A.
  • Pokorný, J.
  • Jandová, A.
  • Čoček, A.
  • Ambruš, M.
  • Dohnalová, A.
  • Mártonová, J.
  • Nedbalová, M.
issn
  • 1742-6588
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