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APPLICATIONS OF SALT AEROSOLS IN IMPROVING HUMAN PERFORMANCE IN STUDENTS
Abstract
The paper presents the experimental data obtained on two groups of students, one control, in two normal classrooms and respectively in the gym, outdoors and another in the same type of rooms, but with a halochamber regime, differentiated on the two gender and age, including children born in 2006 and 2007, at the age with the highest growth rate. The primary data obtained were recorded in a tabular system, followed by their processing and graphical representation of the evolution over time of functional characteristics weight and thoracic perimeter of human subjects), which allow to establish the evolution of the balance between optimal weight and thoracic perimeter of students), with school activities performed daily in halochambers for experimental groups and in normal climatic conditions for the reference group. these being presented in another material and morpho-structural characteristics (thoracic perimeter at rest and maximum inspiration) for each group of students. The air in the halochambers, freshly created by the devices for generating saline aerosols, determined a positive influence on the body's functioning.To achieve the therapeutic effect, high concentrations of saline aerosols / solions of 1-6 mg NaCl / m3 with stability over 72 hours are required. Concentrations below 1.0 mg of NaCl / m3, with a stability of 144 hours, are required to create "clean air" environments and to improve human performance, in order to allow a constant evolution of the cryptoclimate factors in the halochamber, very important to students.
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References8
Sandu I, Chirazi M, Canache M, Sandu GI, Alexeianu MT, et al. Research on NaClsaline aerosols II. New artificial halochamber characteristics. Envi Eng and Manag J ,9(8): 1105-1113, 2010.
Antonovici M.O., Chim. Sandu I., Chim. Vasilache V., Sandu A.V., Sandu I.G.,Stangu C.C., The impact of saline aerosols on students physical performance, ActaGeobalcanica, Macedonia, vol.6/issue 2, pp.65-73,2020.
Ећtirbu C.M., Ећtirbu I.C., Sandu I., Impact Assessment of Saline Aerosols onExercise Capacity of Athletes. Procedia - Soci and Behavi Sci , 46: 4141-4145, 2012.
Pascu C., Process and Device for Intensive Generation of Dry Aerosols withtherapeutical Effect, Patent RO122128(B1)/2009.
Antoniu S.A., MihДѓescu, T., Donner C.F., Inhalled therapy for stable chronicobstructive pulmonary disease, Expert Opinion on Farmacotherapy, Romania, 8(17), pp.3021-3028, 2007.
Roman N.S., Artificial surface microsaline, Patent RO121941(B1)/2008.08.29,2008.
Kanny G., Surdu O., Boulange M. HalothГ©rapie et spГ©lГ©othГ©rapie : se soigner dansles mines de sel. Hegel, vol.9/ issue 1, 2019.
Chervinskaya AV, Zilber NA. Halotherapy for treatment of respiratory diseases. JAerosol Med, 8(3):221-232, 1995.
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