FIELD: biotechnology.
SUBSTANCE: invention can be used for the study of biological objects (BO), which are tissues and cells of plant, animal origin and biological environments of humans and animals, on the effects of electromagnetic fields (EMF). The claimed table for electromagnetic studies of biological objects includes a discontinuous rotation mechanism, a lift control mechanism, a casing with a base on which at least four supporting legs are located on the underside, an inner ring with a worm gear for a discontinuous rotation mechanism. The base is removable, made of electrically conductive material, has a rectangular shape and four legs in the form of clamps. On the perimeter of the base there are shielding gaskets and at least eight electrical contacts. On the surface of the base there is a case in the form of a hollow cylinder of non-metallic material and/or a material with a low reflection coefficient, in its inner walls there is a light guide and a hollow tube supplied to the test table and fixed to the body by a transparent cylindrical holder. The test table has a cylindrical shape of a U-shaped longitudinal section and is made of a transparent material. In the opening of the metal base, an optical system is located vertically below the object under examination, which consists of at least a lens, an optical fiber cable, an eyepiece and a video matrix. Between the lens and the inner surface of the test table, a screening glass and a reflector of a cone-shaped shape are placed in which at least one surface is reflective. The elevator rotary mechanism is made in the form of internal and external rings with worm gears, and the inner ring from the outside has incisions for worm gear. On the outer side is a holder in the form of a groove to which the test table is attached, and the outer ring has a cavity in which the worm gears are located, controlled by a mechanism passing through the opening in the base.
EFFECT: EFFCT: possibility of video monitoring of the results of emissions and the effect of the electromagnetic field on biological objects, in real time, with minimal distortion of the electromagnetic field, without extracting biological objects and ensuring the possibility of continuous exposure of the electromagnetic field to the object of investigation.
5 dwg
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Authors
Dates
2017-08-14—Published
2015-09-28—Filed