摘要:
Flexible and elastic magnetic joint wraps incorporate superstrong magnets with alternating polarities and incorporate bio-ceramic fibers to provide enhanced magnetotherapeutic and far-infrared effects. Magnetotherapeutic joint wraps that are flexible and elastic incorporate superstrong magnets as well as far-infrared emitters in an attachably detachable manner so as to provide magnetotherapy and far-infrared therapy to joints and surrounding tissues. Neoprene or the like may incorporate superstrong magnets such as those based on iron (magnetic ferrite) or neodymium (particularly neodymium-iron-boron (NdFeB)) in order to provide superstrong static magnetism by which magnetotherapy may be effected. Elements that are generally oppositely opposed serve to detachably attach portions of the magnetic wrap to one another so that the magnetic joint wrap may conform to the local shape and form of the area adjacent the joint. Such attachment elements may include VELCRO® hook and loop fasteners as well as buttons, snaps, and the like. The superstrong magnets are constructed such that they may be incorporated in flexible and elastic materials such as neoprene. This provides means by which a magnetic wrap may tautly wrap around the joint and adjacent area when attached by the attachment elements. A soft cover may incorporate or cover bio-ceramic fibers which provide far-infrared treatment for the adjacent tissues and/or joints. Additionally, eye and face masks may incorporate the superstrong magnets and bio-ceramic fibers as used in the deep heating magnetic joint wrap of the present invention to good advantage.
摘要:
A magnetotherapeutic device incorporates bio-ceramic fibers so as to provide simultaneous magnetotherapy and far infra-red wave therapy. Generally encased in clear plastic or the like, the magnetotherapeutic device of the present invention may take the form of a transparent disk having a plastic rim. A stainless cap may provide an attractive top surface into which a logo or symbol may be embossed. It also enhances the magnetic affects on the side opposite the stainless steel cap, the side that is applied to the body. A strong magnet such as one incorporating neodymium may underlie the stainless steel cap to provide magnetotherapy in the present invention. Bio-ceramic fibers emitting the far infra-red wavelengths of 8–14 microns underlie the strong neodymium magnet. A mat of woven bio-ceramic fibers or the like may provide such a structure. In order to provide ventilation and communication between the environment outside of the magnetotherapeutic device of the present invention, perforated or foramenous MYLAR may serve as a bottom cover encasing the stainless steel cap, neodymium magnet, bio-ceramic fibers, and the plastic case. The perforated or foramenous MYLAR may then provide better communication between the thermal radiation of the adjacent body and emittance of far infra-red waves by the bio-ceramic fibers.
摘要:
A magnetotherapeutic device incorporates bio-ceramic fibers so as to provide simultaneous magnetotherapy and far infra-red wave therapy. Generally encased in clear plastic or the like, the magnetotherapeutic device of the present invention may take the form of a transparent disk having a plastic rim. A stainless cap may provide an attractive top surface into which a logo or symbol may be embossed. It also enhances the magnetic affects on the side opposite the stainless steel cap, the side that is applied to the body. A strong magnet such as one incorporating neodymium may underlie the stainless steel cap to provide magnetotherapy in the present invention. Bio-ceramic fibers emitting the far infra-red wavelengths of 8-14 microns underlie the strong neodymium magnet. A mat of woven bio-ceramic fibers or the like may provide such a structure. In order to provide ventilation and communication between the environment outside of the magnetotherapeutic device of the present invention, perforated or foramenous MYLAR® brand PET or similar may serve as a bottom cover encasing the stainless steel cap, neodymium magnet, bio-ceramic fibers, and the plastic case. The perforated or foramenous MYLAR® brand PET or similar cover may then provide better communication between the thermal radiation of the adjacent body and emittance of far infra-red waves by the bio-ceramic fibers.
摘要:
A flexible magnetic pad is provided with constantly alternating polarity zones which therapeutically effect blood vessels to increase blood flow, irrespective of the orientation of any blood vessel with respect to the pad, the polarity zones being arranged in an alternating pattern throughout the pad.
摘要:
A magnetic insole provides magnetotherapy for the soles of a wearer's feet. A laminated insole in the general shape of a foot is inserted into a shoe to provide magnetotherapy to the wearer's foot adjacent the sole. Collateral therapeutic effects may be effected as such magnetotherapy may affect the nerve endings in the foot and collateral, corresponding, or related tissue structures in the body. A leather upper is used to bear the abrasion between the foot and the magnetic insole. A flexible magnetic core provides alternating magnetic fields in a regular pattern thereby to provide magnetotherapy to the foot. A cushioning base acts as an underpad for the magnetic insole in order to provide greater comfort and cushioning for the user's foot. The flexible magnetic core is constructed by mixing strontium ferrite, barium ferrite, or other strongly ferromagnetic material and with an elastic binder such as neoprene. Additional minor constituents are also added to aid processing. The ferromagnetic material-elastic mixture is mixed together on a two (2) roll rubber mill as is known in the art, pigged, calendared, magnetized, and cut to size. The resulting sheet may then be laminated on its top side by leather upper material and on the bottom side by cushioning material so as to provide a three (3) layer laminated sheet from which magnetic insoles of the present invention may be cut and perforated.
摘要:
A flexible magnetic pad is provided with constantly alternating polarity zones which therapeutically effect blood vessels to increase blood flow, irrespective of the orientation of any blood vessel with respect to the pad, the polarity zones being arranged in an alternating pattern throughout the pad.
摘要:
A magneto-cymatic therapeutic device providing simultaneously magnetic therapy with cymatic therapy to an anatomical area to be treated, delivering the cymatic frequency via mechanical and/or magnetic interaction. A transducer coupled to a magnet converts audio frequency electrical signals into mechanical vibrations, within an applicator-wand of a portable magneto-cymatic therapeutic device. To treat an anatomical area the applicator-wand may be rotated, or moved through a particular pattern. The application surface of the applicator-wand may be contoured to allow maximum contact with the anatomical body part to be treated. The magnetic field extending out from the application surface also interacts with tissue in the body and also delivers cymatic vibrations without physical contact between the device and the body.
摘要:
A flexible magnetic pad is provided with constantly alternating polarity zones which therapeutically affect blood vessels to increase blood flow, irrespective of the orientation of any blood vessel with respect to the pad, the polarity zones being arranged in an alternating pattern throughout the pad.
摘要:
A flexible magnetic pad is provided with constantly alternating polarity zones which therapeutically effect blood vessels to increase blood flow, irrespective of the orientation of any blood vessel with respect to the pad, the polarity zones being arranged in an alternating pattern throughout the pad.