`
`CLAIMS
`
`1.
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`A method for enhancing a visual appearance of a patient
`
`including:
`
`5
`
`structure,
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`delivering at least two different treatments to a target biological
`
`wherein at least one treatment is optical treatment, and
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`wherein at least one treatment is magnetic treatment, and
`
`wherein a magnetic flux density is at least 0.1 T.
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`2.
`
`The method of claim 1, wherein magnetic treatment is produced
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`1O
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`by time varying magnetic field.
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`3.
`
`The method of claim 1, wherein a plurality of magnetic field
`
`generating devices is used.
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`4.
`
`The method of claim 1, wherein the peak to peak magnetic flux
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`density is at least 0.5 T.
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`15
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`5.
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`The method of claim 4, wherein the peak to peak magnetic flux
`
`density is at least 1 T.
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`6.
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`The method of claim 5, wherein the peak to peak magnetic flux
`
`density is at least 1.5 T.
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`7.
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`The method of claim 1, wherein at least partial muscle contraction
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`20
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`occurs.
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`8.
`
`The method of claim 1, wherein a plurality of optical waves
`
`generating device is used.
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`Attorney Dkt. N0. 066964-8034.USOO
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`9.
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`The method of claim 1, wherein a total power flux density is at
`
`least1 W/cmz.
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`10.
`
`The method of claim 9, wherein the total power flux density is at
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`least 5 W/cmz.
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`11.
`
`The method of claim 10, wherein the total power flux density is at
`
`least 10 W/cmz.
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`12.
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`The method of claim 11, wherein the total power flux density is at
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`least 25 W/cmz.
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`13.
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`The method of claim 1, wherein the total power flux density is at
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`1O
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`least 0.1 W/cmz.
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`14.
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`The method of claim 1, wherein a wavelength of optical waves is
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`in the range of 635 to 680 nm, or in the range of 780 to 980 nm, or in the range
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`of 1050 to 1100 nm.
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`15.
`
`The method of claim 13, wherein the wavelength is 658 nm, 800
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`15
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`nm, 940 nm or 1060 nm.
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`16.
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`The method of claim 1, wherein an application of optical and/or
`
`magnetic treatment reduces number and/or volume of adipose cells.
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`17.
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`The method of claim 16, wherein the method further improves
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`circulation of blood and/or lymph and/or improves local metabolism.
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`20
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`18.
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`The method of claim 16, wherein a repetition rate of the magnetic
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`treatment is at least 0.1 Hz.
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`19.
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`The method of claim 18, wherein the repetition rate of
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`the
`
`magnetic treatment is at least 1 Hz.
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`Attorney Dkt. N0. 066964-8034.USOO
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`20.
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`The method of claim 1, wherein the application of optical and/or
`
`magnetic treatment is used for treating incontinence.
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`21.
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`The method of claim 20, wherein a repetition rate of the magnetic
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`treatment is up to 50 Hz.
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`22.
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`The method of claim 1, wherein the application of optical and/or
`
`magnetic treatment promotes neogenesis and/or remodeling of collagen and/or
`
`elastin fibers.
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`23.
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`The method of claim 1, wherein the application of optical and/or
`
`magnetic treatment causes analgesic effect.
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`1O
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`24.
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`The method of claim 23, wherein a repetition rate of the magnetic
`
`treatment is at least 100 Hz.
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`25.
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`The method of claim 24, wherein the repetition rate of
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`the
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`magnetic treatment is at least 140 Hz.
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`26.
`
`The method of claim 1, wherein the application of optical and/or
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`15
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`magnetic treatment provides myorelaxation effect.
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`27.
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`The method of claim 26, wherein a repetition rate of the magnetic
`
`treatment is at least 150 Hz.
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`28.
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`The method of claim 27, wherein the repetition rate of magnetic
`
`treatment is at least 180 Hz.
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`20
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`29.
`
`A method for enhancing a visual appearance of a patient including
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`treating a target structure of the patient by optical waves and magnetic field;
`
`wherein the optical waves are in the range from 190 to 13000 nm;
`
`and
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`Attorney Dkt. N0. 066964-8034.USOO
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`wherein the magnetic field is time varying with magnetic flux
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`density at least 0.1 T and repetition rate at least 0.1 Hz;
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`heating the target structure to temperature in the range of 37.5 to
`
`60 °C.
`
`30.
`
`A method for enhancing a visual appearance of a patient including
`
`treating a target structure of the patient by optical waves and magnetic field;
`
`wherein power flux density of the optical waves is in the range
`
`from 0.1 W/cm2 to 100 W/cm2; and
`
`wherein the magnetic field is time varying with magnetic flux
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`1O
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`density at least 0.1 T and repetition rate at least 0.1 Hz; and
`
`heating the target structure to temperature in the range of 37.5 to
`
`60 °C.
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