Medical and/or Cosmetic Radiation Device
A medical and/or cosmetic radiation device has a plurality of LEDs ( 24 a, 24 b ) which emit at different wavelengths.
1 .- 5 . (canceled)
6 . Medical or cosmetic radiation device having a hand-held appliance, comprising:
a handle;
a head coupled to said handle and having an LED array which is positionable close to a patient's skin in an application region, said LED array having a plurality of LED's of different wavelengths, and;
optical elements arranged in front of said LED array in such a way, that the radiation beams of the LED's overlap in the application region and a substantially homogeneous illumination takes place in the application region.
7 . Device according to claim 6 , wherein a plurality of LED's of one wavelength (λ 1 ) are arranged alternately with LED's of another wavelength (λ 2 ) in the device.
8 . Device according to claim 6 , wherein an electronic control, with which the time sequence of the radiation of individual LED is controllable.
9 . Device according to claim 8 , wherein one or more of the following parameters are selectively adjustable with the electronic control: the lengths of the radiation pluses, the intensities of the radiation pulses, the intervals of the radiation pulses, the ratio of the intensities of radiation pulses of different wavelength, and the variation with time of the intensity of the radiation with the individual pulses.
10 . A method of treating the skin of a human patient, comprising:
providing a handheld appliance with an LED array having a plurality of LED's of different individual wavelengths;
positioning the LED array close to the patient's skin; and
directing radiation pulses from the plurality of LED's of different individual wavelengths onto an application region on the patient's skin, wherein the LED energy beams overlap to establish a substantially homogenous illumination on the application region.
11 . The method of claim 10 , further including controlling the time sequence of radiation pulses for individual LED's within the LED array.
12 . The method of claim 10 , further including controlling the lengths of the radiation pulses.
13 . The method of claim 10 , further including controlling the intensities of the radiation pulses.
14 . The method of claim 10 , further including controlling the intervals of the radiation pulses.
15 . The method of claim 10 , further including controlling the ratio of intensities of radiation pulses of different wavelengths and the variation with time of the intensity of the radiation with the individual pulses.