Laser Device with Gem Stone for Holistic Therapy

20200330790 ยท 2020-10-22

    Inventors

    Cpc classification

    International classification

    Abstract

    A laser device with gem stone for holistic therapy is disclosed. The device being comprised of three main parts: a first part being a pen-type, handheld, low-level laser, a second part being a gem stone positioned to an end of said laser; and a terminal sleeve portion fixedly-connecting the aforementioned gem stone to the laser. Unlike existing holistic therapy laser devices, the current disclosure allows the gem stone to refract the laser into several beams thereby treating multiple points on the body simultaneously. Another embodiment of the invention is comprised of a gem stone cap configured to be retrofitted onto existing, conventional laser pointers and being removable to allow a user to install a variety of gem stones therein.

    Claims

    1. A laser apparatus for laser acupuncture, and chakra therapy, comprising (a) a diode laser; (b) a plurality of batteries; (c) a power switch; (d) a pocket clip; (e) a status LED; (f) a head; and (g) a gem stone.

    2. The diode laser of claim 1 producing a laser beam at a selected wavelength that has a desired penetration depth into a patient's body part.

    3. The head of claim 1 configured to hold a gem stone there in.

    4. The head of claim 1 configured to allow a user to exchange gem stones there in.

    5. The head of claim 1 having an embodiment that is retrofitted onto existing laser pointers.

    6. The diode laser in claim 1 wherein said selected wavelength is around 635 nm or 830 nm.

    7. The diode laser in claim 1 wherein said output power of said diode laser modules is approximately 5 mW.

    8. A method of activating acupuncture and chakra points. The method comprising: (a) delivering light energy;

    9. The light energy in claim 7 further including a splitting up of the light into multiple beams.

    Description

    BRIEF DESCRIPTION OF THE DRAWINGS

    [0010] FIG. 1 is a perspective view or the device.

    [0011] FIG. 2 is a section new of the device.

    [0012] FIG. 3 is a side view of the device.

    [0013] FIG. 4 is a perspective view of a cap retrofit embodiment of the invention.

    DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

    [0014] FIG. 1 shows a perspective view an embodiment of the invention t being comprised of a hollow, barrel 4 and pocket dip 3 on an end both parts being made of a rigid material including but not limited to metal, plastic and the like. One distal end of the device having a selectively removable, threaded end cap 2. Another distal end of the device having head 7 made of a precious metal such as, but not limited to silver, bronze etc. and disposed to receive a gem stone 9 therein. Said gem stone 9 being comprised of a gem such as but not limited to sapphire, emerald etc. and being selectively affixed to the head 7. A power button 6 with LED status light 5 being disposed proximally on said barrel 4.

    [0015] FIG. 2 allowing a section view of an embodiment of invention 1 with at least two AA-sized batteries 10 therein being selectively held in place by means of end cap 2 and insulation plate 11 there between. Other haltenes may be utilized such as but not limited to rechargeable, nickel hydrido, lithium ion and the like and providing electrical power to laser module 13. Use power output laser power from the diode laser module 13 should be about, but not limited to 5 mW, while a range of 1 mW to 100 mW may be used. The emitting wavelength of the diode laser module 13 is selected to have a desirable penetration depth for effectively stimulating an acupuncture point. For example, the laser wavelength may be at or around 635 nm to match the HeNe laser or near 830 nm to increase the laser penetration depth.

    [0016] Any wavelength ranged from 500 nm to 1500 nm may be chosen for a variety of laser acupuncture treatments. The figure showing laser light moving through lens barrel 15 and laser hole 15 and entering gem stone 9. Said gem stone 9 refracting and splitting laser light into a plurality of beams 16 therefrom.

    [0017] FIG. 3 showing a side view of an embodiment of the invention 1 with the aforementioned head 7 having a plurality of slots 8 being arranged in a Fibonacci, proportional pattern thereon.

    [0018] FIG. 4 showing a perspective view of a cap retrofit embodiment of the invention. This other embodiment being comprised of head 17 also made of a rigid material including but not limited to 3D printed plastics (nylon, PLA, SLA, polycarbonate etc.) silver, bronze and the like and breaded end cap 17 configured to receive a gem stone 9 there between. Said end cap 17 having a knurling relief on an exterior portion with an annular space disposed proximally. The inner portion of said annular space being configured to allow gem stone 9 to be mounted similar to that of conventional jewelry. Said end cap 17 being selectively removed from the head 17 to allow the replacement of various gem stones therein. The cap retrofit embodiment being configured to receive conventional laser pointing devices therein. Finally, the aforementioned head 7 having a plurality of slots 8 being arranged in a Fibonacci, proportional pattern thereon.