Positive pressure flow skin abrasion system and method for dermal rejuvenation
The present invention is a dermal-exfoliation system that uses positive pressure to deliver salt and/or bio-inert crystalline particle abrasives or saline solution to the stratum corneum, combined with a minimal amount of negative pressure to close the loop when in contact with the skin to evacuate spent particles and dislodged skin cells and debris. An applicator handpiece is optimized for the use of the combined pressure system discussed herein for the removal of epidermal layers.
1. A positive pressure skin exfoliating system, comprising:
a single air pressure source providing positive pressure;
a dehumidifier, dehumidifying both air from the air pressure source and air in a chamber comprising a skin exfoliating abrasive container;
a plurality of dehumidifying stages coupled to the dehumidifier;
at least one of a controller and a regulator for controlling a pressure value of pressurized air from the air pressure source;
an input tube with the pressurized and dehumidified air, coupled to the skin exfoliating abrasive container;
an output tube for collecting waste from a skin treatment site;
a positive pressure-to-vacuum generating eductor coupled to the output tube; and
an exfoliating handpiece with an angle of impingement with respect to a subject tissue comprising:
a hose-end on one side and a skin treatment end on the other side, the hose-end being coupled to the input tube and the output tube;
a deflection chamber at the skin treatment end;
a skin interface at a bottom of the deflection chamber; and
input and output channels traversing an interior of the handpiece from the hose-end to the interior deflection chamber end, the input channel being under a positive pressure from the air pressure source and channeling an abrasive to the skin interface, and the output channel being under a vacuum pressure from the educator and channeling used abrasive and dermal waste from the deflection chamber,
wherein circulation of abrasive is triggered when the handpiece is in closed contact with the skin.
2. The system of claim 1 , wherein the chamber is a sealable chassis.
3. The system of claim 2 , wherein the sealable chassis also houses the pressure source, dehumidifying stages, and skin exfoliating abrasive container.
4. The system of claim 1 , wherein the container contains a skin exfoliating abrasive that is a salt composed from sodium chloride.
5. The system of claim 1 , wherein the container contains a skin exfoliating abrasive that is aluminum oxide or sodium bicarbonate.
6. The system of claim 1 , further comprising a waste container connected to at least one of the vacuum eductor and dehumidifying stages.
7. The system of claim 1 , wherein the angle of impingement of the handpiece is approximately between 20°-50°, or 15°-45°, or 22°-27°, or approximately 25°.
8. The system of claim 1 , further comprising an ultrasonic transducer for treatment of exfoliated skin.
9. The system of claim 8 , wherein the ultrasonic transducer operates at a frequency of at least one of 1 MHz, 2 MHz, 3 MHz, 3.3 MHz, or 5 MHz.
10. The system of claim 1 , further comprising an adjustable lamp that emits light within a range of 400 nm to 2940 nm.
11. The system of claim 1 , wherein the pressurized air is controlled to a maximum of approximately 60 PSI and is provided to ensure the positive pressure is managed and adjusted to a level of between 24-45 PSI.
12. The system of claim 1 , wherein the deflection chamber is approximately 13 mm in longitudinal length, and approximately 7 mm in depth.
13. The system of claim 12 , wherein the deflection chamber is approximately between 13-16 mm wide and approximately 14 mm tall.
14. The system of claim 1 , wherein the angle of impingement of the handpiece is between 22°-27°.
15. The system of claim 1 , wherein the handpiece's deflection chamber is longitudinally longer than it is deep.
16. The system of claim 1 , wherein the input and output channels travel throughout the length of the handpiece.
17. A method for dermal exfoliation for skin rejuvenation, comprising:
a single pressuring air source;
dehumidifying the air; and
directing an abrasive under positive pressure onto tissue through an angled handpiece, having an angle of impingement of approximately between 20°-50°, or 15°-45°, or 22°-25°, or approximately 25° and having:
a hose-end on one side and a skin treatment end on the other side, the hose-end being coupled to an input tube and an output tube;
a deflection chamber at the skin treatment end;
a skin interface at a bottom of the deflection chamber; and
input and output channels traversing an interior of the handpiece from the hose-end to an interior deflection chamber end, the input channel being under a positive pressure from an air pressure source and channeling the abrasive to the skin interface of the handpiece, and the output channel being under an eductor created vacuum pressure and channeling used abrasive and dermal waste from the deflection chamber;
wherein circulation of the abrasive is triggered when the handpiece is in closed contact with the skin, and wherein at least one of a reduction of sun-damage, weather damage and age spots, reduction of irregular pigment patterns in healed scars, smoothing of fine lines, wrinkles, the treatment of acne and acne pitting, improvement of skin strength, elasticity/smoothness, and appearance of stretch marks is obtained.
18. The method for dermal exfoliation of claim 17 , further comprising at applying an ultrasonic signal with a frequency of at least one of 1 MHz, 2 MHz, 3 MHz, 3.3 MHz, or 5 MHz to a treated area.
19. The method for dermal exfoliation of claim 18 , further comprising applying a light within a range of 400 nm to 2940 nm to the treated area.