The current invention relates to automated computer-controlled methods to selectively and precisely apply one or more reflectance modifying agent, such as a dye or pigment, to human skin to improve its visual attractiveness and to electrostatic chargers for charging substances such as cosmetic products.
Prior Cosmetic Techniques and Their Disadvantages
Prior art techniques for modifying the appearance of skin include natural tanning, artificial tanning, and the deliberate application of cosmetics. Each of these prior art techniques has limitations.
Typically, the applications of cosmetic substances to skin are largely manual, for example through the use of brushes, application tubes, pencils, pads, and fingers. The application methods make prior art cosmetics imprecise, labor intensive, expensive, and sometimes harmful, when compared to the computerized techniques of the present invention.
Most prior art cosmetic approaches are based on the application of opaque substances. As explained in the cross-referenced application U.S. Ser. No. 11/503,806, there is a need for the precise computer-controlled application of reflectance modifying agents (RMAs), such as transparent dyes, to provide a more effective modification of appearance. In this specification, the terms “reflectance modifying agent” or “RMA” refer to any compound useful for altering the reflectance of another material, and are explained in further detail below. Some examples of RMA are inks, dyes, pigments, bleaching agents, chemically altering agents, and other substances that can alter the reflectance of human skin and other features. The terms “dye” and “transparent dyes” are used for brevity in this specification to represent any RMA.
Moreover, manual applications of cosmetics to areas of human skin containing human hairs are often difficult to accomplish easily, precisely, and effectively. For example, a foundation base may adhere to hairs as well as to the skin, giving the hairs an unattractively stiff or caked-on appearance. For this reason, people may shave their arms or legs before applying cosmetics there, which can be laborious and time consuming.
Electrostatic applicators that are currently used to apply electrostatically charged cosmetic offer significant advantages over manual application techniques. Among these advantages are a constant flow rate, easy and uniform application, and conservation of the cosmetics. For example, U.S. Pat. No. 6,311,903 for Gaw provides “an electrostatic spraying device which is designed to be portable, hand-held, self-contained and battery operated, with a disposable cartridge,” and which can be used to apply cosmetics.
In addition, an electrostatic charger can be used in combination with inkjet printing to apply RMAs more precisely than possible with other prior application techniques. For example, this combination can be used to reduce the application of RMAs to human hairs, as explained below, to improve cosmetic enhancements.
Therefore, there is a need to charge the RMAs electrostatically to further improve their precise application.
These and other needs are addressed by the present invention. The following explanation describes the present invention by way of example and not by way of limitation.
In this patent specification, the phrase “inkjet technology” refers generally to “drop control” technology, whereby each individual droplet of the substance being applied can be controlled by the applicator, as known to those skilled in the art. A particularly useful technique for the present invention is to employ “drop on demand” technology, a subset of drop control technology. In this specification, the phrase “inkjet printer” is used for brevity represent any form of inkjet technology.
It is an aspect of the present invention to charge RMAs electrostatically, so that tiny droplets of the RMAs with essentially negative charges are formed. Because human hairs act as insulators that does not typically conduct or have positive charges, the negatively charged droplets are not typically attracted to the hairs. Moreover, if the hairs do come into contact with the negatively charged droplets, the hairs may themselves then become negatively charges, so that they tend to repel further contact with the negatively charged droplets.
This and other aspects, features, and advantages are achieved according to the system and method of the present invention. In accordance with the present invention, a computer-controlled system determines attributes of a frexel, an area of human skin, and applies an electrostatically charged reflectance modifying agent (RMA) at the pixel level, to make the skin appear more attractive. The system scans the frexel, identifies unattractive attributes, charges the RMA with an electrostatic charger, and applies the RMA, typically with an inkjet printer. The identified attributes relate to reflectance and may refer to features such as irregular-looking light and dark spots, age-spots, scars, and bruises. Identified attributes may also relate to the surface topology of the skin, for more precisely enhancing surface irregularities. Feature mapping may be used, for example to make cheeks appear pinker and cheekbones more prominent. The charged RMA can be applied in agreement with identified patterns, such as adding red to a red frexel, or in opposition, such as adding green or blue to a red frexel, according to idealized models of attractiveness.
The following embodiment of the present invention is described by way of example only, with reference to the accompanying drawings, in which:
Applying reflectance modifying agents electrostatically to improve the visual attractiveness of human skin
The present invention comprises the application or one or more electrostatically charged reflectance modifying agents (RMAs) through a computer-controlled system and method that scans an area of human skin, identifies unattractive attributes, and applies the RMA, typically with an inkjet printer, to improve the appearance of that area of skin.
U.S. application Ser. No. 11/503,806 filed Aug. 14, 2006 by the present applicants claims the computer-controlled system and method that scans an area of human skin, identifies unattractive attributes, and applies the RMA, typically with an inkjet printer to improve the appearance of that area of skin.
The Application of Electrostatically Charged RMAs
A hair 304 on the area of skin 302 typically will act as an insulator that does not conduct or have positive charge. Therefore, the hair 304 will not attract the negatively charged droplet 702 and pull it in another direction 706 so that it will adhere to the hair 304.
Moreover, if the hair 304 does come into contact with the negatively charged droplet 702, the hair 304 may then become negatively charged, so that it tends to repel subsequent contact with other droplets.
The benefit of this process is that it increases the precision of the inkjet application of RMAs 264 to desired locations, such as an age spot 708, on an area of skin 302. The RMAs 264 can be inkjet printed through hair without adhering to the hair or being pulled toward them.
Operating Environment for Cosmetics
The computing environment 200 further comprises
Loosely Coupled Systems
A features library 274 may be used to store the characteristics of human features, for example the eye, nose, and mouth, for use by pattern recognition. The features library 274 may also be used to store idealized pattern for human features that may be used to make actual features appear more attractive. For example, an idealized pattern for human lips may be used to make actual lips appear fuller as well as redder. For the application map 232 shown in
In addition, registration means 270, mechanical or electronic, are used for tracking the location of the scanner 220 and printer 241 relative to the area of skin 30
Combined Scanner and Printer Connected with Computer
The configuration and operation of electrostatic chargers is known to those skilled in the art. For example, U.S. Pat. No. 6,311,903, cited above, explains in detail a useful embodiment of an electrostatic charger.
The general method of applying electrostatically charged substances, such as traditional cosmetics, is known to those skilled in the art, as described above with reference to U.S. Pat. No. 6,311,903 for Gaw.
In addition, the application device 246 further comprises an electrostatic charger 700. The electrostatic charger 700 comprises
In an embodiment, the electrostatic charger 700 charges not only the RMAs 264, but also one or more printer heads 244, shown in
In an embodiment, experiments and computer calculations may be used to determine optimum configurations for locating multiple nozzles on the application device 246 to apply the electrostatically charged RMAs 264. This can be used to reduce the effects of multiple negatively charged droplets repelling each other and thus distorting their trajectories. For example, each nozzle may be fired individually at different distances from a target, and the results can be tracked. The nozzles can then be fired simultaneously at those different distances, and these results can be tracked. Computer calculations can then compare the tracked results to determine the optimum configuration for the locations of the nozzles.
In addition, this process may be usefully applied to other substances besides RMAs, for example to paints for precision painting and to medical substances for their more precise application.
This patent application is related to U.S. Provisional Patent Application No. 60/889,295 filed Feb. 12, 2007 by the present inventors for “SYSTEM AND METHOD FOR APPLYING A REFLECTANCE MODIFYING AGENT ELECTROSTATICALLY TO IMPROVE THE VISUAL ATTRACTIVENESS OF HUMAN SKIN” and claims the filing date of that Provisional application. This patent application incorporates by reference the specification, drawings, and claims of U.S. patent application Ser. No. 11/503,806 filed Aug. 14, 2006 by the present inventors for “SYSTEM AND METHOD FOR APPLYING A REFLECTANCE MODIFYING AGENT TO IMPROVE THE VISUAL ATTRACTIVENESS OF HUMAN SKIN.”
| Number | Date | Country | |
|---|---|---|---|
| 60889295 | Feb 2007 | US |