The present invention provides a devices and methods for contactless delivering pulsed electric fields in a manner that controls or promotes skin tissue repair, enhancement, and disinfection. In particular, devices and methods provided may use non-thermal pulsed electric fields delivered periodically or intermittently to control a skin cosmetic treatment.
The present disclosure relates generally to devices and methods for contactless delivering pulsed electric fields to skin tissue and, in particular, to devices and methods for controlling and cosmetic treating skin.
An alternative approach to skin cosmetic treatment is the implementation of electrical stimulation. The rationale for using electrical stimulation is based on the fact that the human body has endogenous bioelectric systems that promote wound and skin healing. However, when the body's endogenous bioelectric system is inadequate, external electrical stimulation can be used to supplement the natural bioelectric currents or electric fields for enabling or enhancing wound healing and skin cosmetic treatment.
There are several disadvantages associated with prior art methods of electrical stimulation for wound healing and skin cosmetic treatment. One disadvantage is that many prior art methods require placement of one or perhaps two electrodes directly on the skin tissue. Such placement increases the probability of bacterial contamination, thereby complicating wound healing and skin cosmetic treatment. Other prior art devices and methods are inconvenient or difficult to employ as a result of their bulk or complexity. For example, several prior art devices require the implementation of several electrodes, whereby one electrode is applied directly over the skin area or a pulsed electromagnetic field treatment coil is placed directly over the skin area for inducing pulsed electric fields to the skin. This makes extended treatment periods uncomfortable for the patient, as well as prohibiting free travel of the patient.
Thus, it is desirable to provide an improved electrical stimulation method for promoting wound healing and skin cosmetic treatment. The method should treat the wound area without actual contact with the wound to reduce the probability of bacterial infection. Further, the method should be simple and inexpensive while effectively treating wounds and non-wounded skin tissue.
The limitations of the prior art are overcome in methods of the present invention by providing devices and methods for contactless delivering pulsed electric fields in a manner that controls or promotes skin tissue repair, enhancement, and disinfection. In particular, devices and methods provided may use non-thermal pulsed electric fields delivered periodically or intermittently to control a skin cosmetic treatment. A first method of the present invention comprises a specific structure for a jetting-nozzles configuration to deliver a series of pulsed ion stream and electrical gradient to the skin tissue. The specific structure comprises a physical configuration mounted in fixed relation to the body of the device and a ring configuration is in the form of an annular cable mounted on the body of device, and usually in substantially concentric relation with the jetting-nozzles unit. The ring configuration and the jetting-nozzles unit may however be adjustable with respect to one another in the direction of jetting. Where the jetting-nozzles and/or the ring configuration is adjustable, preferably the limits of adjustment are such that the jetting-nozzles configuration, over substantially its full range of adjustment, has its forward extremity located forwardly of the jetting-nozzles. The arrangement is conveniently such that, in all positions of relative adjustment, jetting is focused when the forward extremity of the jetting-nozzles configuration is within a certain distance from an earthed skin tissue target. In addition, the ring configuration surrounds the jetting-nozzles and yields the necessary electric field around the jetting-nozzles during the application of pulsed electric fields.
A second method of the present invention comprises a specific structure or design for a grounding configuration to assist in generating electrical gradient to the skin tissue. The specific structure comprises a physical configuration mounted in fixed relation to the jetting-nozzles unit, a grounding ring configuration is in the form of an annular cable mounted on the body of device, and an external grounding wire configuration is directly connected with the skin tissue. The arrangement is conveniently such that, pulsed ion stream jetting is focused when the forward extremity of the jetting-nozzles configuration is within a certain distance from a grounding skin tissue target. In addition, the grounding ring configuration surrounds the jetting-nozzles and yields the necessary electrical gradient between the jetting-nozzles and a skin tissue during the application of pulsed electric fields.
A third method of the present invention comprises a reservoirs method. Each reservoir further comprises a high voltage charged administrable material storage region. The material storage region comprises a material storage configuration. In general where the stored material to be jetted is in the form of a liquid, a gas or a powder, the high voltage input will have the effect of causing the propulsion of one or more filaments or ligaments of stored material from the jetting-nozzle, which ligament(s) break up into positive or negative charged droplets for transporting ion stream to the targeted skin tissue and also generating an electrical gradient with the targeted grounding skin tissue.
A fourth method of the present invention comprises a hand-held pulsed electric fields device which having at least one reservoir, at least one jetting-nozzles configuration, a ring configuration, a grounding ring configuration, a high voltage generator, a power source, an external grounding wire configuration, a controller, a grounding circuit design, a trigger. The special arranged grounding configuration is directly connected the skin tissue with an external grounding wire configuration through the grounding circuit design. Through the special arranged grounding configuration the targeted human skin will be earthed properly.
In yet another variant of the fourth method of the present invention includes an jetting-nozzles assembly configured to engage a skin tissue of a subject to contactless deliver a series of electric field pulses to the skin tissue and a user input configured to receive an operational instruction for the series of electric field pulses, the operational instruction defining at least one of a pulse duration, a pulse frequency, a pulse number, and a pulse amplitude. The system also includes at least one processor configured to access the operational instruction received by the user input and using the operational instruction, create an electric field profile to be generated by the jetting-nozzles assembly about the skin tissue of the subject to control a skin cosmetic treatment.
The above and other objects and advantages of this invention will be apparent upon consideration of the following detailed description, taken in conjunction with the accompanying drawings in which like characters refer to like elements throughout and in which:
For the purpose of promoting an understanding of the principles of the invention, reference will now be made to the embodiments illustrated in the drawings and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of the invention is thereby intended, such alterations and further modifications in the illustrated device and such further applications of the principles of the invention as illustrated therein being contemplated as would normally occur to one skilled in the art to which the invention relates.
A hand-held pulsed electric fields device 50 made in accordance with the first and second preferred embodiments of the present invention is depicted in front and side views in
The grounding ring configuration 20 mounted in fixed relation to the jetting-nozzles unit 10 in the form of an annular cable mounted on the body of device 50, and an external grounding wire configuration 21 is directly connected with the skin tissue. The grounding ring configuration 20 surrounds the jetting-nozzles 10 and yields the necessary electrical gradient between the jetting-nozzles 10 and skin tissue during the application of pulsed electric fields.
A reservoir made in accordance with the third preferred embodiments of the present invention is depicted in side and perspective views in
A hand-held pulsed electric fields device 50 made in accordance with the fourth preferred embodiments of the present invention is depicted in rear and perspective views in
A hand-held pulsed electric fields device 50 made in accordance with the fourth preferred embodiments of the present invention is depicted in a plan view in