WO2024103546A1 - 基于高能量宽波段的光子皮肤处理方法及其相关设备 - Google Patents

基于高能量宽波段的光子皮肤处理方法及其相关设备 Download PDF

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Publication number
WO2024103546A1
WO2024103546A1 PCT/CN2023/075568 CN2023075568W WO2024103546A1 WO 2024103546 A1 WO2024103546 A1 WO 2024103546A1 CN 2023075568 W CN2023075568 W CN 2023075568W WO 2024103546 A1 WO2024103546 A1 WO 2024103546A1
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photons
photon
skin
target
energy
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PCT/CN2023/075568
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English (en)
French (fr)
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柯博胜
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柯博胜
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/0613Apparatus adapted for a specific treatment
    • A61N5/0616Skin treatment other than tanning
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used

Definitions

  • the present application relates to the field of medical aesthetics technology, and in particular to a high-energy, wide-band photon skin treatment method and related equipment.
  • radio frequency beauty technology mainly uses radio frequency waves to penetrate the melanocytes at the base of the epidermis, heat the collagen fibers in the dermis to shrink the collagen fibers, tighten the loose skin wrinkles, promote collagen proliferation, and achieve wrinkle removal and skin tightening.
  • microcurrent technology mainly stimulates muscles through microcurrents to promote collagen production and achieve skin firming.
  • the present invention provides the following solutions.
  • the present invention provides a photon skin treatment method based on high energy and wide band, which is applied to a photon irradiator.
  • the photon skin treatment method comprises the following steps:
  • Photons of different energies are emitted from the photon irradiator to irradiate a target on the skin;
  • Photons of different wavelength bands are emitted from the photon irradiator to irradiate the target on the skin;
  • Photons of specific energy are selected from the photons of different energies, and photons of specific wavelength bands are selected from the photons of different wavelength bands, and the target object is irradiated by the photon irradiator.
  • the energy range of the photons of different energies includes 10J to 30J; the wavelength range of the photons of different wavelength bands includes 700nm to 400nm.
  • the wavelength ranges of the photons of different wavelength bands include a first wavelength range, a second wavelength range and a third wavelength range; the first wavelength range is between 800nm and 814nm; the second wavelength range is between 600nm and 550nm; and the third wavelength range is between 520nm and 400nm.
  • the photon skin treatment method further comprises the following steps:
  • Photons of different frequencies are configured to be emitted from the photon irradiator to irradiate a target on the skin;
  • Photons of a specific frequency are selected from the photons of different frequencies, and the target is irradiated by the photon irradiator.
  • the frequency range of the photons of different frequencies includes 1s to 5s.
  • the photon skin treatment method further comprises the following steps:
  • Photons with different pulse widths are emitted from the photon irradiator to irradiate the target on the skin;
  • Photons with a specific pulse width are selected from the photons with different pulse widths, and the target is irradiated by the photon irradiator.
  • the pulse width range of the photons with different pulse widths is a wide pulse width range, and the wide pulse width range includes 50 ms to 600 ms, or the wide pulse width range is above 600 ms.
  • the photon skin treatment method further comprises the following steps:
  • the photon irradiator is controlled to emit photons in the form of light bands to perform sliding cycle irradiation on the target object.
  • the present invention provides a high-energy wide-band photon skin treatment device
  • the high-energy wide-band photon skin treatment device corresponds to the steps of running any of the above-mentioned high-energy wide-band photon skin treatment methods
  • the high-energy wide-band photon skin treatment device includes:
  • An energy configuration module used for configuring photons of different energies to be emitted from the photon irradiator to irradiate a target on the skin;
  • a band configuration module used for configuring photons of different bands to be emitted from the photon irradiator to irradiate a target on the skin;
  • the irradiation selection module is used to select photons of specific energy from the photons of different energies, and select photons of specific wavelength bands from the photons of different wavelength bands, and irradiate the target object through the photon irradiator.
  • the present invention provides a photon irradiation apparatus, the photon irradiation apparatus comprising the above-mentioned high-energy wide-band photon skin treatment device.
  • the photon irradiation apparatus comprises a memory and a processor, the memory stores computer-readable instructions, and the processor implements the steps of any one of the above-mentioned high-energy wide-band photon skin treatment methods when executing the computer-readable instructions.
  • the present invention also provides a computer-readable storage medium, on which computer-readable instructions are stored.
  • computer-readable instructions When the computer-readable instructions are executed by a processor, the steps of any of the above-mentioned high-energy wide-band photon skin treatment methods are implemented.
  • the present invention has the following beneficial effects:
  • the present invention proposes a high-energy wide-band photon skin treatment method and related equipment, which configure photons of different energies to be emitted from a photon irradiator to irradiate a target on the skin, configure photons of different bands to be emitted from a photon irradiator to irradiate a target on the skin, select photons of specific energy from photons of different energies, and select photons of specific bands from photons of different bands, and irradiate the target through the photon irradiator, so that photons of different energies and different bands can be selected in the photon irradiator to irradiate the skin, thereby achieving diversified selection of skin treatment means, improving skin treatment effects, being non-traumatic to the skin, instantly dehydrating local skin cells, making the skin instantly firm and with clear contours, promoting collagen regeneration, and achieving the technical effects of delicate and firm skin.
  • FIG1 is a schematic flow chart of a method for treating skin with high-energy, wide-band photons
  • FIG2 is a schematic diagram of the structure of a high-energy, wide-band photon skin treatment device disposed on a photon irradiator;
  • FIG3 is a second structural schematic diagram of a high-energy, wide-band photon skin treatment device disposed on a photon irradiator;
  • FIG4 is a third structural schematic diagram of a high-energy, wide-band photon skin treatment device disposed on a photon irradiator;
  • FIG. 5 is a schematic diagram of the structure of a photon irradiator.
  • this embodiment provides a photon skin treatment method based on high energy and wide band, which is applied to a photon irradiator.
  • the photon skin treatment method includes the following steps:
  • the skin target is irradiated by a photon irradiator, so that photons of different energies and different wavelengths can be selected in the photon irradiator to irradiate the skin, realizing diversified selection of skin treatment means, improving skin treatment effect, non-traumatic to the skin, allowing local skin cells to be dehydrated instantly, making the skin instantly firm, with clear contours, promoting collagen regeneration, and achieving the technical effect of delicate and firm skin.
  • high energy can refer to the energy of each photon being 10J and above.
  • Wide band refers to the band range of photons including between 700nm and 400nm.
  • the wavelength of the photon is selected to be 695nm for better effect, and a wavelength near 695nm can also be selected, for example, 691nm, 692nm, 693nm, 694nm, 696nm, 697nm, 698nm, 699nm and other wavelengths.
  • the energy range of photons of different energies includes 10J to 30J; the wavelength range of photons of different wavelengths includes 700nm to 400nm.
  • the wavelength range of photons of different wavelengths includes a first wavelength range, a second wavelength range, and a third wavelength range; the first wavelength range is between 800nm and 814nm; the second wavelength range is between 600nm and 550nm; the third wavelength range is between 520nm and 400nm.
  • the first wavelength range is a more optimal wavelength range.
  • the energy configuration module, the wavelength configuration module, and the irradiation selection module can be specifically implemented by a circuit module or a program module.
  • a target that only needs to be irradiated with photons of a single energy and a single wavelength photons of different energies and photons of different wavelengths are selected, and the skin target is irradiated by a photon irradiator.
  • the target that only needs to be irradiated with photons of a single energy and a single wavelength is irradiated, so as to achieve the technical effect of delicate and firm skin.
  • 8J photons and 515nm wavelength photons can be preferred, and the superficial spots on the skin can be irradiated by a photon irradiator to achieve a better technical effect of eliminating melanin on the superficial spots.
  • photons of different energies and photons of a single energy and photons of multiple wavelengths in different wavelength bands are selected, and the skin target is irradiated by a photon irradiator, so as to achieve the technical effect of delicate and firm skin.
  • photons with a wavelength of 695nm can be preferred, and the skin target is irradiated by a photon irradiator, and then 590nm and 560nm wavelengths are selected to superimpose and irradiate the skin target, so that the 590nm wavelength can act on hemoglobin to promote collagen regeneration, and the 560nm wavelength can remove yellowness and brighten, shrink pores, and achieve the technical effect of instant skin firmness and clear contours.
  • photons with a wavelength of 695nm are used for hair removal in the prior art, and this embodiment is used to irradiate the skin, which can achieve the technical effect of firm skin and clear contours.
  • photons of different energies and photons of multiple energies and photons of a single wavelength are selected from photons of different energies and photons of different wavelength bands, and the skin target is irradiated by a photon irradiator, thereby achieving the technical effect of tender and firm skin.
  • photons of multiple energies of more than 20J, photons of a wavelength of 590nm, and photons with a pulse width of 25ms can be preferably selected, and the red blood streaks of the skin are irradiated by a photon irradiator, thereby achieving the technical effect of eliminating blood streaks.
  • photons of different energies and photons of multiple energies and photons of multiple wavelengths in different wavelength bands are selected, and the skin is irradiated by a photon irradiator, thereby achieving a technical effect of delicate and firm skin.
  • the high-energy broadband photon skin treatment method further comprises the following steps:
  • Photons of different frequencies are configured to be emitted from the photon irradiator to irradiate a target on the skin;
  • Photons of a specific frequency are selected from the photons of different frequencies, and the target is irradiated by the photon irradiator.
  • the frequency range of photons of different frequencies may include 1s to 5s.
  • photons of specific frequencies are selected to irradiate the skin target through the photon irradiator, thereby achieving the technical effect of delicate and firm skin.
  • the photons of specific frequencies in the photons of different frequencies may select a single frequency or multiple frequencies, so as to meet the irradiation requirements of different targets.
  • the high-energy broadband photon skin treatment method further comprises the following steps:
  • Photons with different pulse widths are emitted from the photon irradiator to irradiate the target on the skin;
  • Photons with a specific pulse width are selected from the photons with different pulse widths, and the target is irradiated by the photon irradiator.
  • the pulse width range of photons with different pulse widths is a wide pulse width range, and the wide pulse width range includes 50ms to 600ms, or the wide pulse width range is above 600ms.
  • photons with a specific pulse width are selected to irradiate the skin target through a photon irradiator, thereby achieving the technical effect of delicate and firm skin. It should be pointed out that in this embodiment, photons with a specific pulse width can be selected, and photons with a single pulse width can also be selected, so as to meet the irradiation requirements of different targets.
  • the high-energy broadband photon skin treatment method further comprises the following steps:
  • the photon irradiator is controlled to emit photons in the form of light bands to perform sliding cycle irradiation on the target object.
  • the photon irradiator performs sliding and circular irradiation on the skin target in the form of a light band, thereby achieving the technical effect of tender and firm skin. It should be noted that the photon irradiator performs sliding and circular irradiation on the skin in the form of a light band, which can include multiple preferred implementations, as follows.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin, thereby realizing sliding cycle irradiation of the skin and achieving the technical effect of delicate and firm skin.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band. After irradiating the second end of the target on the skin, it immediately irradiates from the second end of the target on the skin to the first end of the target on the skin, thereby realizing continuous sliding cycle irradiation of the skin, and effectively treating targets that require continuous irradiation for better treatment effects.
  • continuous sliding cycle irradiation can allow a gap to be set between the last irradiation and the next irradiation of the same part, so that the last irradiation has time to react, thereby achieving a technical effect that is conducive to the effect of the last irradiation to be displayed.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band using a first set time period, such as 0 seconds to 5 seconds. After irradiating the second end of the target on the skin, it immediately irradiates from the second end of the target on the skin to the first end of the target on the skin.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin after a set time interval, thereby achieving intermittent sliding cycle irradiation of the skin and effectively treating targets that require intermittent irradiation for better treatment effects. Further, the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band using a first set time period, such as 0 seconds to 5 seconds. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin after an interval of 2 seconds, that is, starting from the 7th second.
  • the photon irradiator when it performs sliding and circular irradiation on the skin in the form of a light band, it can irradiate a set number of times within a time period, for example, with 30 seconds as a cycle, and irradiate 4-5 times within the cycle, to achieve the technical effect of delicate and firm skin.
  • the high-energy broadband photon skin treatment method further includes the following steps:
  • the default settings photons of different energies and photons of different wavelengths are automatically selected, and the skin target is irradiated by the photon irradiator.
  • the default setting automatically selects photons of specific energy and wavelength, which is convenient for users to use.
  • default settings can be made for different target targets, and through the human-computer interaction interface or buttons, the user only needs to select the human-computer interaction interface or buttons, and the photon irradiator can automatically select photons of specific energy and wavelength according to the default settings.
  • the high-energy broadband photon skin treatment method further includes the following steps:
  • photons of different energies and photons of different bands with specific energies and bands are selected, and the skin target is irradiated by the photon irradiator.
  • photons of specific energies and bands are selected according to the user selection instruction that meets the user's irradiation needs, so that the treatment needs of multiple targets can be met. For example, when the user cannot find the control or button corresponding to the current target in the default setting, the user can independently select photons of specific energies and bands for free combination.
  • the aforementioned storage medium can be a non-volatile storage medium such as a disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
  • the present invention provides a high-energy wide-band photon skin treatment device, which corresponds to the steps of running any of the above-mentioned high-energy wide-band photon skin treatment methods, and includes:
  • An energy configuration module used for configuring photons of different energies to be emitted from the photon irradiator to irradiate a target on the skin;
  • a band configuration module used for configuring photons of different bands to be emitted from the photon irradiator to irradiate a target on the skin;
  • the irradiation selection module is used to select photons of specific energy from the photons of different energies, and select photons of specific wavelength bands from the photons of different wavelength bands, and irradiate the target object through the photon irradiator.
  • photons of different energies are configured in the photon irradiator through the energy configuration module
  • photons of different bands are configured in the photon irradiator through the band configuration module
  • the irradiation selection module selects photons of specific energy and band in the energy configuration module and the band configuration module
  • the skin is irradiated by the photon irradiator, so that photons of different energies and different bands can be selected in the photon irradiator to irradiate the skin, so as to achieve diversified selection of skin treatment means, improve the skin treatment effect, and cause no trauma to the skin, so that local skin cells are instantly dehydrated, so that the skin is instantly firm and has clear contours, and collagen regeneration is promoted, so as to achieve the technical effect of delicate and firm skin.
  • high energy can refer to the energy of each photon being 10J and above.
  • Wide band refers to the band range of photons including 700nm to 400nm.
  • the wavelength of the photon is selected to be 695nm for better effect, and the wavelength near 695nm can also be selected, for example, 691nm, 692nm, 693nm, 694nm, 696nm, 697nm, 698nm, 699nm and other wavelengths.
  • the energy range of photons of different energies includes 10J to 30J; the wavelength range of photons of different bands includes 700nm to 400nm.
  • the wavelength range of photons of different bands includes a first wavelength range, a second wavelength range and a third wavelength range; the first wavelength range is between 800nm and 814nm; the second wavelength range is between 600nm and 550nm; the third wavelength range is between 520nm and 400nm.
  • the first wavelength range is a more optimal wavelength range.
  • the energy configuration module, the wavelength configuration module and the irradiation selection module can be specifically implemented by a circuit module or a program module.
  • the irradiation selection module to select photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module, and to irradiate the skin through the photon irradiator.
  • the irradiation selection module selects photons of a single energy and photons of a single wavelength in the energy configuration module and the wavelength configuration module, and irradiates the skin through a photon irradiator.
  • irradiation treatment is performed on a target that only needs to be irradiated with photons of a single energy and photons of a single wavelength, thereby achieving a technical effect of delicate and firm skin.
  • the irradiation selection module selects photons of 8J in the energy configuration module and photons of 515nm wavelength in the wavelength configuration module, and irradiates the superficial spots on the skin through a photon irradiator, thereby achieving a technical effect of better eliminating melanin on the superficial spots.
  • the irradiation selection module selects photons of a single energy and photons of multiple wavelengths in the energy configuration module and the band configuration module, and irradiates the skin through the photon irradiator, thereby achieving the technical effect of delicate and firm skin.
  • the irradiation selection module first selects photons of 695nm wavelength in the band configuration module, irradiates the skin through the photon irradiator, and then selects 590nm wavelength and 560nm wavelength to superimpose and irradiate the skin, so that the 590nm wavelength can act on hemoglobin to promote collagen regeneration, and the 560nm wavelength can remove yellowness and brighten, shrink pores, and achieve the technical effect of instant skin firmness and clear contours.
  • photons with a wavelength of 695nm are used for hair removal in the prior art. This embodiment is used to irradiate the skin, which can achieve the technical effect of firm skin and clear contours.
  • the irradiation selection module selects photons of multiple energies and photons of a single wavelength in the energy configuration module and the wavelength configuration module, and irradiates the skin through a photon irradiator, thereby achieving a technical effect of tender and firm skin.
  • the irradiation selection module selects photons of multiple energies above 20J in the energy configuration module, selects photons of 590nm wavelength in the wavelength configuration module, and selects photons of 25ms pulse width in the pulse width configuration module, and irradiates the red blood streaks of the skin through a photon irradiator, thereby achieving a technical effect of eliminating blood streaks.
  • the irradiation selection module selects photons of multiple energies and photons of multiple wavelengths in the energy configuration module and the band configuration module, and irradiates the skin through a photon irradiator, thereby achieving a technical effect of delicate and firm skin.
  • the high-energy wide-band photon skin treatment device also includes a frequency configuration module, which configures photons of different frequencies in the photon irradiator, and the irradiation selection module selects photons of specific frequencies in the frequency configuration module, and irradiates the skin through the photon irradiator.
  • the frequency range of photons of different frequencies can include 1s to 5s.
  • the irradiation selection module selects photons of specific frequencies in the frequency configuration module, and irradiates the skin through the photon irradiator, thereby achieving the technical effect of delicate and firm skin.
  • the irradiation selection module selects photons of specific frequencies in the frequency configuration module, and can select a single frequency or multiple frequencies to meet the irradiation requirements of different targets.
  • the frequency configuration module can be specifically implemented through a circuit module or a program module.
  • the photon skin treatment device based on high energy wide band also includes a pulse width configuration module; the pulse width configuration module configures photons of different pulse widths in the photon irradiator, and the irradiation selection module selects photons of specific pulse widths in the pulse width configuration module, and irradiates the skin through the photon irradiator.
  • the pulse width range of photons of different pulse widths is a wide pulse width range, and the wide pulse width range may include 50ms to 600ms, or above 600ms.
  • the irradiation selection module selects photons of specific pulse widths in the pulse width configuration module, and irradiates the skin through the photon irradiator, thereby achieving the technical effect of delicate and firm skin. It should be pointed out that in this embodiment, the irradiation selection module selects photons of specific pulse widths in the pulse width configuration module, and can select photons of a single pulse width or photons of multiple pulse widths, so as to meet the irradiation requirements of different targets.
  • the pulse width configuration module can be specifically implemented by a circuit module or a program module.
  • the irradiation selection module automatically selects photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module according to the default settings, and irradiates the skin through the photon irradiator.
  • the default settings automatically select photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module, which is convenient for users to use. For example, default settings can be made for different targets, and through the human-computer interaction interface or buttons, the user only needs to select the human-computer interaction interface or buttons, and the irradiation selection module can automatically select photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module according to the default settings.
  • the irradiation selection module selects photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module according to the user selection instruction that meets the user's irradiation needs, and irradiates the skin through the photon irradiator.
  • the irradiation selection module selects photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module according to the user selection instruction that meets the user's irradiation needs, so that the treatment needs of multiple targets can be met.
  • the irradiation selection module can be autonomously triggered to select photons of specific energy and wavelength in the energy configuration module and the wavelength configuration module according to the user selection instruction that meets the user's irradiation needs.
  • the photon irradiator performs sliding cycle irradiation on the skin in the form of a light band.
  • the photon irradiator performs sliding cycle irradiation on the skin in the form of a light band, so as to achieve the technical effect of delicate and firm skin.
  • the sliding cycle irradiation can be a continuous sliding cycle irradiation.
  • the continuous sliding cycle irradiation can set a gap between the last irradiation and the next irradiation on the same part, so that the last irradiation has time to react, and achieve a technical effect that is conducive to the effect of the last irradiation.
  • the photon irradiator performs sliding cycle irradiation on the skin in the form of a light band, which can include a variety of preferred implementations, as follows.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin, thereby realizing sliding cycle irradiation of the skin and achieving the technical effect of delicate and firm skin.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band, and immediately irradiates from the second end of the target on the skin to the first end of the target on the skin after irradiating the second end of the target on the skin, thereby achieving continuous sliding cycle irradiation of the skin, and effectively treating targets that require continuous irradiation for better treatment effects.
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band using a first set time period, such as 0 seconds to 5 seconds, and immediately irradiates from the second end of the target on the skin to the first end of the target on the skin after irradiating the second end of the target on the skin.
  • a first set time period such as 0 seconds to 5 seconds
  • the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin after a set time interval, thereby achieving intermittent sliding cycle irradiation of the skin and effectively treating targets that require intermittent irradiation for better treatment effects. Further, the photon irradiator irradiates from the first end of the target on the skin to the second end of the target on the skin in the form of a light band using a first set time period, such as 0 seconds to 5 seconds. After irradiating the second end of the target on the skin, it irradiates from the second end of the target on the skin to the first end of the target on the skin after an interval of 2 seconds, that is, starting from the 7th second.
  • the photon irradiator when it performs sliding and circular irradiation on the skin in the form of a light band, it can irradiate a set number of times within a time period, for example, with 30 seconds as a cycle, and irradiate 4-5 times within the cycle, to achieve the technical effect of delicate and firm skin.
  • a photon skin treatment device based on a high-energy wide band is arranged in the photon irradiator, and the photon skin treatment device based on a high-energy wide band includes an energy configuration module, a band configuration module and an irradiation selection module.
  • the energy configuration module configures photons of different energies in the photon irradiator
  • the band configuration module configures photons of different bands in the photon irradiator.
  • the irradiation selection module selects photons of specific energies and bands in the energy configuration module and the band configuration module, and the skin is irradiated by the photon irradiator, so that photons of different energies and different bands can be selected in the photon irradiator to irradiate the skin, thereby realizing diversified choices of skin treatment means, improving skin treatment effects, being non-traumatic to the skin, instantly dehydrating local skin cells, making the skin instantly firm and with clear contours, promoting collagen regeneration, and achieving the technical effects of delicate and firm skin.
  • this embodiment also provides a photon irradiator, which includes any of the above-mentioned photon skin treatment devices based on high energy and wide band, and runs any of the above-mentioned photon skin treatment methods based on high energy and wide band.
  • the photon irradiator 8 includes a memory 81, a processor 82, and a network interface 83 that are interconnected through a system bus. It should be noted that the figure only shows a photon irradiator 8 with components 81-83, but it should be understood that it is not required to implement all the components shown, and more or fewer components can be implemented instead.
  • the photon irradiator here is a device that can automatically perform numerical calculations and/or information processing according to pre-set or stored instructions, and its hardware includes but is not limited to microprocessors, application specific integrated circuits (ASIC), programmable gate arrays (FPGA), digital processors (DSP), embedded devices, etc.
  • ASIC application specific integrated circuits
  • FPGA programmable gate arrays
  • DSP digital processors
  • the memory 81 includes at least one type of readable storage medium, and the readable storage medium includes flash memory, hard disk, multimedia card, card-type memory (for example, SD or DX memory, etc.), random access memory (RAM), static random access memory (SRAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), programmable read-only memory (PROM), magnetic memory, disk, optical disk, etc.
  • the memory 81 can be an internal storage unit of the photon irradiator 8, such as a hard disk or memory of the photon irradiator 8.
  • the memory 81 can also be an external storage device of the photon irradiator 8, such as a plug-in hard disk equipped on the photon irradiator 8, a smart memory card (Smart Media Card, SMC), a secure digital (Secure Digital, SD) card, a flash card (Flash Card), etc.
  • the memory 81 can also include both the internal storage unit of the photon irradiator 8 and its external storage device.
  • the memory 81 is generally used to store the operating system and various application software installed on the photon irradiator 8, such as computer-readable instructions based on a high-energy wide-band photon skin treatment method.
  • the memory 81 can also be used to temporarily store various types of data that have been output or are to be output.
  • the processor 82 may be a central processing unit (CPU), a controller, a microcontroller, a microprocessor, or other data processing chips.
  • the processor 82 is generally used to control the overall operation of the photon irradiator 8.
  • the processor 82 is used to run computer-readable instructions or process data stored in the memory 81, such as running computer-readable instructions based on a high-energy broadband photon skin treatment method.
  • the network interface 83 may include a wireless network interface or a wired network interface, and the network interface 83 is generally used to establish a communication connection between the photon irradiator 8 and other electronic devices.
  • This embodiment configures photons of different energies to be emitted from a photon irradiator to irradiate a target on the skin, configures photons of different bands to be emitted from a photon irradiator to irradiate a target on the skin, selects photons of specific energies from photons of different energies, and selects photons of specific bands from photons of different bands, and irradiates the target through the photon irradiator, so that photons of different energies and different bands can be selected in the photon irradiator to irradiate the skin, thereby achieving diversified choices of skin treatment methods, improving skin treatment effects, being non-traumatic to the skin, instantly dehydrating local skin cells, making the skin instantly firm and with clear contours, promoting collagen regeneration, and achieving the technical effects of delicate and firm skin.
  • the technical solution of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as ROM/RAM, a magnetic disk, or an optical disk), and includes a number of instructions for enabling a terminal device (which can be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to execute the methods described in each embodiment of the present application.
  • a storage medium such as ROM/RAM, a magnetic disk, or an optical disk
  • a terminal device which can be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.

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Abstract

本发明属于医疗美容技术领域,提出的基于高能量宽波段的光子皮肤处理方法及其相关设备,通过配置不同能量的光子从光子照射仪发出,用于照射皮肤上的靶目标,配置不同波段的光子从光子照射仪发出,用于照射皮肤上的靶目标,选择不同能量的光子中具体能量的光子,并选择不同波段的光子中具体波段的光子,通过光子照射仪对靶目标进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。

Description

基于高能量宽波段的光子皮肤处理方法及其相关设备 技术领域
本申请涉及医美技术领域,尤其涉及一种基于高能量宽波段的光子皮肤处理方法及其相关设备。
背景技术
人体皮肤由于衰老,病变、激素紊乱以及外部损害等原因,常常会出现色斑、起皱、松弛以及暗黄等缺陷,这对于爱美人士来说是难以忍受的。因此针对皮肤处理的各种医美技术逐渐进入到人们的生活之中。常见的医美技术有射频美容技术、微电流技术、激光照射技术、超声波技术等。例如,射频美容技术主要是利用射频波穿透表皮基底黑色素细胞,加热真皮层胶原纤维使胶原纤维收缩,使松弛的皮肤皱纹被拉紧,促进胶原增生,实现除皱紧肤。又如,微电流技术则主要通过微电流刺激肌肉,促生胶原蛋白,实现皮肤紧致。虽然,以上现有技术对皮肤均具有一定程度的医美效果,但是其处理手段单一,处理效果也通常较不理想。
综上所述,现有医美技术存在皮肤处理手段单一,处理效果不理想等技术问题。
发明内容
为解决上述技术问题,本发明提供如下方案。
一方面,本发明提供一种基于高能量宽波段的光子皮肤处理方法,应用于光子照射仪,所述光子皮肤处理方法包括下述步骤:
配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
进一步地,所述不同能量的光子的能量范围包括10J至30J;所述不同波段的光子的波段范围包括700nm至400nm。
进一步地,所述不同波段的光子的波段范围包括第一波段范围、第二波段范围以及第三波段范围;所述第一波段范围在800nm至814nm之间;所述第二波段范围在600nm至550nm之间;所述第三波段范围在520nm至400nm之间。
进一步地,所述光子皮肤处理方法还包括下述步骤:
配置不同频率的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
选择所述不同频率的光子中具体频率的光子,通过所述光子照射仪对所述靶目标进行照射。
进一步地,所述不同频率的光子的频率范围包括1s至5s。
进一步地,所述光子皮肤处理方法还包括下述步骤:
配置不同脉宽的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
选择所述不同脉宽的光子中具体脉宽的光子,通过所述光子照射仪对所述靶目标进行照射。
进一步地,所述不同脉宽的光子的脉宽范围为宽脉宽范围,所述宽脉宽范围包括50ms至600ms,或,所述宽脉宽范围在600ms以上。
进一步地,所述光子皮肤处理方法还包括下述步骤:
接收用户端发出的对所述靶目标进行照射的照射请求;
控制所述光子照射仪将光子以光带的形式发出,以对所述靶目标进行滑动循环照射。
一方面,本发明提供一种基于高能量宽波段的光子皮肤处理装置,所述基于高能量宽波段的光子皮肤处理装置对应运行上述任一种基于高能量宽波段的光子皮肤处理方法的步骤,所述基于高能量宽波段的光子皮肤处理装置包括:
能量配置模块,用于配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
波段配置模块,用于配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
照射选择模块,用于选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
一方面,本发明提供一种光子照射仪,所述光子照射仪包括上述基于高能量宽波段的光子皮肤处理装置。光子照射仪包括存储器和处理器,所述存储器中存储有计算机可读指令,所述处理器执行所述计算机可读指令时实现上述任一种基于高能量宽波段的光子皮肤处理方法的步骤。
一方面,本发明还提供一种计算机可读存储介质,所述计算机可读存储介质上存储有计算机可读指令,所述计算机可读指令被处理器执行时实现上述任一种基于高能量宽波段的光子皮肤处理方法的步骤。
与现有技术相比,本发明主要有以下有益效果:
本发明提出的基于高能量宽波段的光子皮肤处理方法及其相关设备,通过配置不同能量的光子从光子照射仪发出,用于照射皮肤上的靶目标,配置不同波段的光子从光子照射仪发出,用于照射皮肤上的靶目标,选择不同能量的光子中具体能量的光子,并选择不同波段的光子中具体波段的光子,通过光子照射仪对靶目标进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。
附图说明
为了更清楚地说明本申请中的方案,下面将对本申请实施例描述中所需要使用的附图作一个简单介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。  
图1是基于高能量宽波段的光子皮肤处理方法的一个流程示意图;
图2是基于高能量宽波段的光子皮肤处理装置设置于光子照射仪的结构示意图一;
图3是基于高能量宽波段的光子皮肤处理装置设置于光子照射仪的结构示意图二;
图4是基于高能量宽波段的光子皮肤处理装置设置于光子照射仪的结构示意图三;
图5是光子照射仪的一个架构示意图。
具体实施方式
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同;本文中在申请的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请;本申请的说明书和权利要求书及上述附图说明中的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含。本申请的说明书和权利要求书或上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
为了使本技术领域的人员更好地理解本申请方案,下面将结合附图,对本申请实施例中的技术方案进行清楚、完整地描述。
实施例一
参见图1,本实施例提供一种基于高能量宽波段的光子皮肤处理方法,应用于光子照射仪,所述光子皮肤处理方法包括下述步骤:
S101、配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
S102、配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
S103、选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
本实施例中,本实施例中,通过配置不同能量的光子,不同波段的光子,选择不同能量的光子以及不同波段的光子中具体能量和波段的光子,通过光子照射仪对皮肤靶目标进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。需要指出的是,高能量可以指每发光子能量在10J及10J以上。宽波段是指光子的波段范围包括700nm至400nm之间。优选地,光子的波长选择695nm效果较好,也可以选择695nm附近的波长,例如,691nm,692nm,693nm,694nm,696nm,697nm,698nm,699nm等波长。在一些优选实施例中,不同能量的光子的能量范围包括10J至30J;不同波段的光子的波段范围包括700nm至400nm。不同波段的光子的波段范围包括第一波段范围、第二波段范围以及第三波段范围;第一波段范围在800nm至814nm之间;第二波段范围在600nm至550nm之间;第三波段范围在520nm至400nm之间。其中,第一波段范围为更优的波段范围。另外,能量配置模块、波段配置模块以及照射选择模块可以通过电路模块或者程序模块具体实现。
需要说明的是,选择不同能量的光子以及不同波段的光子中具体能量和波段的光子,通过光子照射仪对皮肤靶目标进行照射,可以有多种可行的优选实施方式。
在一种优选实施方式中,对只需要单一能量的光子和单一波长的光子照射的靶目标,选择不同能量的光子以及不同波段的光子中单一能量的光子和单一波长的光子,通过光子照射仪对皮肤靶目标进行照射。本实施例中,针对仅仅需要单一能量的光子和单一波长的光子照射的靶目标进行照射处理,从而达到皮肤细嫩、紧致的技术效果。进一步地,可以优选8J的光子和515nm波长的光子,通过光子照射仪对皮肤上的浅层斑进行照射,实现较好消除浅层斑上的黑色素的技术效果。
在一种优选实施方式中,对需要单一能量的光子和多个波长的光子照射的靶目标,选择不同能量的光子以及不同波段的光子中单一能量的光子和多个波长的光子,通过光子照射仪对皮肤靶目标进行照射,从而达到皮肤细嫩、紧致的技术效果。进一步地,可以优选695nm波长的光子,通过光子照射仪对皮肤靶目标进行照射,再选择590nm波长和560nm波长叠加照射皮肤靶目标,从而利用590nm波长作用于血红蛋白可以促使胶原蛋白再生,560nm波长的可以去黄提亮,收缩毛孔,实现皮肤即刻紧致,轮廓清晰的技术效果。需要指出的是,695nm波长的光子在现有技术中均是用于脱毛使用,本实施例用于对皮肤进行照射,能够实现紧致皮肤,清晰轮廓的技术效果。
在一种优选实施方式中,对需要多种能量的光子和单个波长的光子照射的靶目标,选择不同能量的光子以及不同波段的光子中多种能量的光子和单个波长的光子,通过光子照射仪对皮肤靶目标进行照射,从而达到皮肤细嫩、紧致的技术效果。进一步地,可以优选20J以上的多种能量的光子,590nm波长的光子,并选择25ms脉宽的光子,通过光子照射仪对皮肤的红血丝进行照射,从而达到血丝消除的技术效果。
在一种优选实施方式中,对需要多种能量的光子和多个波长的光子照射的靶目标,选择不同能量的光子以及不同波段的光子中多种能量的光子和多个波长的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。
在一些实施例中,基于高能量宽波段的光子皮肤处理方法,还包括下述步骤:
配置不同频率的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
选择所述不同频率的光子中具体频率的光子,通过所述光子照射仪对所述靶目标进行照射。
本实施例中,不同频率的光子的频率范围可以包括1s至5s。另外,本实施例通过选择具体频率的光子,通过光子照射仪对皮肤靶目标进行照射,从而达到皮肤细嫩、紧致的技术效果。需要指出的是,本实施例中,不同频率的光子中具体频率的光子,可以选择单个频率,也可以选择多个频率,从而满足不同靶目标照射需求。
在一些实施例中,基于高能量宽波段的光子皮肤处理方法,还包括下述步骤:
配置不同脉宽的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
选择所述不同脉宽的光子中具体脉宽的光子,通过所述光子照射仪对所述靶目标进行照射。
本实施例中,不同脉宽的光子的脉宽范围为宽脉宽范围,所述宽脉宽范围包括50ms至600ms,或,所述宽脉宽范围在600ms以上。另外,本实施例通过选择具体脉宽的光子,通过光子照射仪对皮肤靶目标进行照射,从而达到皮肤细嫩、紧致的技术效果。需要指出的是,本实施例中,选择具体脉宽的光子,可以选择单个脉宽的光子,也可以选择多个脉宽的光子,从而满足不同靶目标照射需求。
在一些实施例中,基于高能量宽波段的光子皮肤处理方法,还包括下述步骤:
接收用户端发出的对所述靶目标进行照射的照射请求;
控制所述光子照射仪将光子以光带的形式发出,以对所述靶目标进行滑动循环照射。
本实施例中,光子照射仪以光带的形式对皮肤靶目标进行滑动循环照射,从而达到皮肤细嫩、紧致的技术效果。 需要说明的是,光子照射仪以光带的形式对皮肤进行滑动循环照射可以包括多种优选实施方式,具体如下。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,又从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行滑动循环照射,达到皮肤细嫩、紧致的技术效果。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,马上从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行连续的滑动循环照射,有效治疗需要连续照射治疗效果才较好的靶目标。需要指出的是,连续的滑动循环照射,可以让同一部位在上一次照射到下一次照射设置间隙,让上一次照射留有时间反应,实现有利于上一次照射的效果显示出来的技术效果。进一步地,光子照射仪以光带的形式,利用第一设定时间段,例如0秒到5秒的时间,从皮肤上靶目标的第一端向皮肤上靶目标的第二端完成照射,照射完皮肤上靶目标的第二端后,马上从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,间隔设定时间,再从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行间歇性的滑动循环照射,有效治疗需要间歇性照射治疗效果才较好的靶目标。进一步地,光子照射仪以光带的形式,利用第一设定时间段,例如0秒到5秒的时间,从皮肤上靶目标的第一端向皮肤上靶目标的第二端完成照射,照射完皮肤上靶目标的第二端后,间隔2秒后,即从第7秒开始,再从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射。
在一个优选实施例中,光子照射仪以光带的形式对皮肤进行滑动循环照射时,可以在一个时间周期内,照射设定次数,例如以30秒为一个周期,在该周期内照射4-5次,达到皮肤细嫩、紧致的技术效果。
在一些进一步改进实施例中,基于高能量宽波段的光子皮肤处理方法,还包括下述步骤:
根据默认设置,自动选择不同能量的光子及不同波段的光子中具体能量和波段的光子,通过光子照射仪对皮肤靶目标进行照射。本实施例中,默认设置自动选择具体能量和波段的光子,方便用户进行使用。例如,可以针对不同的靶目标进行默认设置,通过人机交互界面或按钮,用户只需对人机交互界面或按钮进行选择,光子照射仪就可以根据默认设置自动选择具体能量和波段的光子。
在一些进一步改进实施例中,基于高能量宽波段的光子皮肤处理方法,还包括下述步骤:
根据满足用户照射需求的用户选择指令,选择不同能量的光子及不同波段的光子中具体能量和波段的光子,通过光子照射仪对皮肤靶目标进行照射。本实施例中,由于考虑到靶目标的多样性,根据满足用户照射需求的用户选择指令选择具体能量和波段的光子,从而可以满足多种靶目标的治疗需求。例如,用户在默认设置中找不到对应当下靶目标的控件或按钮时,可以自主选择具体能量和波段的光子进行自由组合。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机可读指令来指令相关的硬件来完成,该计算机可读指令可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,前述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)等非易失性存储介质,或随机存储记忆体(Random Access Memory,RAM)等。
应该理解的是,虽然附图的流程图中的各个步骤按照箭头的指示依次显示,但是这些步骤并不是必然按照箭头指示的顺序依次执行。除非本文中有明确的说明,这些步骤的执行并没有严格的顺序限制,其可以以其他的顺序执行。而且,附图的流程图中的至少一部分步骤可以包括多个子步骤或者多个阶段,这些子步骤或者阶段并不必然是在同一时刻执行完成,而是可以在不同的时刻执行,其执行顺序也不必然是依次进行,而是可以与其他步骤或者其他步骤的子步骤或者阶段的至少一部分轮流或者交替地执行。
实施例二
参见图2-图5,本发明提供一种基于高能量宽波段的光子皮肤处理装置,所述基于高能量宽波段的光子皮肤处理装置对应运行上述任一种基于高能量宽波段的光子皮肤处理方法的步骤,所述基于高能量宽波段的光子皮肤处理装置包括:
能量配置模块,用于配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
波段配置模块,用于配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
照射选择模块,用于选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
本实施例中,通过能量配置模块在光子照射仪中配置不同能量的光子,波段配置模块在光子照射仪中配置不同波段的光子,照射选择模块选择能量配置模块和波段配置模块中具体能量和波段的光子,通过光子照射仪对皮肤进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。需要指出的是,高能量可以指每发光子能量在10J及10J以上。宽波段是指光子的波段范围包括700nm至400nm之间。优选地,光子的波长选择695nm效果较好,也可以选择695nm附近的波长,例如,691nm,692nm,693nm,694nm,696nm,697nm,698nm,699nm等波长。在一些优选实施例中,不同能量的光子的能量范围包括10J至30J;不同波段的光子的波段范围包括700nm至400nm。不同波段的光子的波段范围包括第一波段范围、第二波段范围以及第三波段范围;第一波段范围在800nm至814nm之间;第二波段范围在600nm至550nm之间;第三波段范围在520nm至400nm之间。其中,第一波段范围为更优的波段范围。另外,能量配置模块、波段配置模块以及照射选择模块可以通过电路模块或者程序模块具体实现。
需要说明的是,照射选择模块选择能量配置模块和波段配置模块中具体能量和波段的光子,通过光子照射仪对皮肤进行照射,可以有多种可行的优选实施方式。
在一种优选实施方式中,对只需要单一能量的光子和单一波长的光子照射的靶目标,照射选择模块选择能量配置模块和波段配置模块中单一能量的光子和单一波长的光子,通过光子照射仪对皮肤进行照射。本实施例中,针对仅仅需要单一能量的光子和单一波长的光子照射的靶目标进行照射处理,从而达到皮肤细嫩、紧致的技术效果。进一步地,照射选择模块选择能量配置模块中8J的光子和波段配置模块中515nm波长的光子,通过光子照射仪对皮肤上的浅层斑进行照射,实现较好消除浅层斑上的黑色素的技术效果。
在一种优选实施方式中,对需要单一能量的光子和多个波长的光子照射的靶目标,照射选择模块选择能量配置模块和波段配置模块中单一能量的光子和多个波长的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。进一步地,照射选择模块先选择波段配置模块中695nm波长的光子,通过光子照射仪对皮肤进行照射,再选择590nm波长和560nm波长叠加照射皮肤,从而利用590nm波长作用于血红蛋白可以促使胶原蛋白再生,560nm波长的可以去黄提亮,收缩毛孔,实现皮肤即刻紧致,轮廓清晰的技术效果。需要指出的是,695nm波长的光子在现有技术中均是用于脱毛使用,本实施例用于对皮肤进行照射,能够实现紧致皮肤,清晰轮廓的技术效果。
在一种优选实施方式中,对需要多种能量的光子和单个波长的光子照射的靶目标,照射选择模块选择能量配置模块和波段配置模块中多种能量的光子和单个波长的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。进一步地,照射选择模块选择能量配置模块中20J以上的多种能量的光子,选择波段配置模块中590nm波长的光子,选择脉宽配置模块中25ms脉宽的光子,通过光子照射仪对皮肤的红血丝进行照射,从而达到血丝消除的技术效果。
在一种优选实施方式中,对需要多种能量的光子和多个波长的光子照射的靶目标,照射选择模块选择能量配置模块和波段配置模块中多种能量的光子和多个波长的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。
在一个优选实施例中,基于高能量宽波段的光子皮肤处理装置还包括频率配置模块,频率配置模块在光子照射仪中配置不同频率的光子,照射选择模块选择频率配置模块中具体频率的光子,通过光子照射仪对皮肤进行照射。本实施例中,不同频率的光子的频率范围可以包括1s至5s。另外,照射选择模块选择频率配置模块中具体频率的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。需要指出的是,本实施例中,照射选择模块选择频率配置模块中具体频率的光子,可以选择单个频率,也可以选择多个频率,从而满足不同靶目标照射需求。另外,频率配置模块可以通过电路模块或者程序模块具体实现。
在一个优选实施例中,基于高能量宽波段的光子皮肤处理装置还包括脉宽配置模块;脉宽配置模块在光子照射仪中配置不同脉宽的光子,照射选择模块选择脉宽配置模块中具体脉宽的光子,通过光子照射仪对皮肤进行照射。本实施例中,不同脉宽的光子的脉宽范围为宽脉宽范围,宽脉宽范围可以包括50ms至600ms,或在600ms以上。另外,照射选择模块选择脉宽配置模块中具体脉宽的光子,通过光子照射仪对皮肤进行照射,从而达到皮肤细嫩、紧致的技术效果。需要指出的是,本实施例中,照射选择模块选择脉宽配置模块中具体脉宽的光子,可以选择单个脉宽的光子,也可以选择多个脉宽的光子,从而满足不同靶目标照射需求。另外,脉宽配置模块可以通过电路模块或者程序模块具体实现。
在一个优选实施例中,照射选择模块根据默认设置自动选择能量配置模块和波段配置模块中具体能量和波段的光子,通过光子照射仪对皮肤进行照射。本实施例中,默认设置自动选择能量配置模块和波段配置模块中具体能量和波段的光子,方便用户进行使用。例如,可以针对不同的靶目标进行默认设置,通过人机交互界面或按钮,用户只需对人机交互界面或按钮进行选择,照射选择模块就可以根据默认设置自动选择能量配置模块和波段配置模块中具体能量和波段的光子。
在一个优选实施例中,照射选择模块根据满足用户照射需求的用户选择指令选择能量配置模块和波段配置模块中具体能量和波段的光子,通过光子照射仪对皮肤进行照射。本实施例中,由于考虑到靶目标的多样性,照射选择模块根据满足用户照射需求的用户选择指令选择能量配置模块和波段配置模块中具体能量和波段的光子,从而可以满足多种靶目标的治疗需求。例如,用户在默认设置中找不到对应当下靶目标的控件或按钮时,可以自主触发照射选择模块根据满足用户照射需求的用户选择指令选择能量配置模块和波段配置模块中具体能量和波段的光子。
在一个优选实施例中,光子照射仪以光带的形式对皮肤进行滑动循环照射。 本实施例中,光子照射仪以光带的形式对皮肤进行滑动循环照射,从而达到皮肤细嫩、紧致的技术效果。需要指出的是,滑动循环照射可以是连续的滑动循环照射,连续滑动循环照射可以让同一部位在上一次照射到下一次照射设置间隙,让上一次照射留有时间反应,实现有利于上一次照射的效果显示出来的技术效果。 需要说明的是,光子照射仪以光带的形式对皮肤进行滑动循环照射可以包括多种优选实施方式,具体如下。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,又从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行滑动循环照射,达到皮肤细嫩、紧致的技术效果。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,马上从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行连续的滑动循环照射,有效治疗需要连续照射治疗效果才较好的靶目标。进一步地,光子照射仪以光带的形式,利用第一设定时间段,例如0秒到5秒的时间,从皮肤上靶目标的第一端向皮肤上靶目标的第二端完成照射,照射完皮肤上靶目标的第二端后,马上从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射。
在一种优选实施方式中,光子照射仪以光带的形式,从皮肤上靶目标的第一端向皮肤上靶目标的第二端照射,照射完皮肤上靶目标的第二端后,间隔设定时间,再从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射,从实现对皮肤进行间歇性的滑动循环照射,有效治疗需要间歇性照射治疗效果才较好的靶目标。进一步地,光子照射仪以光带的形式,利用第一设定时间段,例如0秒到5秒的时间,从皮肤上靶目标的第一端向皮肤上靶目标的第二端完成照射,照射完皮肤上靶目标的第二端后,间隔2秒后,即从第7秒开始,再从皮肤上靶目标的第二端向皮肤上靶目标的第一端照射。
在一个优选实施例中,光子照射仪以光带的形式对皮肤进行滑动循环照射时,可以在一个时间周期内,照射设定次数,例如以30秒为一个周期,在该周期内照射4-5次,达到皮肤细嫩、紧致的技术效果。
最后需要总体说明的是,以上实施例中,通过在光子照射仪中设置基于高能量宽波段的光子皮肤处理装置,基于高能量宽波段的光子皮肤处理装置包括能量配置模块、波段配置模块以及照射选择模块,能量配置模块在光子照射仪中配置不同能量的光子,波段配置模块在光子照射仪中配置不同波段的光子,照射选择模块选择能量配置模块和波段配置模块中具体能量和波段的光子,通过光子照射仪对皮肤进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。
实施例三
参见图5,本实施例还提供一种光子照射仪,所述光子照射仪包括上述任意一种基于高能量宽波段的光子皮肤处理装置,运行上述任意一种基于高能量宽波段的光子皮肤处理方法。光子照射仪8包括通过系统总线相互通信连接存储器81、处理器82、网络接口83。需要指出的是,图中仅示出了具有组件81-83的光子照射仪8,但是应理解的是,并不要求实施所有示出的组件,可以替代的实施更多或者更少的组件。其中,本技术领域技术人员可以理解,这里的光子照射仪是一种能够按照事先设定或存储的指令,自动进行数值计算和/或信息处理的设备,其硬件包括但不限于微处理器、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程门阵列(Field-Programmable Gate Array,FPGA)、数字处理器 (Digital Signal Processor,DSP)、嵌入式设备等。
存储器81至少包括一种类型的可读存储介质,可读存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器等)、随机访问存储器(RAM)、静态随机访问存储器(SRAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、可编程只读存储器(PROM)、磁性存储器、磁盘、光盘等。在一些实施例中,存储器81可以是光子照射仪8的内部存储单元,例如该光子照射仪8的硬盘或内存。在另一些实施例中,存储器81也可以是光子照射仪8的外部存储设备,例如该光子照射仪8上配备的插接式硬盘,智能存储卡(Smart Media Card, SMC),安全数字(Secure Digital, SD)卡,闪存卡(Flash Card)等。当然,存储器81还可以既包括光子照射仪8的内部存储单元也包括其外部存储设备。本实施例中,存储器81通常用于存储安装于光子照射仪8的操作系统和各类应用软件,例如基于高能量宽波段的光子皮肤处理方法的计算机可读指令等。此外,存储器81还可以用于暂时地存储已经输出或者将要输出的各类数据。
处理器82在一些实施例中可以是中央处理器(Central Processing Unit,CPU)、控制器、微控制器、微处理器、或其他数据处理芯片。该处理器82通常用于控制光子照射仪8的总体操作。本实施例中,处理器82用于运行存储器81中存储的计算机可读指令或者处理数据,例如运行基于高能量宽波段的光子皮肤处理方法的计算机可读指令。
网络接口83可包括无线网络接口或有线网络接口,该网络接口83通常用于在光子照射仪8与其他电子设备之间建立通信连接。
本实施例通过配置不同能量的光子从光子照射仪发出,用于照射皮肤上的靶目标,配置不同波段的光子从光子照射仪发出,用于照射皮肤上的靶目标,选择不同能量的光子中具体能量的光子,并选择不同波段的光子中具体波段的光子,通过光子照射仪对靶目标进行照射,从而在光子照射仪中可以选择不同能量,不同波段的光子照射皮肤,实现皮肤处理手段的多元化选择,提升皮肤处理效果,对皮肤无创伤,让皮肤局部细胞即刻脱水,使得皮肤即刻紧致,轮廓清晰,促进胶原蛋白再生,达到皮肤细嫩、紧致的技术效果。
进一步,本实施例还提供一种计算机可读存储介质,计算机可读存储介质存储有计算机可读指令,计算机可读指令可被至少一个处理器执行,以使至少一个处理器执行如上述的基于高能量宽波段的光子皮肤处理方法的步骤。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
显然,以上所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例,附图中给出了本申请的较佳实施例,但并不限制本申请的专利范围。本申请可以以许多不同的形式来实现,相反地,提供这些实施例的目的是使对本申请的公开内容的理解更加透彻全面。尽管参照前述实施例对本申请进行了详细的说明,对于本领域的技术人员来而言,其依然可以对前述各具体实施方式所记载的技术方案进行修改,或者对其中部分技术特征进行等效替换。凡是利用本申请说明书及附图内容所做的等效结构,直接或间接运用在其他相关的技术领域,均同理在本申请专利保护范围之内。

Claims (10)

  1. 一种基于高能量宽波段的光子皮肤处理方法,应用于光子照射仪,其特征在于,所述光子皮肤处理方法包括下述步骤:
    配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
  2. 根据权利要求1所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述不同能量的光子的能量范围包括10J至30J;所述不同波段的光子的波段范围包括700nm至400nm。
  3. 根据权利要求2所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述不同波段的光子的波段范围包括第一波段范围、第二波段范围以及第三波段范围;所述第一波段范围在800nm至814nm之间;所述第二波段范围在600nm至550nm之间;所述第三波段范围在520nm至400nm之间。
  4. 根据权利要求1所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述光子皮肤处理方法还包括下述步骤:
    配置不同频率的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    选择所述不同频率的光子中具体频率的光子,通过所述光子照射仪对所述靶目标进行照射。
  5. 根据权利要求4所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述不同频率的光子的频率范围包括1s至5s。
  6. 根据权利要求1-5任一项所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述光子皮肤处理方法还包括下述步骤:
    配置不同脉宽的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    选择所述不同脉宽的光子中具体脉宽的光子,通过所述光子照射仪对所述靶目标进行照射。
  7. 根据权利要求6所述的基于高能量宽波段的光子皮肤处理方法,所述不同脉宽的光子的脉宽范围为宽脉宽范围,所述宽脉宽范围包括50ms至600ms,或,所述宽脉宽范围在600ms以上。
  8. 根据权利要求6所述的基于高能量宽波段的光子皮肤处理方法,其特征在于,所述光子皮肤处理方法还包括下述步骤:
    接收用户端发出的对所述靶目标进行照射的照射请求;
    控制所述光子照射仪将光子以光带的形式发出,以对所述靶目标进行滑动循环照射。
  9. 一种基于高能量宽波段的光子皮肤处理装置,其特征在于,所述基于高能量宽波段的光子皮肤处理装置对应运行如权利要求1-8任一项所述的基于高能量宽波段的光子皮肤处理方法的步骤,所述基于高能量宽波段的光子皮肤处理装置包括:
    能量配置模块,用于配置不同能量的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    波段配置模块,用于配置不同波段的光子从所述光子照射仪发出,用于照射皮肤上的靶目标;
    照射选择模块,用于选择所述不同能量的光子中具体能量的光子,并选择所述不同波段的光子中具体波段的光子,通过所述光子照射仪对所述靶目标进行照射。
  10. 一种光子照射仪,其特征在于,所述光子照射仪包括如权利要求9所述的基于高能量宽波段的光子皮肤处理装置。
PCT/CN2023/075568 2022-11-16 2023-02-13 基于高能量宽波段的光子皮肤处理方法及其相关设备 WO2024103546A1 (zh)

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CN1342058A (zh) * 1999-03-05 2002-03-27 Icn光子学有限公司 用脉冲激光减少皮肤皱纹
TWM270822U (en) * 2004-12-24 2005-07-21 Formosa Biomedical Technology Skin activation device comprising yellow light from multi-wave light-emitting diode
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