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DIVE DEEP WITH EVA 3D™

35 Million
Pixel
Imaging

EVA 3D Uses Advanced 3D Scanning And HD Imaging To Analyze Skin Layers, Identifying Irregularities And Assessing Facial Contours.

Multiple 3D HD Imaging Modes
with EVA 3DTM

  • Cold light

     Principle of Imaging: Cold light source is a light that contains almost no infrared spectrum.

     Main Observation: Under the cold light and temperature, the skin becomes whiter and tenderer, and the bad issues can be highlighted.

     Scope of Observation: Sunburn, freckles, acne pits, acne marks, wrinkles, pores.

    Cold light
  • Natural Light

     Principle of Imaging: The natural beam of light that includes the surface of the skin is directly reflected by the skin cuticle and the outer air.

     Main Observation: You can see the spots on the surface of the skin visible to the naked eye or other pigmentation on the epidermis, as well as the texture and flatness of the skin.

    Scope of Observation: Sunburn, freckles, acne pits, acne marks, wrinkles, pores

    Natural Light
  • Red Blood Map

     Principle of Imaging: Different fluorescence reactions of skin cells with different secretions.

     Main Observation: The hemoglobin in the skin capillaries has a good spectral absorption rate for this band. It is easier to observe the condition of red blood.

     Scope of Observation: Acne, sensitivity, red blood.

    Red Blood Map
  • Deep Red Zone

    Principle of Imaging: Separate the red components from the skin and use image enhancement technology to highlight the relevant symptoms.

    Main Observation: Blood vessels and heme are found in the dermis and superficial skin layers, forming a red area. Reflect the condition of capillaries, such as acne, inflammation, rosacea, or spider moles.

    Scope of Observation: Pigmentation caused by acne, acne vulgaris, rosacea, vascular obstruction, pigmentation, color spots, red blood.

    Deep red Zone
  • Shallow Red Zone

    Principle of Imaging: Separate the red components from the skin and use image enhancement technology to highlight the relevant symptoms. In this mode, the effect of mildly sensitive people before and after treatment is obvious.

    Main Observation: Comparative identification methods before and after treatment of mildly sensitive people: silk thread, cotton flock, red dot.

    Scope of Observation: Sensitivity.

  • Red Heat Zone

    Principle of Imaging: Using image enhancement technology and symptom image mapping analysis, through blue-green-yellow-red gradient mapping.

    Main Observation: Reflects the severity of the skin. Blue is healthy skin, and red is severe skin.

    Scope of Observation: Pigmentation caused by acne, acne vulgaris, rosacea, vascular obstruction, pigmentation, color spots, red blood.

  • Deep Brown Zone

    Principle of Imaging: The orange light at the wavelength of 590-625nm is used to detect dark spots and hyperpigmentation spots that can be invisible to the naked eye at the bottom of the skin.

    Main Observation: Areas where its concentrated refers to spots that are different in color f rom the surrounding areas. A common brown or black facial appearance due to an increase in melanin in the skin.

    Scope of Observation: Pigmentation spots, freckles, dark spots, chloasma and age spots.

  • Shallow Brown Zone

    Principle of Imaging: The orange light at the wavelength of 590-625nm is used to detect dark spots and hyperpigmentation spots that can be invisible to the naked eye at the bottom of the skin.

    Main Observation: The main detection is the density and thickness of color spots (deep color spots), which is suitable for comparison before and after color spots treatment.

    Scope of Observation: Melasma, freckles, freckle-like moles.

    Shallow Brown zone
  • Brown Zone Heat Map

    Principle of Imaging: Using image enhancement technology and symptom image mapping analysis, through blue-green-yellow-red gradient mapping, it more intuitively reflects the severity of the skin.

    Main Observation: Blue is healthy skin, and red is severe skin.

    Scope of Observation: Melasma, freckles.

    Brown zone heat map
  • Violet Zone Map

    Principle of Imaging: This image adopts a UV light source with a wavelength of 320-400nm, which can penetrate the depths of the dermis. In addition, skin cells have different fluorescence reactions from different secretions.

    Main Observation: It can detect deeper pigments and acne flora deep in pores. At the same time, you can check the pores, oil, hormone face, lead-mercury face under UV light. In the case of makeup, you can also see whether sunscreen ingredients are physical sunscreen or chemical sunscreen.

    Scope of Observation: Acne bacterium propionate, pore obstruction, oil.

  • UV Spot

    Principle of Imaging: The distribution and severity of melanin in the epidermis are analyzed by using the characteristics of epidermal melanin without fluorescence under ultraviolet light.

    Main Observation: The location, area, shape and size of the subcutaneous purple spots, and the skin is damaged by ultraviolet rays in the sun, resulting in the accumulation of melanin in the lower layer of the skin.

    Scope of Observation: Melasma, freckles, freckle-like moles

  • Parallel Polarized Light

    Principle of Imaging: Through parallel polarizer filter technology, the scattered light under the surface of the skin is suppressed, and the surface texture of the skin is observed more clearly.

    Main Observation:  Scope of observation Skin flatness, wrinkles, fine lines, large pores.

    Scope of Observation: Skin flatness, wrinkles, fine lines, large pores.

    Parallel polarized light

See Beyond The Surface

EVA 3D delivers detailed skin analysis, revealing the unseen from the deep dermis to the stratum corneum, ensuring precise diagnosis and effective treatment planning for confident decision-making.

How it Works?

EVA 3D™ penetrates the deepest skin layers to generate 11 high-definition, full-face 3D images, providing a detailed multi-level analysis of various skin conditions. This advanced imaging enhances understanding of skin complexities and refines surgical precision. Its automated rotating scanning camera captures images from 0° to 180° with 0.1mm accuracy, eliminating posture adjustments and saving time. The comprehensive and precise imaging ensures standardized before-and-after comparisons, leading to improved surgical planning, execution, and patient satisfaction.

Key Benefits

  • Advanced 3D Scanning

    Advanced 3D Scanning

    Yellow light therapy stimulates cellular repair and regeneration, significantly accelerating the healing process following surgeries and skin treatments.

  • Surface and Deep Layer Analysis

    Surface and Deep Layer Analysis

    EVA 3D goes beyond surface-level examination, penetrating deeper skin layers to identify texture irregularities, pore size, pigmentation, and inflammation, enabling accurate diagnosis of various skin conditions.

  • Facial Contour assessment

    Facial Contour Assessment

    EVA 3D also evaluates facial contours, tracking aging trends and signs of sagging. This aspect is crucial for planning cosmetic and reconstructive surgeries, as it provides a detailed map of the facial structure.

  • Multi-Level Imaging

    Multi-Level Imaging

    EVA 3D generates HD diagnostic images for multi-level analysis from deep dermis to outermost skin layer, revealing subtle nuances invisible to naked eye. This aids in precise diagnosis and treatment planning.

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