What’s the indications of the COZING-T08 laser dentistry for cavities?
Musculoskeletal injuries
Sprains
Strains
Tendoniti
Arthritis
Back and neck pain
Sports injuries
Neuropathy
Wound healing
Post-surgical recovery
Skin rejuvenation
Hair growth stimulation
Cold Sores
Muscular
Mouth Ulcers
What’s the technical parameter of the COZING-T08 laser dentistry for cavities?
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Model: |
COZING-T08 |
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Instrument classification: |
Class II |
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Wavelength: |
904nm |
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The max.output: |
75W |
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Adapter(charge)Input: |
100-240V 50/60HZ |
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Power supply |
Rechargeable Li-ion battery |
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Input voltage: |
3.7V DC |
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Working Mode: |
Continuous Wave & Pulsed Wave |
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Extend probe: |
Available, the probe is removeable. |
904 nm wavelength improves circulation
1.The water in your pet’s bloodstream delivers oxygen to cells, carries away waste products, and absorbs 904 nanometer wavelengths of light very well. The energy generated by absorbing photons is converted into heat, creating a temperature gradient at the cellular level, stimulating microcirculation and bringing more oxygen fuel to the cells.
2.The 904nm wavelength was selected due to its deep penetration properties – the unit will penetrates 5cm into muscle tissue reducing pain, inflammation and encouraging blood flow to the injured muscle, tendon and ligaments.




What is the advantages of the the COZING-T08 laser dentistry for cavities?
1. The laser pointer adopts the wavelength of 904nm, which is a rare wavelength in the market.
2. The product comes with a detachable probe, which can be used for mouth treatment.
3. Can be used by both humans and animals
4. Small size, portable, good partner for traveling.
3. Comes with lithium battery, easy to use.
5. Relieve pain, accelerate wound healing
6. Pulse continuous two modes
Clinical Studies:
1.Background
Burn wound healing is often delayed due to factors such as prolonged inflammation, vascular dysfunction, neuropathy, increased proteolysis, infection, and oxidative stress. These wounds typically experience reduced oxygen supply due to impaired blood circulation. The resulting hypoxic environment leads to excessive production of free radicals, causing oxidative damage that disrupts the repair process and harms cell membranes, proteins, lipids, and DNA. Photobiomodulation (PBM) therapy using a 904 nm superpulsed laser has demonstrated significant healing benefits by reducing inflammation and promoting cell proliferation, angiogenesis, collagen synthesis, and bioenergetic activity in burn wounds.
2.Methods
This study evaluated the effects of a 904 nm superpulsed laser applied at an average power density of 0.4 mW/cm², a total energy density of 0.2 J/cm², a frequency of 100 Hz, and a pulse width of 200 ns. The treatment was administered for 10 minutes daily over seven days following burn injury. Key metrics included nitroxidative stress levels, endogenous antioxidant activity, and redox balance.
3.Results
Photobiomodulation significantly reduced reactive oxygen species, nitric oxide, and lipid peroxidation levels compared to non-irradiated controls. It also showed protective effects against protein oxidative damage, as evidenced by decreased protein carbonylation and advanced oxidation protein product levels. Additionally, PBM treatment enhanced endogenous antioxidant levels, including SOD, catalase, GPx, GST, reduced glutathione, and thiols (T-SH, Np-SH, P-SH). These biochemical improvements were supported by upregulated protein expression of Nrf2, heme oxygenase-1 (HO-1), and thioredoxin reductase 2 (Txnrd2).
4.Conclusion
Photobiomodulation therapy using a 904 nm superpulsed laser effectively reduced nitroxidative stress, increased endogenous antioxidant activity, and maintained redox balance. These mechanisms play a crucial role in accelerating burn wound healing and enhancing the overall repair
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