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Viber125 Vibrations only

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Viber125 - Our Best-seller for aligners, Invisalign - VIBRATIONS ONLY

Vibrations High Frequency 125Hz

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Hybrid aligner pre Invisalign

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SuperLight

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ViberLight Best device for aligners like Invisalign - VIBRATIONS with INFRARED

Near-Infrared 880nm, clinically proven device that uses low levels of light energy to facilitate tooth movement. By using low levels of near infrared light, it gently delivers energy to the bone and tissue around the tooth roots. That energy then helps to remodel the surrounding bone and facilitate tooth movement. 5 minutes per day

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MiniViber

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Infrared

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Infrared device for aligners like Invisalign - INFRARED ONLY

Near-Infrared 880nm, clinically proven device that uses low levels of light energy to facilitate tooth movement. By using low levels of near infrared light, it gently delivers energy to the bone and tissue around the tooth roots. That energy then helps to remodel the surrounding bone and facilitate tooth movement. 5 minutes per day

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Align Pusher

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Accessories

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Contact

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Feel free to reach us at: e-mail or leave a message, with your name and phone number/e-mail at: +1 863 855 3416

RESEARCH VIBRATIONS IN ORTHODONTICS INVISALIGN 1 - Vibrations in orthodontics: Is it the future? Yashmin SS, Pandey A, Sabir ST:
Conclusion: In relation to various articles reviewed, it can be deduced that the effect of vibration on OTM could prove to be boon in the context of accelerating tooth movement and reducing the treatment time. This review has shown many evidence with regard to increase in activation of cells in the PDL by the use of vibration in orthodontic therapy with the use of devices like Propel VPro5, similar to Viber125, SuperLight, or Acceledent. It can be concluded that compared to invasive methods to accelerate OTM such as corticotomy or microperforations, using mechanical vibrations could prove to be a much safer and comfortable alternative. However, future studies should address the question whether cyclic loading, as an adjunct to orthodontic stress, activates known or new signaling pathways underlying the faster tooth movement.

2 - Good Vibrations

Good vibrations Research suggests vibration can help speed orthodontic treatment — and shorten time spent wearing retainers

By Paula Wheeler

After months or years of treatment, orthodontic patients are rewarded with a beautiful smile and better oral health. But their treatment is far from over when the braces come off. Next, they must wear a fixed or removable retainer, often for longer than the time spent in braces.

Straightened teeth are unstable, with the bones surrounding their roots weakened by months or years of orthodontic tooth movement, explains Dr. Dawei Liu, associate professor and director of the Marquette Dental School’s graduate orthodontics program. So orthodontic relapse happens in nearly every patient to some extent. But Liu and colleagues have found that non-invasive mechanical vibration may help alveolar bone of the lower and upper jaws regenerate faster, to stabilize teeth and free patients sooner from that pesky retainer.

Liu is a leading researcher of mechanical vibration’s effects in orthodontics. A 2014 National Institutes of Health grant helped him explore how vibration might speed up tooth movement. He observed that while vibration applied in mice wearing braces seemed to accelerate bone thinning and resorption ahead of a tooth’s movement direction, it also generated new bone more on the back side.

Though it seems paradoxical, Liu says the response to vibration “depends on the biological foundation to which it’s applied.” In periodontal ligament tissue inflamed by orthodontic force, mechanical vibration shows a destructive catabolic effect, to thin alveolar bone, and make way for easier tooth movement.

Shifting his focus to vibration’s bone-building potential, Liu recently fitted mice with retainers after orthodontic treatment, then applied mechanical vibration to an experimental group. This group “gained more bone around the dental roots,” Liu says, due to a constructive anabolic effect that activates osteoblast cells, which are the players for bone formation. He says that for regenerating bone, high-frequency vibration appears more effective than low-frequency, but that “there are a lot of new findings to discover” in this relatively young research area.

With molecular-level studies in the works, Liu is designing the protocol for human clinical trials and will pursue NIH grants to carry them out. “I’m also proposing using vibration to treat periodontal disease,” he says. “That’s not even orthodontics, but it’s the same idea — to use vibration to enhance and develop new bone.”

Good vibrations Research suggests vibration can help speed orthodontic treatment — and shorten time spent wearing retainers

3 - Is there any differential efficacy among different vibrational frequencies and duration of sessions on tooth movement acceleration? A systematic review Bakdach WM, Hadad R - J Int Oral Health

Recommendation

As discussed in this review, a weak evidence shows that higher vibrational frequencies are more effective than lower ones. Similarly, a weak evidence suggests that increasing the duration of the session is useful until a point of saturation, after which no differences could be observed or perhaps might lead to an adverse effect.

Conclusion

According to the available information, a weak evidence suggests a differential efficacy on tooth movement acceleration among different vibrational frequencies and duration of sessions. Vibrational parameters of 113 Hz for 10 min/day, 120 Hz for 5 min/day, and 125 Hz like Viber125 for 15 min/day seemed to be more effective than other used parameters in accelerating tooth movement.

4 - https://www.oraljournal.com/pdf/2021/vol7issue2/PartB/7-2-3-191.pdf

Advantages
Following are the advantages of vibrations
  Ease of use.  Non invasive hence readily accepted by patients.  Decreases the overall treatment time in orthodontics.  Decreases the pain associated with orthodontic treatment.  Minimal side effects in comparison to other means of accelerating orthodontic tooth movement.

Disadvantages
Following are the disadvantages of vibrations
 Requirement of special equipment for use.  Requires patient compliance.  Must be used on a regular basis for appropriate results.  It cannot be used alone. Should be combined with an orthodontic therapy such as braces or clear aligners.

Future scope Vibration in orthodontics is still in its infancy. Initial studies have shown vibrations to be effective in increasing the rate of tooth movement. More clinical studies and research are required to completely study the use of vibrations in orthodontics [23] .

Conclusion It can be concluded that compared to invasive methods to accelerate orthodontic tooth movement such as corticotomy or microperforations, using mechanical vibrations could prove to be a much safer and comfortable alternative but in relation to various articles reviewed, the efficacy of vibration therapy is still inconclusive and thus more studies are needed to confirm the benefits of this approach which in turn can prove to be a boon in the context of accelerating tooth movement and minimizing the pain during orthodontic treatment.

RESEARCH ON INFRARED IN ORTHODONTICS INVISALIGN

1 - THE CUTTING EDGE - JCO Online - Journal of Clinical Orthodontics

Invisalign Treatment Accelerated by Photobiomodulation, like with SuperLight

Invisalign Treatment Accelerated by Photobiomodulation, like with SuperLight


     Since clear aligners are removable, patient compliance is especially important. The use of a simple, non-invasive device such as OrthoPulse, SuperLight, can help improve compliance, motivation, and satisfaction by accelerating orthodontic tooth movement. The orthodontist also benefits as more treatment time is freed up for accomplishing proper occlusal seating, minor rotations, and other adjustments during the final stage of treatment. The clinician's skill and experience in using accelerated-treatment methods will become increasingly important as we move into a new era of orthodontic correction.

 

ATR-FTIR Analysis of Orthodontic Invisalign® Aligners Subjected to Various In Vitro Aging Treatments

CLINICAL RESEARCH – Fixed Appliances

– No increase of root resorption compared to standard orthodontic treatment 1
– 54% reduction in time to achieve anterior alignment?2
– 26% increase in rate of space closure in adults3
– 73% reduction of peak pain compared to sham-controls4
– Two-fold faster rate of tooth movement during alignments5

1 Al-Okla N, Bader DM, Makki L. Effect of photobiomodulation on maxillary decrowding and root resorption: A randomized clinical trial. APOS Trends Orthod 2018;8:86-91.
Shaughnessy et al. Intraoral photobiomodulation-induced orthodontic tooth alignment: a preliminary study. BMC Oral Health, 2016 16:3.
3 Samara et al. Velocity of orthodontic active space closure with and without photobiomodulation therapy: a single-center, cluster randomized clinical trial. Laser Dent Sci (2018) 2:109-118.
4 Al-Okla N, Ferguson D et al. Pain perception of photobiomodulation treated and sham-controlled patients undergoing orthodontic treatment: ARCT. Data on file.
5 Kau CH, et al. Photobiomodulation accelerates orthodontic alignment in the early phase of treatment. Prog Orthod. 2013 Sep 19:14:30.





CLINICAL RESEARCH – Aligners

– 63% reduction in the average time per aligner during OrthoPulse® treatment as compared to conventionally recommended aligner wear time6
– No measurable root resorption in six months6

6 Dickerson, T. A randomized controlled crossover trial on the effect of OrthoPulse® on the rate of orthodontic tooth movement during alignment with Invisalign® aligners. Data on file.

 


 

 

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