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Efficacy of Using 3D Motion Tracking Toothbrush in Dental Plaque Control

Efficacy of Using 3D Motion Tracking Toothbrush in Dental Plaque Control

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04627324
Enrollment
209
Registered
2020-11-13
Start date
2008-09-01
Completion date
2011-08-01
Last updated
2020-11-17

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Toothbrushing

Keywords

Teledentistry, Schoolchildren, Oral hygiene, Computer, Smart toothbrush, Dental plaque

Brief summary

The objective of this study was to compare the efficacy of computer-assisted TBI (toothbrushing instruction) using a smart toothbrush and smart mirror (STM system) in plaque control to that of conventional TBI.

Detailed description

The STM system comprises a smart mirror, which is integrated into a computer monitor, and a 3D motion-capture device inside of a modified toothbrush holder. The computer program displays a toothbrushing animation in the mirror. Toothbrush motions detected by sensors embedded inside the holder are captured and sent to the server for analysis. The investigators evaluated the efficacy of TBI with a STM system by analyzing the reductions of the modified Quigley-Hein plaque index in 1. st study - 60 volunteers (adults) - The data for which have been published (reference) 2. nd study - 42 volunteers (schoolchildren) - manuscript prepared 3. rd study - 60 volunteers (adults and children) These participants were separated randomly into two groups: conventional TBI (control group) and STM system TBI (experimental group). The changes in the plaque indexes were recorded immediately, 1 week, 1 month, and 10 months (1st study only) after TBI.

Interventions

DEVICEThe smart toothbrush and smart mirror (STM) system (XiuSolution, Gyeonggi-do, Korea)

The STM system comprises a smart mirror, which is integrated into a computer monitor, and a 3D motion-capture device inside of a modified toothbrush holder. The computer program displays a toothbrushing animation in the mirror. Toothbrush motions detected by sensors embedded inside the holder are captured and sent to the server for analysis. (used only during the test visits) Participants had to brush their teeth at home (using toothbrushes with a flat-trimmed nylon bristle of identical type and length.) for 3 min thrice daily, after meals, as recommended by the Korean Dental Association.

toothbrushes with a flat-trimmed nylon bristle of identical type and length. Participants had to brush their teeth at home for 3 min thrice daily, after meals, as recommended by the Korean Dental Association.

Sponsors

National Research Foundation of Korea
CollaboratorOTHER
Yonsei University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
SINGLE (Investigator)

Masking description

A dental hygienist blinded to group assignment determined plaque status. Participants were randomly assigned into two equally sized groups by flipping a coin.

Eligibility

Sex/Gender
ALL
Healthy volunteers
Yes

Inclusion criteria

* Participants with poor oral conditions need more toothbrush instruction * Participants were required to have their gingivitis and baseline plaque scores \>1.5 (the Turesky Modification of the Quigley-Hein index)

Exclusion criteria

* if they had gross dental caries or orthodontic appliances, or were medically compromised.

Design outcomes

Primary

MeasureTime frameDescription
Change from Baseline in plaque index at 10 month after TBI (1st study-adults)Baseline, immediately after TBI (day 0), 1 week, 1 month and 10 month after TBI.The effects of smart toothbrush and smart mirror (STM) system TBI and conventional TBI on dental plaque in adults were compared in this study. Plaque examination was scored on the buccal and lingual surface of all teeth. The Turesky Modification of the Quigley-Hein index was scored between 0 (no plaque) and 5 (plaque covering ≥ two-thirds of the tooth crown) The percentages of plaque removal at each surfaces and whole mouth were determined with the formula: percentage plaque reduction = pre-post / pre X100 (pre=prebrushing plaque value; post=postbrushing plaque value).
Change from Baseline in plaque index at 1 month after TBI (2nd study-schoolchildren)Baseline, immediately after TBI (day 0), 1 week, 1 month after TBI.The effects of smart toothbrush and smart mirror (STM) system TBI and conventional TBI on dental plaque in schoolchildren were compared in this study. Plaque examination was scored on the buccal and lingual surface of all teeth (if a permanent tooth had not erupted yet, the primary tooth in the corresponding area was tested). The Turesky Modification of the Quigley-Hein index was scored between 0 (no plaque) and 5 (plaque covering ≥ two-thirds of the tooth crown) The percentages of plaque removal at each surfaces and whole mouth were determined with the formula: percentage plaque reduction = pre-post / pre X100 (pre=prebrushing plaque value; post=postbrushing plaque value).
Change from Baseline in plaque index at 1 month after TBI (3rd study-adults and children)Baseline, immediately after TBI (day 0), 1 week, 1 month after TBI.The effects of smart toothbrush and smart mirror (STM) system TBI and conventional TBI on dental plaque in adults and children were compared in this study. Plaque examination was scored on the buccal and lingual surface of all teeth (if a permanent tooth had not erupted yet, the primary tooth in the corresponding area was tested). The Turesky Modification of the Quigley-Hein index was scored between 0 (no plaque) and 5 (plaque covering ≥ two-thirds of the tooth crown) The percentages of plaque removal at each surfaces and whole mouth were determined with the formula: percentage plaque reduction = pre-post / pre X100 (pre=prebrushing plaque value; post=postbrushing plaque value).

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 10, 2026