The efficacy of two dentifrices in controlling gingivitis and plaque in adults with implants
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
105
Brush twice daily
Brush twice daily
State University of New York at Buffalo
Buffalo, New York, United States
The Hebrew University-Hadassah
Jerusalem, Israel
Mombelli Plaque Index (mPI) for Natural Teeth
Modified Plaque Index (mPI)is a Dental plaque scale as follows 0 = No plaque, 1 = Separate flecks of plaque at the cervical margin;2 = Plaque can be seen by naked eye.3 = Abundance of soft matter. The lower the number the less plaque is present on the tooth.
Time frame: 3 months
Mombelli Plaque Index (mPI) for Natural Teeth
Modified Plaque Index (mPI) is a Dental plaque scale as follows 0 = No plaque, 1 = Separate flecks of plaque at the cervical margin;2 = Plaque can be seen by naked eye.3 = Abundance of soft matter. The lower the number the less plaque is present on the tooth.
Time frame: 6 months
Mombelli Plaque Index (mPI) for Dental Implants
Modified Plaque Index (mPI) is a dental plaque scale as follows 0 = No plaque, 1 = Separate flecks of plaque at the cervical margin;2 = Plaque can be seen by naked eye.3 = Abundance of soft matter. The lower the number the less plaque is present on the tooth.
Time frame: 3 months
Mombelli Plaque Index (mPI) for Dental Implants
Modified Plaque Index (mPI) is a dental plaque scale as follows 0 = No plaque, 1 = Separate flecks of plaque at the cervical margin;2 = Plaque can be seen by naked eye.3 = Abundance of soft matter. The lower the number the less plaque is present on the tooth.
Time frame: 6 months
Löe-Silness Gingival Index Score (GI) - Natural Teeth
Gingivitis score(GI) is defined: 0 = Absence of inflammation,1 = Mild inflammation-slight change in color and little change in texture,2 = Moderate inflammation-moderate glazing,redness,edema \& hypertrophy,3 = Severe inflammation-marked redness and hypertrophy tendency for spontaneous bleeding. Each tooth is scored on 6 surfaces:mesio-facial;2)mid-facial;3)disto-facial;4)mesio-lingual;5)mid-lingualand 6)disto-lingual. A whole mouth score = adding all the GI scores \& dividing by the total of number of sites scored. 3rd molars and teeth with restorations or crowns will be excluded.
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.
Time frame: 3 months
Löe-Silness Gingival Index Score (GI) - Natural Teeth
Gingivitis score(GI) is defined: 0 = Absence of inflammation,1 = Mild inflammation-slight change in color and little change in texture,2 = Moderate inflammation-moderate glazing,redness,edema \& hypertrophy,3 = Severe inflammation-marked redness and hypertrophy tendency for spontaneous bleeding.Each tooth is scored on 6 surfaces:mesio-facial;2)mid-facial;3)disto-facial;4)mesio-lingual;5)mid-lingualand 6)disto-lingual. A whole mouth score = adding all the GI scores \& dividing by the total of number of sites scored. 3rd molars and teeth with restorations or crowns will be excluded.
Time frame: 6 months
Löe-Silness Gingival Index Score (GI)- Dental Implants
Gingivitis Score (GI) is defined: 0 = Absence of inflammation,1=Mild inflammation-slight change in color and little change in texture,2 = Moderate inflammation-moderate glazing,redness,edema \& hypertrophy,3 = Severe inflammation-marked redness and hypertrophy tendency for spontaneous bleeding. Each tooth is scored on 6 surfaces:mesio-facial;2)mid-facial;3)disto-facial;4)mesio-lingual;5)mid-lingualand 6)disto-lingual. A whole mouth score=adding all the GI scores \& dividing by the total of number of sites scored. 3rd molars and teeth with restorations or crowns will be excluded.
Time frame: 3 months
Löe-Silness Gingival Index Score (GI)- Dental Implants
Gingivitis Score (GI) is defined: 0 = Absence of inflammation,1 = Mild inflammation-slight change in color and little change in texture,2 = Moderate inflammation-moderate glazing,redness,edema \& hypertrophy,3 = Severe inflammation-marked redness and hypertrophy tendency for spontaneous bleeding. Each tooth is scored on 6 surfaces:mesio-facial;2)mid-facial;3)disto-facial;4)mesio-lingual;5)mid-lingualand 6)disto-lingual. A whole mouth score=adding all the GI scores \& dividing by the total of number of sites scored. 3rd molars and teeth with restorations or crowns will be excluded.
Time frame: 6 months
Gingival Bleeding on Probing (BOP) Using Sulcus Bleeding Index for Teeth
Sulcus bleeding index for teeth is explained here. Gums around teeth are scored:0 = gingiva of normal texture \& color, no bleeding;1 = gingiva normal, bleeds on probing;2 = bleeding on probing,change in color, no oedema; 3 = bleeding on probing,change in color, slight oedema;4 = bleeding on probing, change in color, obvious oedema;5=bleeding on probing, spontaneous bleeding, change in color, marked oedema.
Time frame: 3 months
Gingival Bleeding on Probing (BOP) Using Sulcus Bleeding Index for Teeth
Sulcus bleeding index for teeth is explained here. Gums around teeth are scored:0 = gingiva of normal texture \& color, no bleeding;1 = gingiva normal, bleeds on probing;2 = bleeding on probing,change in color, no oedema;3 = bleeding on probing,change in color, slight oedema;4 = bleeding on probing,change in color, obvious oedema;5 = bleeding on probing, spontaneous bleeding,change in color,marked oedema.
Time frame: 6 months
Gingival Bleeding on Probing (BOP) Using the Modified Sulcus Bleeding Index for Implants
Gingival bleeding on probing (BOP) using the modified sulcus bleeding index for implants. Scale equals 0 = No bleeding when periodontal probe is passed along the gingival margin;1 = Isolated bleeding spots visible;2 = Blood forms a confluent red line on the gingival margin;3 = Heavy or profuse bleeding.
Time frame: 3 months
Gingival Bleeding on Probing (BOP) Using the Modified Sulcus Bleeding Index for Implants
Gingival bleeding on probing (BOP) using the modified sulcus bleeding index for implants. Scale equals 0 = No bleeding when periodontal probe is passed along the gingival margin;1 = Isolated bleeding spots visible;2 = Blood forms a confluent red line on the gingival margin;3 = Heavy or profuse bleeding.
Time frame: 6 months
A.Actinomycetemcomitans (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are Least means square (LSM)determined by baseline adjusted means including Standard Error of means (SEM).
Time frame: 3 months
A.Actinomycetemcomitans (DNA Probe Analysis)- Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data point is Least means square (LSM) determined by baseline adjusted means including Standard Error of Means (SEM).
Time frame: 6 months
A.Actinomycetemcomitans (DNA Probe Analysis)- Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implant. Data point is Least means square (LSM) determined by baseline adjusted means including Standard Error of Means (SEM).
Time frame: 3 months
A.Actinomycetemcomitans (DNA Probe Analysis)- Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implant. Data point is Least means square (LSM) determined by baseline adjusted means including Standard Error of Means (SEM).
Time frame: 6 months
C.Rectus (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
C.Rectus (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
C.Rectus (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
C.Rectus (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Capnocytophaga sp. (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Capnocytophaga sp. (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Capnocytophaga sp. (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Capnocytophaga sp. (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
E.Corrodens (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM)determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
E.Corrodens (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM)determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
E.Corrodens (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM)determined by baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
E.Corrodens (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM)determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
E.Saburreum (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
E.Saburreum (DNA Probe Analysis)- Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM)detemined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
E.Saburreum (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
E.Saburreum (DNA Probe Analysis) - Dental Implant
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
F.Nucleatum (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM)determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
F.Nucleatum (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error of means (SEM)
Time frame: 6 months
F.Nucleatum (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM)determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
F.Nucleatum (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM)determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Neissera sp. (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Neissera sp. (DNA Probe Analysis) Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points least means square (LSM) determined by baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Neissera sp. (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Neissera sp. (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
P.Gingivalis (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error of means (SEM)
Time frame: 3 months
P.Gingivalis (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM)
Time frame: 6 months
P.Gingivalis (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error of means (SEM)
Time frame: 3 months
P.Gingivalis (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error of means (SEM)
Time frame: 6 months
P.Intermedia (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
P.Intermedia (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
P.Intermedia (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
P.Intermedia (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
P.Melaninogenica (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
P.Melaninogenica (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for both natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
P.Melaninogenica (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
P.Melaninogenica (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Solobacterium (S.Moorei)(DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Solobacterium (S.Moorei)(DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error (SEM).
Time frame: 6 months
Solobacterium (S.Moorei)(DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
Solobacterium (S.Moorei)(DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Streptococci (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means )SEM).
Time frame: 3 months
Streptococci (DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Streptococci (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means )SEM).
Time frame: 3 months
Streptococci (DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means )SEM).
Time frame: 6 months
T.Forsythia (DNA Probe Analysis)- Natural Teeth
14 microorganisms were identified via DNA probe analysis for both natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
T.Forsythia (DNA Probe Analysis)-Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
T.Forsythia (DNA Probe Analysis)- Dental Implants
14 microorganisms were identified via DNA probe analysis for both Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 3 months
T.Forsythia (DNA Probe Analysis)- Dental Implants
14 microorganisms were identified via DNA probe analysis for both Dental Implants. Data points are least means square (LSM) determined by using baseline adjusted means including standard error of means (SEM).
Time frame: 6 months
Veillonella sp.(DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error (SEM)
Time frame: 3 months
Veillonella sp.(DNA Probe Analysis) - Natural Teeth
14 microorganisms were identified via DNA probe analysis for natural teeth. Data points are least means square (LSM) determined by using baseline adjusted means including standard error (SEM).
Time frame: 6 months
Veillonella sp.(DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error (SEM)
Time frame: 3 months
Veillonella sp.(DNA Probe Analysis) - Dental Implants
14 microorganisms were identified via DNA probe analysis for Dental Implants. Data points are least means square (LSM) detemined by using baseline adjusted means including standard error (SEM)
Time frame: 6 months