School dental screening programmes for oral health.
Journal
The Cochrane database of systematic reviews
ISSN: 1469-493X
Titre abrégé: Cochrane Database Syst Rev
Pays: England
ID NLM: 100909747
Informations de publication
Date de publication:
27 07 2022
27 07 2022
Historique:
entrez:
27
7
2022
pubmed:
28
7
2022
medline:
30
7
2022
Statut:
epublish
Résumé
In school dental screening, a dental health professional visually inspects children's oral cavities in a school setting and provides information for parents on their child's current oral health status and treatment needs. Screening at school aims to identify potential problems before symptomatic disease presentation, hence prompting preventive and therapeutic oral health care for the children. This review evaluates the effectiveness of school dental screening for improving oral health status. It is the second update of a review originally published in December 2017 and first updated in August 2019. To assess the effectiveness of school dental screening programmes on overall oral health status and use of dental services. An information specialist searched four bibliographic databases up to 15 October 2021 and used additional search methods to identify published, unpublished and ongoing studies. We included randomised controlled trials (RCTs; cluster- or individually randomised) that evaluated school dental screening compared with no intervention, or that compared two different types of screening. We used standard methodological procedures expected by Cochrane. The previous version of this review included seven RCTs, and our updated search identified one additional trial. Therefore, this update included eight trials (six cluster-RCTs) with 21,290 children aged 4 to 15 years. Four trials were conducted in the UK, two in India, one in the USA and one in Saudi Arabia. We rated two trials at low risk of bias, three at high risk of bias and three at unclear risk of bias. No trials had long-term follow-up to ascertain the lasting effects of school dental screening. The trials assessed outcomes at 3 to 11 months of follow-up. No trials reported the proportion of children with treated or untreated oral diseases other than caries. Neither did they report on cost-effectiveness or adverse events. Four trials evaluated traditional screening versus no screening. We performed a meta-analysis for the outcome 'dental attendance' and found an inconclusive result with high heterogeneity. The heterogeneity was partly due to study design (three cluster-RCTs and one individually randomised trial). Due to this inconsistency, and unclear risk of bias, we downgraded the evidence to very low certainty, and we are unable to draw conclusions about this comparison. Two cluster-RCTs (both four-arm trials) evaluated criteria-based screening versus no screening, suggesting a possible small benefit (pooled risk ratio (RR) 1.07, 95% confidence interval (CI) 0.99 to 1.16; low-certainty evidence). There was no evidence of a difference when comparing criteria-based screening to traditional screening (RR 1.01, 95% CI 0.94 to 1.08; very low-certainty evidence). One trial compared a specific (personalised) referral letter to a non-specific letter. Results favoured the specific referral letter for increasing attendance at general dentist services (RR 1.39, 95% CI 1.09 to 1.77; very low-certainty evidence) and attendance at specialist orthodontist services (RR 1.90, 95% CI 1.18 to 3.06; very low-certainty evidence). One trial compared screening supplemented with motivation to screening alone. Dental attendance was more likely after screening supplemented with motivation (RR 3.08, 95% CI 2.57 to 3.71; very low-certainty evidence). One trial compared referral to a specific dental treatment facility with advice to attend a dentist. There was no evidence of a difference in dental attendance between these two referrals (RR 0.91, 95% CI 0.34 to 2.47; very low-certainty evidence). Only one trial reported the proportion of children with treated dental caries. This trial evaluated a post-screening referral letter based on the common-sense model of self-regulation (a theoretical framework that explains how people understand and respond to threats to their health), with or without a dental information guide, compared to a standard referral letter. The findings were inconclusive. Due to high risk of bias, indirectness and imprecision, we assessed the evidence as very low certainty. The evidence is insufficient to draw conclusions about whether there is a role for school dental screening in improving dental attendance. We are uncertain whether traditional screening is better than no screening (very low-certainty evidence). Criteria-based screening may improve dental attendance when compared to no screening (low-certainty evidence). However, when compared to traditional screening, there is no evidence of a difference in dental attendance (very low-certainty evidence). For children requiring treatment, personalised or specific referral letters may improve dental attendance when compared to non-specific referral letters (very low-certainty evidence). Screening supplemented with motivation (oral health education and offer of free treatment) may improve dental attendance in comparison to screening alone (very low-certainty evidence). We are uncertain whether a referral letter based on the 'common-sense model of self-regulation' is better than a standard referral letter (very low-certainty evidence) or whether specific referral to a dental treatment facility is better than a generic advice letter to visit the dentist (very low-certainty evidence). The trials included in this review evaluated effects of school dental screening in the short term. None of them evaluated its effectiveness for improving oral health or addressed possible adverse effects or costs.
Sections du résumé
BACKGROUND
In school dental screening, a dental health professional visually inspects children's oral cavities in a school setting and provides information for parents on their child's current oral health status and treatment needs. Screening at school aims to identify potential problems before symptomatic disease presentation, hence prompting preventive and therapeutic oral health care for the children. This review evaluates the effectiveness of school dental screening for improving oral health status. It is the second update of a review originally published in December 2017 and first updated in August 2019.
OBJECTIVES
To assess the effectiveness of school dental screening programmes on overall oral health status and use of dental services.
SEARCH METHODS
An information specialist searched four bibliographic databases up to 15 October 2021 and used additional search methods to identify published, unpublished and ongoing studies.
SELECTION CRITERIA
We included randomised controlled trials (RCTs; cluster- or individually randomised) that evaluated school dental screening compared with no intervention, or that compared two different types of screening.
DATA COLLECTION AND ANALYSIS
We used standard methodological procedures expected by Cochrane.
MAIN RESULTS
The previous version of this review included seven RCTs, and our updated search identified one additional trial. Therefore, this update included eight trials (six cluster-RCTs) with 21,290 children aged 4 to 15 years. Four trials were conducted in the UK, two in India, one in the USA and one in Saudi Arabia. We rated two trials at low risk of bias, three at high risk of bias and three at unclear risk of bias. No trials had long-term follow-up to ascertain the lasting effects of school dental screening. The trials assessed outcomes at 3 to 11 months of follow-up. No trials reported the proportion of children with treated or untreated oral diseases other than caries. Neither did they report on cost-effectiveness or adverse events. Four trials evaluated traditional screening versus no screening. We performed a meta-analysis for the outcome 'dental attendance' and found an inconclusive result with high heterogeneity. The heterogeneity was partly due to study design (three cluster-RCTs and one individually randomised trial). Due to this inconsistency, and unclear risk of bias, we downgraded the evidence to very low certainty, and we are unable to draw conclusions about this comparison. Two cluster-RCTs (both four-arm trials) evaluated criteria-based screening versus no screening, suggesting a possible small benefit (pooled risk ratio (RR) 1.07, 95% confidence interval (CI) 0.99 to 1.16; low-certainty evidence). There was no evidence of a difference when comparing criteria-based screening to traditional screening (RR 1.01, 95% CI 0.94 to 1.08; very low-certainty evidence). One trial compared a specific (personalised) referral letter to a non-specific letter. Results favoured the specific referral letter for increasing attendance at general dentist services (RR 1.39, 95% CI 1.09 to 1.77; very low-certainty evidence) and attendance at specialist orthodontist services (RR 1.90, 95% CI 1.18 to 3.06; very low-certainty evidence). One trial compared screening supplemented with motivation to screening alone. Dental attendance was more likely after screening supplemented with motivation (RR 3.08, 95% CI 2.57 to 3.71; very low-certainty evidence). One trial compared referral to a specific dental treatment facility with advice to attend a dentist. There was no evidence of a difference in dental attendance between these two referrals (RR 0.91, 95% CI 0.34 to 2.47; very low-certainty evidence). Only one trial reported the proportion of children with treated dental caries. This trial evaluated a post-screening referral letter based on the common-sense model of self-regulation (a theoretical framework that explains how people understand and respond to threats to their health), with or without a dental information guide, compared to a standard referral letter. The findings were inconclusive. Due to high risk of bias, indirectness and imprecision, we assessed the evidence as very low certainty.
AUTHORS' CONCLUSIONS
The evidence is insufficient to draw conclusions about whether there is a role for school dental screening in improving dental attendance. We are uncertain whether traditional screening is better than no screening (very low-certainty evidence). Criteria-based screening may improve dental attendance when compared to no screening (low-certainty evidence). However, when compared to traditional screening, there is no evidence of a difference in dental attendance (very low-certainty evidence). For children requiring treatment, personalised or specific referral letters may improve dental attendance when compared to non-specific referral letters (very low-certainty evidence). Screening supplemented with motivation (oral health education and offer of free treatment) may improve dental attendance in comparison to screening alone (very low-certainty evidence). We are uncertain whether a referral letter based on the 'common-sense model of self-regulation' is better than a standard referral letter (very low-certainty evidence) or whether specific referral to a dental treatment facility is better than a generic advice letter to visit the dentist (very low-certainty evidence). The trials included in this review evaluated effects of school dental screening in the short term. None of them evaluated its effectiveness for improving oral health or addressed possible adverse effects or costs.
Identifiants
pubmed: 35894680
doi: 10.1002/14651858.CD012595.pub4
pmc: PMC9327802
doi:
Banques de données
ClinicalTrials.gov
['NCT03345680']
Types de publication
Journal Article
Meta-Analysis
Review
Systematic Review
Langues
eng
Sous-ensembles de citation
IM
Pagination
CD012595Commentaires et corrections
Type : UpdateOf
Informations de copyright
Copyright © 2022 The Cochrane Collaboration. Published by John Wiley & Sons, Ltd.
Références
J Family Med Prim Care. 2020 Feb 28;9(2):819-825
pubmed: 32318427
JDR Clin Trans Res. 2019 Oct;4(4):323-332
pubmed: 30931720
J Dent Educ. 2005 Mar;69(3):382-6
pubmed: 15749950
MMWR Suppl. 2014 Sep 12;63(2):54-60
pubmed: 25208259
Evid Based Dent. 2007;8(1):5-6
pubmed: 17380170
EClinicalMedicine. 2018 Jul 17;1:3-4
pubmed: 31193614
J Dent. 2017 Mar;58:1-10
pubmed: 27884719
Am J Dent. 2009 Feb;22(1):3-8
pubmed: 19281105
Ambul Pediatr. 2002 Mar-Apr;2(2 Suppl):141-7
pubmed: 11950385
J Investig Clin Dent. 2011 Nov;2(4):259-67
pubmed: 25426897
J Dent Res. 2008 Oct;87(10):896-9
pubmed: 18809742
J Clin Epidemiol. 2011 Apr;64(4):401-6
pubmed: 21208779
Cochrane Database Syst Rev. 2019 Aug 08;8:CD012595
pubmed: 31425627
J Dent Res. 2015 Oct;94(10):1355-61
pubmed: 26318590
J Public Health Dent. 2003 Spring;63(2):126-8
pubmed: 12816144
J Appl Behav Anal. 1982 Fall;15(3):353-62
pubmed: 6815153
Community Dent Oral Epidemiol. 2001 Apr;29(2):143-9
pubmed: 11300174
BMC Oral Health. 2016 Sep 02;16(1):91
pubmed: 27590299
BMC Oral Health. 2009 Mar 12;9:8
pubmed: 19284611
Community Dent Oral Epidemiol. 2003 Dec;31 Suppl 1:3-23
pubmed: 15015736
Br Dent J. 2006 Jun 24;200(12):687-90; discussion 673
pubmed: 16799446
Oral Health Prev Dent. 2015;13(6):501-8
pubmed: 25386632
J Public Health Dent. 2004 Spring;64(2):63-70
pubmed: 15180073
Br Dent J. 1995 May 6;178(9):322
pubmed: 7766449
Saudi Dent J. 2010 Jan;22(1):19-25
pubmed: 23960475
Community Dent Health. 2006 Dec;23(4):236-8
pubmed: 17194071
Acta Odontol Scand. 2013 Mar;71(2):333-42
pubmed: 22563991
Community Dent Health. 1992 Dec;9(4):361-8
pubmed: 1486524
Med J Islam Repub Iran. 2015 Jul 10;29(4):234
pubmed: 26793672
Br Dent J. 1999 Feb 13;186(3):135-7
pubmed: 10101910
Osterr Z Stomatol. 1973 Jul-Aug;70(7):270-3
pubmed: 4517022
Community Dent Health. 1995 Sep;12(3):128-32
pubmed: 7584578
Community Dent Health. 1986 Sep;3(3):221-6
pubmed: 3463382
Indian J Med Ethics. 2016 Jul-Sep;1(3):171-6
pubmed: 27474698
J Med Screen. 1999;6(3):163-4
pubmed: 10572849
Community Dent Oral Epidemiol. 2005 Oct;33(5):333-40
pubmed: 16128792
J Dent Res. 2006 Oct;85(10):924-8
pubmed: 16998133
Pediatrics. 2000 Apr;105(4 Pt 2):989-97
pubmed: 10742361
BMJ. 2012 Sep 04;345:e5661
pubmed: 22951546
Paediatr Child Health. 2013 Jan;18(1):37-50
pubmed: 24381493
J Public Health Dent. 2012 Winter;72(1):45-52
pubmed: 22316214
Community Dent Health. 2000 Dec;17(4):207-9
pubmed: 11191191
Pediatr Dent. 2008-2009;30(7 Suppl):26-7
pubmed: 19216375
Br Dent J. 2006 May 13;200(9):509-12; discussion 501
pubmed: 16703094
Br Dent J. 1999 Jan 9;186(1):37-40
pubmed: 10028741
Indian J Dent Res. 2019 Jan-Feb;30(1):117-124
pubmed: 30900669
J Dent Child (Chic). 2012 Sep-Dec;79(3):154-8
pubmed: 23433618
Med Oral Patol Oral Cir Bucal. 2013 Mar 01;18(2):e187-93
pubmed: 23229271
Am J Prev Med. 2004 May;26(4):315-25
pubmed: 15110059
Cochrane Database Syst Rev. 2017 Dec 21;12:CD012595
pubmed: 29267989
Community Dent Oral Epidemiol. 1975 Sep;3(5):237-43
pubmed: 1058070
Community Dent Oral Epidemiol. 1994 Oct;22(5 Pt 1):323-6
pubmed: 7813186
BMC Med Res Methodol. 2013 Sep 04;13:108
pubmed: 24006895
Int Dent J. 2004 Feb;54(1):33-41
pubmed: 15005471
JDR Clin Trans Res. 2017 Jul;2(3):214-222
pubmed: 30938638
Caries Res. 2021;55(6):577-584
pubmed: 34551412
JAMA. 2019 Apr 23;321(16):1610-1620
pubmed: 31012939
BMJ. 2003 Sep 6;327(7414):557-60
pubmed: 12958120