Developmental Coordination Disorder and Joint Hypermobility in Childhood: A Narrative Review
Abstract
:1. Introduction
2. Methods
2.1. Search Criteria
2.2. Inclusion Criteria
2.3. Exclusion Criteria
2.4. Data Extraction and Analysis
3. Results
3.1. Studies Assessing Joint Hypermobility and Motor Performance/Coordination by Using the M-ABC
3.2. Studies Assessing Joint Hypermobility and Motor Performance by Using Different Kinds of Evaluations
4. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Ref. | Author, Year | Type of Study | Sample N | Age of Assessment in Months (m) or Years (y) | Joint Hypermobility and Developmental Coordination Disorder | Assessment for DCD/Motor Performance | Assessment for Hypermobility | Others Instruments Used |
---|---|---|---|---|---|---|---|---|
[8] | Kirby, A. et al., 2007 | Case-Control | 54 | Control group: 5–18 years Case group: 9–17 years | Similar clinical features between JHS and DCD | M-ABC | Questionnaire | Questionnaire covering a range of symptoms consistent with a diagnosis of JHS and related autonomic nervous systemic symptoms |
[19] | Romeo et al., 2018 | Longitudinal | 132 | From 12 months to 4 years | Children with joint laxity had lower scores than those without joint laxity on both total scores and subscores of M-ABC-2. | M-ABC-2 | Beighton Score (>4) | Touwen Infant Neurological Examination |
[20] | Adib, N. et al., 2005 | Prospective and Retrospective | 125 | 3–17 years | Children with JHS present Joint pain and coordination problems in 36% | Clinical history | Beighton Score (≥4) | - |
[21] | Moore, N. et al., 2019 | Cross-sectional, case-control, observational | 73 | 6–12 years | No significant difference in the number of children with pDCD in those with and without GJH. | Self-reported questionnaires Children: Physical Activity Questionnaire for older children Parent: Developmental Coordination Disorder Questionnaire | Beighton Score (≥6) | - |
[22] | Wright, K.E. et al., 2020 | Cross-sectional observation | 60 | 6–12 years | Hypermobility failed to explain significant variance in motor competence beyond that explained by neuromuscular performance. | M-ABC-2 | Beighton score (>7) Lower Limb Assessment Score | Resistance Training Skills Battery for Children (RTSBc), 5-repetition maximum (5RM) leg press and Biodex dynamometry |
[23] | Jelsma et al., 2013 | Case-control | Case group: 36 Control group: 352 | Case group 7–10 years Control group 3–16 years | In the DCD group the prevalence of hypermobility was higher and there was a significant negative correlation between the m-ABC total score and the degree of hyperextension of the knees. | M-ABC M-ABC-2 | Beighton score (≥5 for 3–9 years; ≥4 for >10 years) | - |
[24] | Tirosh et al., 1991 | Longitudinal | 59 | 54–60 months | Both gross and fine motor performance were significantly delayed in the group of children with joint hypermobility and motor delay. | Gross motor performance. Parent perception of motor proficiency: | Clinical evaluation of the mobility of joints | - |
[25] | De Boer et al., 2015 | Prospective | 249 | Mean 5.5 years | No significant association was found between GJH and total motor performance. | Bayley Scales of Infant Development, Second Edition M-ABC-2 | Beighton Score (≥4; ≥5; ≥6) | |
[26] | Kirby et al., 2005 | Cohort | 126 | 8–9 years | Children with BJHS present functional difficulties that impact on fine and gross motor function. Children with BJHS and DCD have a similar range of functional difficulties. | M-ABC | Questionnaire | Hypermobility Syndrome Association developmental coordination disorder questionnaire |
[27] | Juul-Kristensen, B. et al., 2009 | Cross-sectional | 349 | (8.40 ± 0.52) years | Static balance and speed reaction tests better in children with GJH The BJHS group did not perform worse than the non-BJHS group in any of the motor competence tests. There was no significant effect of any of the GJH groups in the parameters of PAL; no correlation between number of positive Beighton tests and PAL. | Clinical examination and motor competence tests | Questionnaire Beighton score (>4; >5; >6) Brighton Tests | Questionnaire with 75 items on health and physical activity |
[28] | Remvig, L. et al., 2011 | Cohort | 315 | 10 years | Increased pain or frequency of injures were not related to GJH. Insignificant increased jump height by girls with joint hypermobility. Significant shorter hand reaction time in boys with GJH6. | Motor competence tests: | Beighton score (>4; >5; >6)Brighton Tests | Questionnaire with 75 items on health and physical activity |
[29] | Schubert-Hjalmarsson et al., 2012 | Cross-sectional | Case group: 20 Control group: 24 | 8–15 years (11.2 ± 1.9) 8–15 years (11.4 ± 2) | Balance is decreased in children with HMS compared with healthy controls. | Bruininks-Oseretsky test of motor proficiency (balance) Positive association | Del Mar scale | Frequency of Partic- ipation Questionnaire Physical activity was reported in an activity diary |
[30] | Easton, V. et al., 2014 | Interventional | 119 | 5–16 years | Among the children with BJHS assessed, 32.8% scored ≤15 percentile on the M-ABC (p < 0.001). | M-ABC-2 | Clinical evaluation | Childhood Health Assess- ment Questionnaire |
[31] | Morrison, S.C. et al., 2013 | Interventional | 14 (14/0) | 6–11 years | Children with DCD were at the top end of the scale for lower limb hypermobility. | Not specified | Lower Limb Assessment Score Foot Posture Index | 6-Minute Walk Test GAITRite walkway |
[32] | Celletti, C. et al., 2015 | Observational | 41 | Mean age 8 ± 3 years | Children with DCD and GJH showed a significant excess of frequent falls, easy bruising, motor impersistence. | M-ABC VMI | Beighton score (≥5 for 3–9 years; ≥4 for >10 years) | Linguistic Comprehension Test, Peabody Picture Vocabulary Test, Boston Naming Test, Bus Story Test, and Memoria-Training tests WISC-IV |
[33] | Engelbert et al., 2005 | observational | 56 | 4–12 years | No significant association between the presence of a delay in motor development and joint hypermobility | M-ABC | Bulbena criteria | - |
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Romeo, D.M.; Venezia, I.; De Biase, M.; Ascione, F.; Lala, M.R.; Arcangeli, V.; Mercuri, E.; Brogna, C. Developmental Coordination Disorder and Joint Hypermobility in Childhood: A Narrative Review. Children 2022, 9, 1011. https://doi.org/10.3390/children9071011
Romeo DM, Venezia I, De Biase M, Ascione F, Lala MR, Arcangeli V, Mercuri E, Brogna C. Developmental Coordination Disorder and Joint Hypermobility in Childhood: A Narrative Review. Children. 2022; 9(7):1011. https://doi.org/10.3390/children9071011
Chicago/Turabian StyleRomeo, Domenico M., Ilaria Venezia, Margherita De Biase, Federica Ascione, Maria Rosaria Lala, Valentina Arcangeli, Eugenio Mercuri, and Claudia Brogna. 2022. "Developmental Coordination Disorder and Joint Hypermobility in Childhood: A Narrative Review" Children 9, no. 7: 1011. https://doi.org/10.3390/children9071011
APA StyleRomeo, D. M., Venezia, I., De Biase, M., Ascione, F., Lala, M. R., Arcangeli, V., Mercuri, E., & Brogna, C. (2022). Developmental Coordination Disorder and Joint Hypermobility in Childhood: A Narrative Review. Children, 9(7), 1011. https://doi.org/10.3390/children9071011