scholarly journals Prevalence of Scoliosis in Cerebral Palsy

2021 ◽  
Vol 07 (03) ◽  
pp. 20-25
Author(s):  
Anushree Kailas Gurav ◽  

Background: Significant structural deformity of the spine often accompanies cerebral palsy. Progression of curve will eventually lead to pain, loss of ambulation, sitting balance. The aetiology of scoliosis in CP has yet to be well defined. Objective: The objective of this study was to find incidence of scoliosis in different sub-types of cerebral palsy. Method: A total population of 30 children with cerebral palsy aged 5 to 20 years followed with examination and assessment for scoliosis in a health care setting was analysed. GMFCS level, CP subtype, age at diagnosis, gender dominance of the condition were correlates registered. Effect of 5 factors on progression of the curve and type of scoliosis dominant in cerebral palsy was studied. Results: Of the 30 subjects initially enrolled in the study, 19 of them with scoliosis in which incidence of 28% was found among spastic quadriplegia followed by 24% in diplegia. The risk of scoliosis increased with GMFCS level and age. 22% of children showed moderate scoliosis with respect to scoliosis appearance questionnaire. Conclusions: Scoliosis was most common in the spastic group with the highest incidence in the spastic quadriplegics. There was a definite inverse relationship between the level of ambulation and scoliosis: the higher the level of ambulation the lower the incidence of scoliosis. Moderate scoliosis was found because progression of curve is expected to continue until skeletal maturity.

2018 ◽  
Vol 12 (6) ◽  
pp. 635-639 ◽  
Author(s):  
K. E. Bugler ◽  
M. S. Gaston ◽  
J. E. Robb

Purpose The purpose of this study is to report the number of children from a total population of children with cerebral palsy (CP) in Scotland who had a displaced or dislocated hip at first registration in a national surveillance programme. Methods Migration percentage (MP), laterality, Gross Motor Function Classification System (GMFCS) level, CP subtype, distribution of CP and age were analyzed in 1171 children. Relative risk was calculated with 95% confidence intervals. Hip displacement and dislocation were defined as a MP of 40 to 99 and > 100 respectively. Results Radiographs were available from the first assessment of 1171 children out of 1933 children registered on the system. In all, 2.5% of children had either one or both hips dislocated (29/1171) and dislocation only occurred in children of GMFCS levels IV and V. A total of 10% of children had a MP 40 to 99 in one or both hips (117/1171). An increasing GMFCS level was strongly associated with an abnormal MP. Hip dislocation was unusual in patients under the age of seven years. A MP of 40 to 99 was not seen in children with isolated dystonia. Displacement was more frequent in children with bilateral involvement and dislocation was only seen in spastic and mixed tone groups. Conclusion This data gives an overview of the number of CP children who have hip displacement/dislocation in Scotland and who will possibly require surgery. Level of Evidence I


Medicina ◽  
2021 ◽  
Vol 57 (7) ◽  
pp. 687
Author(s):  
Misoo Lim ◽  
Haneul Lee ◽  
Hyoungwon Lim

Background and Objectives: The purpose of this study was to investigate the correlation between the Korean version of the trunk control measurement scale (K-TCMS) and the selective control assessment of the lower extremity (SCALE). Through this, we tried to find out the effect of proximal stabilization on distal motor development. Materials and Methods: Fifty-one children with gross motor function classification system level I–III, diagnosed with cerebral palsy (CP), were studied. The K-TCMS was used to evaluate the body control ability of the children. SCALE was used to quantify selective voluntary motor control (SVMC). Results: Analysis of SCALE and K-TCMS showed a significant positive correlation in all items. Multiple regression analysis showed that the SCALE score decreased as age increased, and that it increased as the static sitting balance ability score and the dynamic sitting balance ability score of the K-TCMS increased significantly (p < 0.05). Conclusions: In children with cerebral palsy, there was a close correlation between trunk control and selective voluntary motor control of the lower extremities. Therefore, when trying to improve the lower extremity function of a child with cerebral palsy, a trunk control intervention should be considered.


2020 ◽  
Vol 5 (1) ◽  
pp. 1-12
Author(s):  
Bambang Trisnowiyanto

Background:  The most common disorder or disability in childhood is cerebral palsy, obtained during the antenatal, perinatal or early postnatal period. Cerebral palsy is a non-progressive injury or brain lesion with very variable clinical manifestations. children with cerebral palsy have impaired movement, ability levels and functional limitations and affected body parts. Therefore, to find out the level of independence in children with cerebral palsy, it is necessary to have an examination carried out by health workers, especially physiotherapy. In this case, an examination using the Gross Motor Function Classification System (GMFCS). The purpose of this study was to determine the degree of independence of children with cerebral palsy in several regions in Java and Sumatra. Methods: A total of 315 children with cerebral palsy (mean ± SD)  participated in this cross-sectional study design. The research was conducted in March-June 2019. GMFCS data was collected from children with cerebral palsy in the parent community of cerebral palsy in 10 cities. The Kolmogorov-Smirnov test used for data normality test. Result: Overall research subjects from 10 cerebral palsy communities with a total sample of 315 children, most cerebral palsy with GMFCS level 4 as many as 117 children (37.1%), then GMFCS level 3 as many as 84 children (26.7%), GMFCS level 5 is 67 children (21.3%), level 2 GMFCS is 24 children (7.6%), and at least children with level 1 GMFCS are 23 children (7.3%). Conclusion: The conclusion is from a total of 315 children with cerebral palsy, the level of Indonesian children's independence based on GMFCS most of them are less independent.


Author(s):  
Robert M. Kay ◽  
Kristan Pierz ◽  
James McCarthy ◽  
H. Kerr Graham ◽  
Henry Chambers ◽  
...  

Purpose The purpose of this study was for an international panel of experts to establish consensus indications for distal rectus femoris surgery in children with cerebral palsy (CP) using a modified Delphi method. Methods The panel used a five-level Likert scale to record agreement or disagreement with 33 statements regarding distal rectus femoris surgery. The panel responded to statements regarding general characteristics, clinical indications, computerized gait data, intraoperative techniques and outcome measures. Consensus was defined as at least 80% of responses being in the highest or lowest two of the five Likert ratings, and general agreement as 60% to 79% falling into the highest or lowest two ratings. There was no agreement if neither threshold was reached. Results Consensus or general agreement was reached for 17 of 33 statements (52%). There was general consensus that distal rectus femoris surgery is better for stiff knee gait than is proximal rectus femoris release. There was no consensus about whether the results of distal rectus femoris release were comparable to those following distal rectus femoris transfer. Gross Motor Function Classification System (GMFCS) level was an important factor for the panel, with the best outcomes expected in children functioning at GMFCS levels I and II. The panel also reached consensus that they do distal rectus femoris surgery less frequently than earlier in their careers, in large part reflecting the narrowing of indications for this surgery over the last decade. Conclusion This study can help paediatric orthopaedic surgeons optimize decision-making for, and outcomes of, distal rectus femoris surgery in children with CP. Level of evidence V


2021 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Karina A. Zapata ◽  
Charter L. Rushing ◽  
Mauricio R. Delgado ◽  
Chanhee Jo

2006 ◽  
Vol 86 (8) ◽  
pp. 1107-1117 ◽  
Author(s):  
Olaf Verschuren ◽  
Tim Takken ◽  
Marjolijn Ketelaar ◽  
Jan Willem Gorter ◽  
Paul JM Helders

Abstract Background and Purpose. The purpose of this study was to examine the reliability and validity of data obtained with 2 newly developed shuttle run tests (SRT-I and SRT-II) to measure aerobic power in children with cerebral palsy (CP) who were classified at level I or II on the Gross Motor Function Classification System (GMFCS). The SRT-I was developed for children at GMFCS level I, and the SRT-II was developed for children at GMFCS level II. Subjects. Twenty-five children and adolescents with CP (10 female, 15 male; mean age=11.9 years, SD=2.9), classified at GMFCS level I (n=14) or level II (n=11), participated in the study. Methods. To assess test-retest reliability of data for the 10-m shuttle run tests, the subjects performed the same test within 2 weeks. To examine validity, the shuttle run tests were compared with a GMFCS level–based treadmill test designed to measure peak oxygen uptake. Results. Statistical analyses revealed test-retest reliability for exercise time (number of levels completed) (intraclass correlation coefficients of .97 for the SRT-I and .99 for the SRT-II) and reliability for peak heart rate attained during the final level (intraclass correlation coefficients of .87 for the SRT-I and .94 for the SRT-II). High correlations were found for the relationship between data for both shuttle run tests and data for the treadmill test (r=.96 for both). Discussion and Conclusion. The results suggest that both 10-m shuttle run tests yield reliable and valid data. Moreover, the shuttle run tests have advantages over a treadmill test for children with CP who are able to walk and run (GMFCS level I or II). [Verschuren O, Takken T, Ketelaar M, et al. Reliability and validity of data for 2 newly developed shuttle run tests in children with cerebral palsy. Phys Ther. 2006;86:1107–1117.]


2019 ◽  
Vol 36 (9) ◽  
pp. 1935-1943
Author(s):  
Qijia Zhan ◽  
Xidan Yu ◽  
Wenbin Jiang ◽  
Min Shen ◽  
Shuyun Jiang ◽  
...  

Abstract Purpose Our aim was to test whether the newly modified rhizotomy protocol which could be effectively used to guide single-level approach selective dorsal rhizotomy (SL-SDR) to treat spastic hemiplegic cases by mainly releasing those spastic muscles (target muscles) marked pre-operatively in their lower limbs was still applicable in spastic quadriplegic or diplegic cerebral palsy (CP) cases in pediatric population. Methods In the current study, we retrospectively conducted a cohort review of cases younger than 14 years of age diagnosed with spastic quadriplegic or diplegic CP who undergone our modified protocol-guided SL-SDR in the Department of Neurosurgery, Children’s Hospital of Shanghai since July 2016 to November 2017 with at least 12 months post-op intensive rehabilitation program (pre-op GMFCS level-based). Clinical data including demographics, intra-operative EMG responses interpretation, and relevant assessment of included cases were taken from the database. Inclusion and exclusion criteria were set for the selection of patients in the current study. Muscle tone (modified Ashworth scale) and strength of those spastic muscles (muscle strength grading scale), range of motion (ROM) of those joints involved, the level of Gross Motor Function Classification System (GMFCS), and Gross Motor Function Measure 66 items (GMFM-66) score of those cases were our focus. Results A total of 86 eligible cases were included in our study (62 boys). Among these patients, 61.6% were quadriplegic. Pre-operatively, almost 2/3 of our cases were with GMFCS levels II and III. Mean age at the time of surgery in these cases was 6.2 (3.5–12) years. Pre-op assessment marked 582 target muscles in these patients. Numbers of nerve rootlets tested during SDR procedure were between 52 and 84 across our cases, with a mean of 66.5 ± 6.7/case. Among those tested (5721 in 86 cases), 47.9% (2740) were identified as lower limb-related sensory rootlets. Our protocol successfully differentiated sensory rootlets which were considered to be associated with spasticity of target muscles across all our 86 cases (ranged from 3 to 21). Based on our protocol, 871 dorsal nerve rootlets were sectioned 50%, and 78 were cut 75%. Muscle tone of those target muscles reduced significantly right after SL-SDR procedure (3 weeks post- vs. pre-op, 1.7 ± 0.5 vs. 2.6 ± 0.7). After an intensive rehabilitation program for 19.9 ± 6.0 months, muscle tone continued to decrease to 1.4 ± 0.5. With the reduction of muscle tone, strength of those target muscles in our cases improved dramatically with statistical significance achieved (3.9 ± 1.0 at the time of last follow-up vs. 3.3 ± 0.8 pre-op), and as well as ROM. Increase in GMFCS level and GMFM-66 score was observed at the time of last follow-up with a mean of 0.4 ± 0.6 and 6.1 ± 3.2, respectively, when compared with that at pre-op. In 81 cases with their pre-op GMFCS levels II to V, 27 (33.3%) presented improvement with regard to GMFCS level upgrade, among which 4 (4.9%) even upgraded over 2 levels. Better results with regard to upgrading in level of GMFCS were observed in cases with pre-op levels II and III when compared with those with levels IV and V (24/57 vs. 3/24). Upgrading percentage in cases younger than 6 years at surgery was significantly greater than in those older (23/56 vs. 4/25). Cases with their pre-op GMFM-66 score ≥ 50 had greater score increase of GMFM-66 when compared with those less (7.1 ± 3.4 vs. 5.1 ± 2.8). In the meanwhile, better score improvement was revealed in cases when SDR performed at younger age (6.9 ± 3.3 in case ≤ 6 years vs. 4.7 ± 2.7 in case > 6 years). No permanent surgery-related complications were recorded in the current study. Conclusion SL-SDR when guided by our newly modified rhizotomy protocol was still feasible to treat pediatric CP cases with spastic quadriplegia and diplegia. Cases in this condition could benefit from such a procedure when followed by our intensive rehabilitation program with regard to their motor function.


Sign in / Sign up

Export Citation Format

Share Document