Comorbid disorders in children with cerebral palsy and their assessment in early childhood: current state of the problem
- Authors: Gaynetdinova D.D.1, Yuldashev A.S.1, Afandieva L.Z.1
-
Affiliations:
- Kazan State Medical University, Ministry of Health of Russia
- Issue: Vol 16, No 1 (2026)
- Pages: 50-59
- Section: LECTURES AND REVIEWS
- Published: 19.06.2026
- URL: https://nmb.abvpress.ru/jour/article/view/673
- DOI: https://doi.org/10.17650/2222-8721-2026-16-1-50-59
- ID: 673
Cite item
Abstract
The relevance of this work is determined by the fact that comorbid disorders in children with cerebral palsy – such as pain, cognitive impairment, epilepsy, dysphagia, sensory deficits and other associated conditions – shape a complex clinical profile already in early childhood. These conditions, rather than motor impairment alone, become key barriers to effective rehabilitation, social participation and maintenance of an acceptable quality of life. Despite advances in rehabilitation medicine, delayed recognition and management of comorbidities remain a major cause of persistent disability, underscoring the need to systematically summarize current evidence. The present analysis not only describes the characteristics of the most frequent comorbid conditions, but also identifies several key patterns. Pain in children with cerebral palsy is shown to be polymorphic and frequently chronic, and its assessment in early childhood requires the use of specialized scales. A clear relationship is demonstrated between the severity of motor impairment and the risk of cognitive decline, along with a high prevalence of speech disorders, among which dysarthria predominates. Particular attention is given to epilepsy and dysphagia, which directly threaten survival through malnutrition and respiratory complications. The main value of this review lies in the critical synthesis of data on diagnostic approaches adapted for infants, nonverbal children and those with severe motor limitations, as well as in the discussion of how comorbidity shapes the clinical course of cerebral palsy and why the focus must shift towards the earliest possible multidisciplinary management, starting from the time of diagnosis, in order to preserve rehabilitation potential and improve quality of life in this vulnerable population.
Full Text
About the authors
D. D. Gaynetdinova
Kazan State Medical University, Ministry of Health of Russia
Author for correspondence.
Email: anetdina@mail.ru
Russian Federation, 49 Butlerova St., Kazan 420012, Republic of Tatarstan
A. Sh. Yuldashev
Kazan State Medical University, Ministry of Health of Russia
Email: anetdina@mail.ru
ORCID iD: 0009-0006-6748-5323
Russian Federation, 49 Butlerova St., Kazan 420012, Republic of Tatarstan
L. Z. Afandieva
Kazan State Medical University, Ministry of Health of Russia
Email: anetdina@mail.ru
ORCID iD: 0000-0002-8752-4071
Russian Federation, 49 Butlerova St., Kazan 420012, Republic of Tatarstan
References
- Shalkevich L.V. Infantile cerebral palsy: the use of modern classification systems. Meditsinskie novosti. Aktualnye problemy nevrologii v Belarusi = Medical News. Current Problems of Neurology in Belarus 2021;(1):19–23. Available at: https://cyberleninka.ru/article/n/detskiy-tserebralnyy-paralich-ispolzovanie-sovremennyh-klassifikatsionnyh-sistem. (In Russ.).
- Harvey A., Smith N., Smith M. et al. Chronic pain in children and young people with cerebral palsy: a narrative review of challenges, advances, and future directions. BMC Med 2024;22:238. doi: 10.1186/s12916-024-03458-0
- Nemkova S.A., Boldyrev V.G. Complex diagnosis and treatment of cognitive impairments in cerebral palsy. Zhurnal nevrologii i psikhiatrii im. S.S. Korsakova = Journal of Neurology and Psychiatry named after S.S. Korsakov 2022;122(2):51–61. (In Russ.). doi: 10.17116/jnevro202212209251
- Ajgaonkar S., Shetty A.A. Assessment of quality of life in children with cerebral palsy: a parent-reported questionnaire-based study. J Oral Biol Craniofac Res 2025;15(6):1485–9.
- Vadivelan K., Sekar P. Assessment of proxy quality of life in children with cerebral palsy: a cross-sectional study. Pediatr Pol 2020;95(4):211–5.
- Nurgazizova A.K. Origin, development and modern interpretation of the concepts of “comorbidity” and “polymorbidity”. Kazanskiy meditsinskiy zhurnal = Kazan Medical Journal 2014;95(2):292–6. Available at: https://cyberleninka.ru/article/n/proishozhdenie-razvitie-i-sovremennaya-traktovka-ponyatiy-komorbidnost-i-polimorbidnost. (In Russ.).
- Hollung S.J., Bakken I.J., Vik T. et al. Comorbidities in cerebral palsy: a patient registry study. Dev Med Child Neurol 2020;62(1):97–103. doi: 10.1111/dmcn.14307
- Gong C., Liu X., Fang L. et al. Prevalence of cerebral palsy comorbidities in China: a systematic review and meta-analysis. Front Neurol 2023;14:1233700. doi: 10.3389/fneur.2023.1233700
- Vinkel M.N., Rackauskaite G., Finnerup N.B. Classification of pain in children with cerebral palsy. Dev Med Child Neurol 2022;64(4):447–52. doi: 10.1111/dmcn.15102
- Kurenkov A.L., Bursagova B.I., Artemenko A.R. Assessment of pain associated with spasticity in cerebral palsy and the effectiveness of its treatment with incobotulinumtoxin A (literature review). Nauchno-prakticheskaya revmatologiya = Scientific and Practical Rheumatology 2024;16(1):94–101. (In Russ.). doi: 10.14412/2074-2711-2024-1-94-101
- Blackman J.A., Svensson C.I., Marchand S. Pathophysiology of chronic pain in cerebral palsy: implications for pharmacological treatment and research. Dev Med Child Neurol 2020;60(7):687–94. doi: 10.1111/dmcn.13930
- Diordiev A.V., Ajzenberg V.L. Acute and chronic pain in nonverbal children with neurological disorders. Possibilities of diagnosis and treatment. Systematic review. Ann Crit Care 2019;(1):36–44. doi: 10.21320/1818-474X-2019-1-36-44
- Heinen F., Bonfert M., Kaňovský P. et al. Spasticity-related pain in children/adolescents with cerebral palsy. Part 1: Prevalence and clinical characteristics from a pooled analysis. J Pediatr Rehabil Med 2022;15(1):129–43. doi: 10.3233/PRM-220011
- Bischoff L.A., Tscherter A., Hunziker S. et al. Pain in children and adolescents with cerebral palsy: a cross-sectional survey study. Neuropediatrics 2025;56(1):43–50. doi: 10.1055/a-2474-6503
- McKinnon C.T., White J.H., Morgan P.E. et al. The lived experience of chronic pain and dyskinesia in children and adolescents with cerebral palsy. BMC Pediatr 2020;20(1):125. doi: 10.1186/s12887-020-2011-8
- Ballester-Plané J., Laporta-Hoyos O., Macaya A. et al. Cognitive functioning in dyskinetic cerebral palsy: its relation to motor function, communication and epilepsy. Eur J Paediatr Neurol 2018;22(1):102–12. doi: 10.1016/j.ejpn.2017.10.006
- Hicks C.L., von Baeyer C.L., Spafford P.A. et al. The Faces Pain Scale – Revised: toward a common metric in pediatric pain measurement. Pain 2001;93(2):173–83. doi: 10.1016/S0304-3959(01)00314-1
- Von Baeyer C.L., Lin V., Seidman L.C. et al. Pain charts (body maps or manikins) in assessment of the location of pediatric pain. Pain Manag 2011;1(1):61–8. doi: 10.2217/pmt.10.2
- Cirit T., Saraçoğlu I. Pain phenotypes in caregivers of children with cerebral palsy. Ağrı 2024;36(4):257–65. doi: 10.14744/agri.2024.28999
- Malviya S., Voepel-Lewis T., Burke C. et al. The revised FLACC observational pain tool: improved reliability and validity for pain assessment in children with cognitive impairment. Paediatr Anaesth 2006;16(3):258–65. doi: 10.1111/j.1460-9592.2005.01773.x
- Garra G., Singer A.J., Domingo A. The Wong–Baker Pain FACES Scale measures pain, not fear. Pediatr Emerg Care 2013;29(1):17–20. doi: 10.1097/pec.0b013e31827b2299
- Darbari D.S., Brandow A.M. Pain-measurement tools in sickle cell disease: where are we now? Hematology Am Soc Hematol Educ Program 2017;2017(1):534–41. doi: 10.1182/asheducation-2017.1.534
- Stadskleiv K. Cognitive functioning in children with cerebral palsy. Dev Med Child Neurol 2020;62(3):283–9. doi: 10.1111/dmcn.14463
- Mukhambetova G.A., Varzina T.V. Comprehensive diagnosis and correction of cognitive functions in children with spastic diplegia. Vestnik Kazahskogo natsionalnogo meditsinskogo universiteta im. S.D. Asfendiyarova = Bulletin of the Kazakh National Medical University named after S.D. Asfendiyarov 2021;(4):320–4. (In Russ.). doi: 10.53065/kaznmu.2021.94.81.055
- Al-Nemr A., Abdelazeim F. Relationship of cognitive functions and gross motor abilities in children with spastic diplegic cerebral palsy. Appl Neuropsychol Child 2018;7(3):268–76. doi: 10.1080/21622965.2017.1312402
- Korsakova N.K., Roshchina I.F. On the history of A.R. Luria’s concept of three structural and functional blocks of the human brain. Meditsinskaya psikhologiya v Rossii = Medical Psychology in Russia 2021;13(2):1–8. (In Russ.). doi: 10.24412/2219-8245-2021-2-3
- Wilma C.M. Intelligence testing. Encycl Soc Meas 2005;2:307–14. doi: 10.1016/B0-12-369398-5/00083-9
- Kozlovskaya G.V., Klyushnik T., Ivanov M.V. Screening the risk of mental development disorders in young children (data for 9 regions of Russia in 2017–2019). Zhurnal nevrologii i psikhiatrii im. S.S. Korsakova = Journal of Neurology and Psychiatry named after S.S. Korsakov 2020;120(11):79–86. (In Russ.). doi: 10.17116/jnevro202012011179
- Amod Z., Cockcroft K., Soellaart B. Use of the 1996 Griffiths Mental Development Scales for infants: a pilot study with a Black, South African sample. J Child Adolesc Ment Health 2007;19(2):123–30. doi: 10.2989/17280580709486647
- Green E.M., Stroud L., Marx C. et al. Child development assessment: practitioner input in the revision for Griffiths III. Child Care Health Dev 2020;46(6):682–91. doi: 10.1111/cch.12796
- Lecciso F., Martis C., Levante A. The Use of Griffiths III in the appraisal of the developmental profile in autism: a systematic search and review. Brain Sci 2025;15(5):1–23. doi: 10.3390/brainsci15050506
- Alekhina A.D., Podorova L.A. The study of the mental development of primary school children with cerebral palsy (cerebral palsy) to optimize nootropic pharmacotherapy. Nauka o zdorovye = Science of Health 2019;(2):836. Available at: https://cyberleninka.ru/article/n/izuchenie-osobennostey-psihicheskogo-razvitiya-detey-mladshego-shkolnogo-vozrasta-s-detskim-tserebralnym-paralichom-dtsp-dlya. (In Russ.).
- Mei C., Reilly S., Bickerton M. et al. Speech in children with cerebral palsy. Dev Med Child Neurol 2020;62(12):1374–82. doi: 10.1111/dmcn.14592
- Berk E., Üzümcüoğlu R., İnceoğlu F. et al. Correlation of neuroanatomical structures related to speech in cerebral palsy patients aged 0–17: a retrospective MRI study. Children 2025;12(2):249. doi: 10.3390/children12020249
- Garg N. A brief study on the speech assessment of the children suffering from cerebral palsy. GIPAN 2025;7(1):10–4. doi: 10.3126/gipan.v7i1.84239
- Zavitrenko D., Rizhniak R., Snisarenko I. et al. Specifics of speech development of children with cerebral palsy. IJCSNS 2022;22(11):157–62. doi: 10.22937/IJCSNS.2022.22.11.22
- Nemkova S.A. Speech disorders in cerebral palsy: diagnosis and correction. Zhurnal nevrologii i psikhiatrii im. S.S. Korsakova = Journal of Neurology and Psychiatry named after S.S. Korsakov 2019;119(5):112–9. (In Russ.). doi: 10.17116/jnevro2019119051112
- Korkalainen J., McCabe P., Smidt A. et al. Motor speech interventions for children with cerebral palsy: a systematic review. J Speech Lang Hear Res 2023;66(1):110–25. doi: 10.1044/2022_JSLHR-22-00375
- Yagunova K.V., Gaynetdinova D.D. Speech disorders in children of early and preschool age. Rossiyskiy vestnik perinatologii i pediatrii = Russian Bulletin of Perinatology and Pediatrics 2018;63(6):23–30. (In Russ.). doi: 10.21508/1027-4065-2018-63-5-23-30
- Iuzzini-Seigel J., Allison K.M., Stoeckel R. A tool for differential diagnosis of childhood apraxia of speech and dysarthria in children: a tutorial. Lang Speech Hear Serv Sch 2022;53(4):926–46. doi: 10.1044/2022_LSHSS-21-00164
- Hidecker M.J., Paneth N., Rosenbaum P.L. et al. Developing and validating the Communication Function Classification System for individuals with cerebral palsy. Dev Med Child Neurol 2011;53(8):704–10. doi: 10.1111/j.1469-8749.2011.03996.x
- Pennington L., Virella D., Mjøen T. et al. Development of the Viking Speech Scale to classify the speech of children with cerebral palsy. Res Dev Disabil 2013;34(10):3202–10. doi: 10.1016/j.ridd.2013.06.035
- Balashova I.N., Vanchakova N.P. The dysarthria assessment scale as a tool for the clinical work of a speech therapist. Uchenye zapiski universiteta im. P.F. Lesgafta = Scientific Notes of the P.F. Lesgaft University 2016;1(131):312–7. Available at: https://cyberleninka.ru/article/n/shkala-otsenki-dizartrii-kak-instrument-klinicheskoy-raboty-logopeda. (In Russ.).
- Calderone A., Militi D., Cardile D. et al. Swallowing disorders in cerebral palsy: a systematic review of oropharyngeal dysphagia, nutritional impact, and health risks. Ital J Pediatr 2025;51(1):57. doi: 10.1186/s13052-025-01903-1
- Benfer K.A., Weir K.A., Bell K.L. et al. The Eating and Drinking Ability Classification System in a population-based sample of preschool children with cerebral palsy. Dev Med Child Neurol 2017;59(6):647–54. doi: 10.1111/dmcn.13403
- Schepers F.V., van Hulst K., Spek B. et al. Dysphagia limit in children with cerebral palsy aged 4 to 12 years. Dev Med Child Neurol 2022;64(2):253–8. doi: 10.1111/dmcn.15031
- Crary M.A., Carnaby G.D., Mathijs L. et al. Spontaneous swallowing frequency, dysphagia, and drooling in children with cerebral palsy. Arch Phys Med Rehabil 2022;103(3):451–8. doi: 10.1016/j.apmr.2021.09.014
- Novak I., Morgan C., Fahey M. et al. State of the Evidence Traffic Lights 2019: systematic review of interventions for preventing and treating children with cerebral palsy. Curr Neurol Neurosci Rep 2020;20(2):3. doi: 10.1007/s11910-020-1022-z
- Sousa K.T., Ferreira G.B., Santos A.T. et al. Assessment of nutritional status and frequency of complications associated to feeding in patients with spastic quadriplegic cerebral palsy. Revista Paulista de Pediatria 2020;38:e2018410. doi: 10.1590/1984-0462/2020/38/2018410
- Shaikh R. A study on ocular manifestations seen in patients with cerebral palsy. J Ophthalmol Adv Res 2020;1(1):1–7. doi: 10.46889/joar.2020.1105
- Rauchenzauner M., Schiller K., Honold M. et al. Visual impairment and functional classification in children with cerebral palsy. Neuropediatrics 2021;52(5):383–9. doi: 10.1055/s-0040-1722679
- Williams C. Cerebral visual impairment is permanent but not unchanging. Dev Med Child Neurol 2025;67(4):424–5. doi: 10.1111/dmcn.16137
- Galli J., Loi E., Molinaro A. et al. Age-related effects on the spectrum of cerebral visual impairment in children with cerebral palsy. Front Hum Neurosci 2022;16:750464. doi: 10.3389/fnhum.2022.750464
- Bennett R.G., Tibaudo M.E., Mazel E.C. et al. Implications of cerebral/cortical visual impairment on life and learning: insights and strategies from lived experiences. Front Hum Neurosci 2024;18:1–5. doi: 10.3389/fnhum.2024.1496153
- Tinelli F., Guzzetta A., Purpura G. et al. Structural brain damage and visual disorders in children with cerebral palsy due to periventricular leukomalacia. NeuroImage Clin 2020;28:102430. doi: 10.1016/j.nicl.2020.102430
- Sahli E., Kiziltunc P.B., Goktas O.A. et al. Factors affecting visual function in children with cerebral visual impairment. Beyoglu Eye J 2025;10(1):14–9. doi: 10.14744/bej.2024.26043
- Viswanath M., Jha R., Gambhirao A.D. et al. Comorbidities in children with cerebral palsy: a single-centre cross-sectional hospital-based study from India. BMJ Open 2023;13(7):e072365. doi: 10.1136/bmjopen-2023-072365
- Jibril Y.N., Shamsu K.A., Muhammad N.B. et al. Determinants of hearing loss in children with cerebral palsy in Kano, Nigeria. Niger J Clin Pract 2021;24(6):802–7. doi: 10.4103/njcp.njcp_480_20
- Weir F.W., Hatch J.L., McRackan T.R. et al. Hearing loss in pediatric patients with cerebral palsy. Otol Neurotol 2021;42(3):467–73. doi: 10.1097/MAO.0000000000002985
- Tufatulin G.Sh., Lalayants M.R. Protocol of audiological examination of children of the first year of life in the Russian Federation. Part I. Vestnik otorinolaringologii = Bulletin of Otorhinolaryngology 2023;88(5):82–90. (In Russ.). doi: 10.17116/otorino20238805182
- Mofazzol Hossain Md., Hayat Sh., Howlader N.B., Hamid N. Hearing and visual impairment in children with cerebral palsy: a study in tertiary level hospital in Bangladesh. Ann Int Med Dental Res 2023;9(2):172–9. doi: 10.53339/aimdr.2023.9.2.26
- Pak L.A. Multidisciplinary support for children with cerebral palsy. Summary of thesis … of doctor of medical sciences. Мoscow, 2019. 47 p. (In Russ.).
- Cerebral Palsy: A Multidisciplinary Approach. 3rd edn. Ed. by C.P. Panteliadis. Springer, 2018. 371 p. doi: 10.1007/978-3-319-67858-0
Supplementary files

