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Hip displacement in children with cerebral palsy: surveillance to surgery - a current concepts review
Jason J Howard1, H Kerr Graham2, Ashok Johari3
1Department of Orthopedic Surgery, Nemours Children's Hospital, 1600 Rockland Road, Wilmington, Delaware 19803, USA.
Insights
Hip displacement in cerebral palsy (CP) requires early detection and varied treatments. Emerging research explores new interventions, challenging traditional approaches for better patient outcomes.
Area of Science:
- Orthopedics
- Pediatric Rehabilitation
- Biomedical Engineering
Background:
- Hip displacement is a significant global health issue in cerebral palsy (CP).
- Traditional treatments and emerging research present diverse perspectives on etiology and management.
- Gross motor function, particularly as classified by the Gross Motor Function Classification System (GMFCS), is closely linked to hip displacement development.
Purpose of the Study:
- To review current knowledge on detecting and treating hip displacement in CP.
- To highlight the multidisciplinary and multinational expert consensus and differing views.
- To explore evolving treatment strategies and their evidence base.
Main Methods:
- Review of multidisciplinary expert opinions and existing literature.
- Analysis of radiographic surveillance programs based on GMFCS.
- Evaluation of outcomes from non-operative (abduction bracing, BoNT-A) and operative treatments.
Main Results:
- Variable quality of outcomes research for non-operative treatments leads to conflicting opinions.
- Traditional isolated soft tissue lengthening in young patients shows decreased survivorship.
- Early reconstructive surgery in very young children has a high recurrence rate.
- Abnormal proximal femoral growth and acetabular dysplasia are implicated in hip displacement.
- Guided growth of the proximal femur shows promising early results for addressing etiology.
Conclusions:
- Early detection through GMFCS-based surveillance is crucial for timely intervention in CP hip displacement.
- Current treatment options, including non-operative and surgical methods, have limitations and variable outcomes.
- Minimally invasive alternatives and guided growth of the proximal femur represent promising future directions for managing hip displacement in CP.
Abstract:
This review brings together a multidisciplinary, multinational team of experts to discuss the current state of knowledge in the detection and treatment of hip displacement in cerebral palsy (CP), a global public health problem with a high disease burden. Though common themes are pervasive, different views are also represented, reflecting the confluence of traditional thinking regarding the aetiology and treatment of hip displacement in CP with emerging research that challenges these tried-and-true principles. The development of hip displacement is most closely related to gross motor function, with radiographic surveillance programs based on the Gross Motor Function Classification System (GMFCS), the goal being early detection and timely treatment. These treatments may include non-operative methods such as abduction bracing and Botulinum Neurotoxin A (BoNT-A), but outcomes research in this area has been variable in quality. This has contributed to conflicting opinions and limited consensus. Soft tissue lengthening of the hip adductors and flexors has traditionally been employed for younger patients, but population-based studies have shown decreased survivorship for this treatment when performed in isolation. Concerns with the identification of hip displacement in very young children are raised, noting that early reconstructive surgery has a high recurrence rate. This has prompted consideration of viable minimally invasive alternatives that may have better success rates in very young children with CP, or may at least delay the need for osteotomies. Recent reports have implicated the role of abnormal proximal femoral growth and secondary acetabular dysplasia as a primary cause of hip displacement, related to ambulatory status and abductor function. As such, guided growth of the proximal femur has emerged as a possible treatment that addresses this purported aetiology, with promising early results.

