Cerebral Palsy, Gait Disorders, Neurologic, Malalignment
Conditions
Brief summary
The study is designed to evaluate the use of electromagnetic tracking in transversal plane femoral derotation osteotomies. The goal is to raise the precision of the surgical procedure in order to improve the outcome in short- and long term. All patients are examined with an instrumented 3D gait analysis pre- and one year postoperatively. The electromagnetic tracking system is evaluated against a base line CT or MRI scan serving as reference standard pre- and postoperatively.
Detailed description
Internal rotation gait is a common deformity in children, especially in those with spastic diplegia. The treatment includes soft tissue and bony correction. Especially the bony procedures e.g. femoral derotation osteotomies have proven to be effective both in short term and long term evaluation. Nonetheless there is still a relevant number of patients that suffer from over- or under-correction and recurrence over time. The reasons are diverse and include false measurement of the derotation in OR. The study now evaluates electromagnetic tracking for femoral derotation to improve these results. The patients are recruited from the outpatients department and included if they meet the criteria. A baseline rotational CT or MRI scan and a 3D gait analysis are performed preoperatively. The patients are randomized into a electromagnetic tracking group or a classical goniometer group. The derotation is measured with the EMT system or with a classic Moeltgen goniometer in the OR. Goal is to achieve the planned amount of derotation more accurately. The surgical procedure follows standard rules and does not need alterations because of the study. After the operation a second rotational CT or MRI scan is performed and the derotation precisely evaluated by two raters and later compared to the results of the intraoperative electromagnetic tracking system. One year postoperative a second 3D gait analysis is performed to measure and compare the functional and dynamic outcome.
Interventions
Correction of malrotation of the femoral bone by osteotomy, derotation and osteosynthesis
Sponsors
Study design
Masking description
Patients are masked about which group they are randomized in
Intervention model description
Randomization into two study arms: 1. Classic control of derotation using a Moeltgen goniometer intraoperatively 2. Control of derotation using an electromagnetic tracking device intraoperatively
Eligibility
Inclusion criteria
* Cerebral palsy * GMFCS level I-III * Functionally disturbing internal rotation gait * Indication for femoral derotation osteotomy
Exclusion criteria
* No capacity of consent * Inability to perform all needed types examinations * Minors: Inability of getting a MRI rotational scan (i.e. pacemaker)
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Comparing the mean hip rotation between the groups | One year after surgery | Measuring the functional outcome with the mean hip rotation in stance comparing pre- and postoperative gait analysis . |
| Comparing the mean pelvic rotation between the groups | One year after surgery | Measuring the functional outcome with the mean pelvic rotation comparing pre- and postoperative gait analysis . |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Evaluate actual amount of bony derotation | Shortly after surgery (not ore than 3 month) and again one year after surgery | Measuring the actual amount of derotation in degrees in a postoperative CT or MRI scan, given in degrees. |
| Comparing the bony derotation between the groups | Shortly after surgery (not ore than 3 month) and again one year after surgery | Comparing the planned amount of derotation in degrees with the intraoperative electromagnetic tracking values and the postoperative rotational MRI values in degrees to evaluate the accuracy of implementing a certain amount of bony derotation. |
Countries
Germany