Nerve Transfers for Restoration of Hand Function in Cervical Spinal Cord Injury: Effects and Influencing Factors
About this trial
The goal of this observational study is to learn about influencing factors on the clinical outcomes of nerve transfers used to restore hand function in patients with cervical spinal cord injury (CSCI)...
Included participants
What’s involved
Type
Details
Spinal cord injury (SCI) has a profound impact on the quality of life. Patients with a cervical spinal cord injury (CSCI) additionally suffer from upper extremity impairments, leading to increased dependence on others for daily life activities and a further decline in quality of life. For many patients, improvement of hand function is therefore the highest-ranked goal in rehabilitation after CSCI. Conventionally, tendon transfers have been widely used to reconstruct upper extremity function. Over the past decade, there has been growing interest in employing nerve transfer techniques for reconstruction of upper limb function in tetraplegia. Specifically for reconstruction of hand function, reinnervation of the posterior interosseus nerve (PIN) provides restoration of extension of fingers and thumb, while reinnervation of the anterior interosseus nerve (AIN) is intended to restore flexion of thumb, index finger and middle finger. Since previous studies already reported success rates for the different nerve transfers, this study will mainly focus on the factors influencing the clinical outcomes of the reinnervation of PIN and AIN in patients with cervical spinal cord injury. Specifically, the study will focus on the impact of age during surgery and the interval between spinal cord injury and surgery on clinical outcomes. In this single-center retrospective case series, data will be collected from patients with a cervical spinal cord injury who underwent single or multiple nerve transfers in one or both upper limbs to reanimate the PIN and/or AIN. Informed consent is not required, as this study involves a retrospective analysis of anonymized data without any direct intervention or interaction with patients. Data will be extracted from the Electronic Patient Records (EPD) at Roessingh. This data will be anonymized, by using exclusive numbers for all patients. The identifying information will be kept in a separate list only accessible by the lead researcher. In all analyses, only the patient specific codes will be used. Baseline data will include age, gender and smoking habits. SCI related data compromises the date of injury, mechanism of injury, neurological level, motor level, grade of International Classification of Surgery of the Hand in Tetraplegia (ICSHT) and the American Spinal Injury Association (ASIA) grade. The specific surgeries performed and their dates will be recorded. Patients records will be reviewed to determine the dates of when the effect of nerve transfers were observed. Additionally, the number of treated limbs and the number of patients with limiting spasticity or restricted range of motion in the hands will be documented. As this is a retrospective study, some data may be missing, and variables will be reported as such. Data that is uninterpretable will also be reported as missing. All adverse events and serious adverse events will be recorded. Statistical analysis: kaplan-Meier survival analysis will be used to estimate the time until effect of nerve transfers occured. Spearman rank correlations will be used to assess the relationship between the variables, specifically between the results of nerve transfers and \'age during surgery\' and \'time between spinal cord injury and nerve transfer surgery\'.
Potential benefits
Main benefits
General health
Additional benefits
Arm/hand function
Good to know: Potential benefits are defined as outcomes that are being measured during and/or after the trial.
Wings for Life supports SCITrialsFinder
Wings for Life has proudly initiated, led and funded the new version of the SCI Trials Finder website. Wings for Life aims to find a cure for spinal cord injuries. The not-for-profit foundation funds world-class scientific research and clinical trials around the globe.
Learn more- Trial recruitment status
- Ended
- Trial start date
- 1 Oct 2024
- Organisation
- Roessingh Research and Development
- Trial recruitment status
- Ended
- Trial start date
- 1 Oct 2024
- Organisation
- Roessingh Research and Development
About this trial
Included participants
What’s involved
Potential benefits
Wings for Life supports SCITrialsFinder
Wings for Life has proudly initiated, led and funded the new version of the SCI Trials Finder website. Wings for Life aims to find a cure for spinal cord injuries. The not-for-profit foundation funds world-class scientific research and clinical trials around the globe.
Learn more