Related Experiment Video
Updated: Jul 30, 2025

Methods for In Vivo Biomechanical Testing on Brachial Plexus in Neonatal Piglets
Published on: December 19, 2019
Shoulder extension impairment with residual neonatal brachial plexus injury
Unai Jambrina-Abasolo1, Dragos Hutanu2, Diego Gonzalez-Morgado1
1Orthopedic Surgery Department, Hospital Vall Hebron, Barcelona, Spain.
Insights
Impaired shoulder extension and behind-the-back function are common in children with neonatal brachial plexus injury (NBPI). A reliable clinical exam can measure passive glenohumeral extension (PGE) and active shoulder extension (ASE), with 10° needed for hand-to-spine tasks.
Area of Science:
- Orthopedics
- Pediatric Rehabilitation
- Neurology
Background:
- Shoulder extension and behind-the-back function impairments are prevalent in neonatal brachial plexus injury (NBPI) but understudied.
- Traditional evaluation methods like the Mallet score and kinematic motion labs have limitations.
- A validated clinical examination for shoulder extension in NBPI was lacking.
Purpose of the Study:
- To establish reliable clinical measurements for passive glenohumeral extension (PGE) and active shoulder extension (ASE) in children with residual NBPI.
- To correlate these measurements with functional outcomes, specifically the hand-to-spine task.
- To determine the minimum required shoulder extension angles for successful hand-to-spine function.
Main Methods:
- Intraobserver and interobserver reliability analyses were conducted for PGE and ASE measurements.
- A retrospective study analyzed data from 245 children with residual NBPI treated between 2019 and 2022.
- Data included demographics, palsy level, surgical history, modified Mallet score, and bilateral PGE/ASE measurements.
Main Results:
- Excellent inter- and intraobserver reliability (0.82-0.86) was achieved for PGE and ASE measurements.
- Both ASE (r=0.705) and PGE (r=0.372) significantly correlated with the hand-to-spine score (P < .0001).
- A minimum of 10° of both PGE and ASE was required for the hand-to-spine task, with high sensitivity and specificity.
Conclusions:
- Passive glenohumeral extension (PGE) and active shoulder extension (ASE) can be reliably measured using a clinical examination in children with NBPI.
- Glenohumeral flexion contracture and lost ASE are common in this population.
- At least 10° of both PGE and ASE are necessary for children with NBPI to perform the hand-to-spine Mallet task.
Background:
Impairment of both shoulder extension and behind-the-back function are common in patients with residual neonatal brachial plexus injury (NBPI), but have scarcely been studied or reported in the literature. Behind-the-back function is classically evaluated using the hand-to-spine task used for the Mallet score. Angular measurements of shoulder extension with residual NBPI have generally been studied utilizing kinematic motion laboratories. To date, no validated clinical examination method for this has been described.
Methods:
Intraobserver and interobserver reliability analyses of 2 shoulder extension angles-passive glenohumeral extension (PGE) and active shoulder extension (ASE)-were performed. Afterwards, a retrospective clinical study was conducted on prospectively collected data on 245 children with residual BPI treated from January 2019 through August 2022. Demographic characteristics, level of palsy, previous surgical procedures, modified Mallet score, and bilateral PGE and ASE data were analyzed.
Results:
All inter- and intraobserver agreements were excellent, ranging from 0.82 to 0.86. The median patient age was 8.1 years (3.5-21). Among the 245 children, 57.6% had Erb's palsy, 28.6% extended Erb's palsy, and 13.9% global palsy. One hundred sixty-eight (66%) of the children could not touch their lumbar spine, among whom 26.2% (n = 44) had to swing the arm to reach it. Both the degrees of ASE and PGE achieved correlation significantly with the hand-to-spine score, the ASE strongly (r = 0.705) and the PGE weakly (r = 0.372) (both P < .0001). Significant correlations also were found between lesion level and the hand-to-spine Mallet score (r = -0.339; P < .0001) and ASE (r = -0.299; P < .0001), and between patient age and the PGE (P = .0416, r = -0.130). A statistically significant decrease in PGE and incapacity to reach the spine were found in patients who underwent glenohumeral reduction, shoulder tendon transfer, or humeral osteotomy, relative to those who had microsurgery or no surgery. Receiver operating curves showed that, for both PGE and ASE, the minimum extension angle required to successfully perform the hand-to-spine task was 10°, with sensitivity levels of 69.9 and 82.2, and specificity levels of 69.5 and 87.8 (both P < .0001), respectively.
Conclusions:
Glenohumeral flexion contracture and lost ASE are extremely common in children with residual NBPI. Both the PGE and ASE angles can be measured reliably with a clinical exam, with at least 10° of PGE and ASE necessary to perform the hand-to-spine Mallet task.
More Related Videos
Related Concept Videos
Spinal Nerves: Plexus I
The Cervical Plexus
The cervical plexus, formed by the anterior rami of the first four...
Muscles of the Shoulder
Anterior Thoracic Muscles
The anterior thoracic muscles include the serratus anterior, subclavius, and...

