Skip to content

Nerve Transfers to Rebalance the Spastic Wrist: An Anatomical Feasibility Study.

Aug 2026 · Journal of Hand Surgery-American Volume · 0 citations · 23 references
Medicine

TL;DR

FCU to ECRB nerve transfer was anatomically feasible in the majority specimens and may offer a possible surgical option to rebalance resting wrist posture and function in patients with spastic wrist flexion deformities.

Abstract

Purpose

Spastic wrist flexion deformities result from an imbalance between spastic wrist flexors and weak or paralyzed wrist extensors. Nerve transfers offer the potential to restore this balance by combining neurotomy of the spastic donor nerve with reinnervation of the paralyzed recipient muscle. This study evaluated the anatomic feasibility of addressing the spastic wrist flexion deformity by transferring a motor branch from the flexor carpi ulnaris (FCU) to the extensor carpi radialis brevis (ECRB) and/or longus extensor carpi radialis (ECRL).

Methods

Ten fresh-frozen cadaveric upper-extremity specimens were dissected. Motor branches to the FCU were identified through an incision between its two heads. The radial nerve branches to the ECRL and ECRB were exposed via a separate curvilinear incision within the antecubital fossa. The number of motor branches, muscle entry points, and length available for nerve transfer was recorded for each motor branch relative to the interepicondylar line (IEL).

Results

The ECRL received one to three motor branches, entering the muscle at a median distance 1.6 cm distal to the IEL (range: 4 cm proximal to 6.4 cm distal). The median branch length available for transfer was 3.8 cm (range: 1.5-7.0 cm). The ECRB received one to three motor branches, entering the muscle at a median of 2.7 cm distal to the IEL (range: 1.7-8.0 cm distal). The median maximal branch length was 5.5 cm (range: 4.0-9.0 cm). The FCU had two to three motor branches, median muscle entry point 2.5 cm distal to the IEL (range 0 to 8.0 cm distal), and median maximal branch length of 3.3 cm (range: 1.6-5.2 cm). Direct, tension-free coaptation of the FCU to ECRB motor nerve was feasible in 90% specimens and the FCU to ECRL motor nerve in 50% of specimens.

Conclusions

FCU to ECRB nerve transfer was anatomically feasible in the majority specimens and may offer a possible surgical option to rebalance resting wrist posture and function in patients with spastic wrist flexion deformities. TYPE OF STUDY/LEVEL OF EVIDENCE Diagnostic, IV.

View source

Similar papers

Open access Aug 2026

Localizing the course of the radial nerve based on anatomical landmarks: A cadaveric study.

Background Surgeons treating humeral shaft fractures must be able to reliably locate the radial nerve in the posterior arm to limit iatrogenic injury. This study aims to improve the understanding of radial nerve anatomy by increasing the sample size, comparing bilateral upper extremities, and analyzing the impact of se...

Cameron M. Beck, Jake N. Powell, Matthew C. Skinner et al. · 0 citations
Open access Sep 2026

Risk of radial nerve injury during deltoid intramuscular injection in shoulder internal rotation and abduction position-cadaveric anatomical study

ABSTRACT Radial nerve injury following intramuscular injection into the upper arm is rare but clinically significant. Although injection-site selection is important, the effect of shoulder position, particularly internal rotation, on radial nerve location remains unclear. Because the radial nerve courses within the tri...

Naoki Minami, Yasuaki Nakanishi, Shimpei Kurata et al. · 0 citations
Aug 2026

Dynamic ultrasound evaluation of median nerve mobility at the wrist: implications for surgical safety

The MN demonstrates measurable positional changes at the distal forearm during finger, wrist, and forearm movements that reduce the reliability of assuming a constant “safe” location between PL and FCR and should be considered when planning volar wrist approaches and performing percutaneous or minimally invasive proced...

V. Kunc, Bruno Jurasek, Matouš Kroupa et al. · 0 citations
Case report Open access Sep 2026

Pisi-Palmaris Muscle: An Anatomical Study of a Novel Hypothenar Muscle Variant.

The presence of anomalous muscles in the hand are present in around 22-35% of individuals, leading to potential clinical implications. During a routine cadaveric dissection of a 72 year old male, a unique hypothenar muscle variant was identified: the pisi-palmaris muscle. Detailed dissection and literature review deter...

Maya Jarolem, Bill Frank · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.