PubMed Health⌕ Search

PubMed · 15891978

Ulnar intrinsic anatomy and dysfunction.

Abstract

Normal hand function is a balance between the extrinsic and intrinsic musculature. Although individually the intrinsics are small muscles in diameter, collectively they represent a large muscle that contributes approximately 50% of grip strength. Dysfunction of the intrinsics consequently leads to impaired grip and pinch strength as well recognized deformities. Low ulnar nerve palsy preserves ulnar innervated extrinsics resulting in sensory loss, digital clawing, thumb deformity, abduction of the small finger, and asynchronous finger motion. High ulnar nerve palsy is characterized by the above plus paralysis of the ulnar profundi and the flexor carpi ulnaris. Understanding the normal anatomy allows the clinician to identify the site of the lesion and plan appropriate surgical intervention. This article revisits the classic work of Richard J. Smith on ulnar nerve palsy with contemporary perspective.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Paul C Dell, Christopher R Sforzo. Ulnar intrinsic anatomy and dysfunction.. https://doi.org/10.1197/j.jht.2005.02.008

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Normal MR imaging findings of the midhand and fingers with anatomic correlation.

In the present article, we correlate MR imaging studies of cadavers, volunteers and patients with cadaveric dissection and sectioning. First anatomy at wrist level is discussed. In a next section, we address the midhand with the flexor and extensor tendons, and interosseous and lumbricalis muscles. The dorsal hood at the level of the metacarpophalangeal joint is also addressed. An overview of the anatomy of the thenar is provided. Finally, the flexor system of the fingers with pulleys and volar plates, as well as the central and distal insertion of the finger extensor tendons is discussed.

Finger Joint↗

Clinical and radiographic evaluation of surgical reconstruction of finger flexion in tetraplegia.

PURPOSE: To define the order and frequency of elongation in tendon junctions in extensor carpi radialis longus (ECRL) to flexor digitorum profundus tendon transfer and its correlation to grip strength and lack of finger flexion. METHODS: Forty-seven tetraplegic patients had surgery involving the reconstruction of finger flexion with the transfer of the ECRL in a total of 62 arms. During surgery metal markers were placed on both sides of the tendon-to-tendon attachment site. After surgery the distance between the markers was measured on radiographs. Any increase in the distance between the markers was judged as elongation. The grip strength and mean pulp-to-palm distance were evaluated a minimum of 6 months after surgery. Three arms had a second surgery because of insufficient functional results. RESULTS: The average final elongation was 9 +/- 10 mm (mean +/- SD). The mean grip strength was 16 +/- 12 kPa (range, 0-50). The lack of flexion (mean value of pulp-to-distal palmar crease of 3 ulnar digits) was 0.8 +/- 1.2 cm on average. Elongation up to 15 to 20 mm still was compatible with good grasp. CONCLUSIONS: The tendon junction after a transfer of the ECRL to the finger flexors can be overloaded. Elongation therefore must be considered as one among several possible causes of an unsatisfactory result after this type of tendon transfer but elongation less than 15 mm usually is compatible with excellent function.

Finger Joint↗