Gross, Histological, and Microvascular Anatomy and Biomechanical Testing of the Spring Ligament Complex

Author:

Davis W. Hodges1,Sobel Mark2,DiCarlo Edward F.3,Torzilli Peter A.4,Deng Xianghua4,Geppert Mark J.5,Patel Manoj B.6,Deland Jonathan7

Affiliation:

1. The Miller Orthopaedic Clinic, 1001 Blythe Boulevard Suite 200, Charlotte, North Carolina 28203.

2. Director, Orthopaedic Foot and Ankle Service, Beth Israel Hospital, North Division, New York, New York.

3. Associate Pathologist, The Hospital for Special Surgery, New York, New York.

4. Laboratory for Soft Tissue Research, Hospital for Special Surgery.

5. Private Practice, Orthopaedic and Trauma Surgeons, Somersworth, New Hampshire.

6. Medical Student, Robert Wood Johnson Medical School, New Brunswick, New Jersey.

7. Co-Director, Adult Foot and Ankle Service, The Hospital for Special Surgery.

Abstract

In recent years there has been an increased interest in the treatment of acquired pes planus. The breakdown of the medial longitudinal arch is most often seen at the talonaviculocalcaneal articulation. This suggests a relationship between the ligamentous complex at this articulation and acquired pes planus. This study was undertaken to gain a better understanding of the gross, histologic, and microvascular anatomy, as well as the biomechanics of the ligamentous structures surrounding the talonaviculocalcaneal articulation. Cadaver dissections of 38 fresh-frozen feet were performed. Detailed descriptions of the gross anatomy of the superomedial calcaneonavicular ligament, inferior calcaneonavicular ligament, and the superficial deltoid ligament were recorded. Their relationships to the posterior tibialis tendon and to the bones of the talonaviculocalcaneal articulation are described. The histology and microvascularity of these structures were also studied. Preliminary biomechanical testing was performed. It was found there are two definitive anatomic structures that are commonly called the spring ligament: the superomedial calcaneonavicular ligament (SMCN) and the inferior calcaneonavicular ligament (ICN). The SMCN ligament was found to have histologic properties that suggest significant load bearing. The histology of the ICN ligament suggests a pure tensile load function. The deltoid ligament and the posterior tibialis tendon had direct attachments to the SMCN ligament in all specimens. An articular facet composed of fibrocartilage was found in each SMCN ligament specimen. The microvascular structures showed an avascular articular facet present in the ligament. The biomechanical testing showed that the SMCN ligament and ICN ligament had strength similar to ankle ligaments. This study suggests this “spring ligament complex” has more of a “sling” function for the talar head. It is hoped that the better understanding of this region will add to our understanding of the etiology of pes planus and possible treatment alternatives.

Publisher

SAGE Publications

Subject

Orthopedics and Sports Medicine,Surgery

Reference17 articles.

1. Biomechanical Characteristics of Human Ankle Ligaments

2. Microvasculature of the human meniscus

3. 4. Brash J.C. (Ed.). Cunningham's Textbook of Anatomy, 9th Ed. London, Oxford University Press, 1953, pp. 390–396

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