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Updated: Oct 28, 2025

An Anatomical Study of Nerves at Risk During Minimally Invasive Hallux Valgus Surgery
Published on: February 17, 2018
Minimally invasive hallux valgus correction with Internal Hallux Fixator® - A comparative cadaver study
Natalia Gutteck1, Melina Ulbricht1, Karl-Stefan Delank1
1Department of Orthopaedics and Traumatology, Martin Luther University Halle Wittenberg, Ernst-Grube-Strasse 40, 06120 Halle (Saale), Germany.
Background:
The Internal Hallux Fixator® (IHF®; Waldemar Link, Hamburg, Germany) was designed for open surgical hallux valgus correction. It allows a defined lateralisation of the first metatarsal head after V-shaped, Chevron-like distal metatarsal osteotomy in order to correct mild to middle hallux valgus deformities. The intramedullary fixation provides dynamic compression of the osteotomy and thus postoperative full weight bearing mobilization is an integral part of the therapy. This comparative cadaver model study investigates the feasibility of implanting the device using a minimally invasive technique and compares its capability of first metatarsal head lateralisation to the established 3rd generation MICA (Minimally Invasive Chevron and Akin osteotomy) technique.
Methods:
16 fresh frozen cadaveric feet (8 left, 8 right) of 8 body donors received either MICA (Group 1), or an IHF® in a minimally invasive technique (Group 2). The achievable first metatarsal head lateralisation and operating time were measured and pitfalls recorded.
Results:
This cadaver model study confirmed, the minimally invasive implantation of the Internal Hallux Fixator® can be performed reliably via 10 mm mini incision with V-shaped distal metatarsal osteotomy. The mean first metatarsal head lateralisation was comparable between the groups with no statistically significant difference (7.2 (±1.9) mm in G1, or 8.3 (±0.8) mm in G2; p = 0.09). The IHF® was inserted and fixed in mean 3.7 (±0.6) min, whereas double screw fixation needed 10 (±3.7) min.
Level Of Clinical Evidence:
5, Cadaver model study.

