BOFAS News & Events

This pages lists all the latest news and upcoming events.

 

To access 'Foot Print' (the BOFAS Bulletin) please click here (members only)

 

Latest News

News

BOFAS News

EFAS Lyon 2021 - Hybrid Annual Meeting

October 21-22-23 - Combined Face to Face and Virtual Meeting

The EFAS Congress Lyon 2021 will be the first hybrid congress from the European Foot and Ankle Society. 

EFAS hopes BOFAS members and others will join them in person for 3 amazing days of congress, to meet each other and exchange ideas, but in the current climate going abroad might still be difficult. EFAS would therefore like to extend the opportunity for all to be part of the congress by going HYBRID for the first time. 

12345678

 

BOFAS Hosted Events

BOFAS Principles Course - Dubai

The aim is to give Overseas Trainee Orthopaedic Surgeons a solid grounding in the principles and the decision making in Foot & Ankle Surgery.

There is an emphasis on clinical examination of cases, small group discussions and learning surgical approaches in the cadaver lab.

This is the first course BOFAS is running in UAE and the aim is to expand the Foot and Ankle education and training in the Middle East and Gulf area.

Venue - Le Meridien, Dubai, United Arab Emirates

Documents to download

BOFAS Principles Course Taunton

These courses are aimed at Higher Surgical Trainees / ST3 onwards and are designed to teach the core of Foot and Ankle surgery in an informal and interactive environment. The emphasis is on clinical examination cases, discussion groups and typical day-to-day clinic scenarios. Although not an exam preparation course, content is taught to the standard expected in the FRCS(Tr & Orth) exam; that of a day-one non-specialist orthopaedic consultant. Applications will open on 1st September 2023.

Venue - Taunton (TBC)

 

 

Documents to download


 

BOFAS Affiliated Courses

Other External Events / Courses

Togay Koç
/ Categories: Abstracts, 2023, Podium

Effect of fibula shortening on medial clear space and lateral translation of the talus: an anatomical cadaveric study

A. Gomaa, N. Heeran, L. Roper, G. Airey, R. Gangadharan, L. Mason, A. Bond

Introduction: Fibula shortening with an intact anterior tibiofibular ligament (ATFL) and medial ligament instability causes lateral translation of the talus. Our hypothesis was that the interaction of the AITFL tubercle of the fibular with the tibial incisura would propagate lateral translation due to the size differential. Aim: To assess what degree of shortening of the fibular would cause the lateral translation of the talus.

Methods: Twelve cadaveric ankle specimens were dissected removing all soft tissue except for ligaments. They were fixed on a specially-designed platform within an augmented ankle cage allowing tibial fixation and free movement of the talus. The fibula was progressively shortened in 5mm increments until complete ankle dislocation. The medial clear space was measured with each increment of shortening.

Results: The larger AITFL tubercle interaction with the smaller tibial incisura caused a significant increase in lateral translation of the talus. This occurred in most ankles between 5-10mm of fibular shortening. The medial clear space widened following 5mm of shortening in 5 specimens (mean=2.0725, SD=±2.5338). All 12 specimens experienced widening by 10mm fibula shortening (Mean=7.2133mm, SD=±2.2061). All specimens reached complete dislocation by 35mm fibula shortening. Results of ANOVA analysis found the data statistically significant (p<0.0001).

Conclusion: This study shows that shortening of the fibula causes a significant lateral translation of the talus provided the ATFL remains intact. Furthermore, the interaction of the fibula notch with the ATFL tubercle of the tibia appears to cause a disproportionate widening of the medial clear space due to its differential in size. Knowledge of the extent of fibula shortening can guide further intervention when presented with a patient experiencing medial clear space widening following treatment of an ankle fracture.

Print
405