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EFAS Council Member Nominations EFAS Council Member Nominations Deadline for submitting nominations October 15th, 2023. 05 September 2023 Send completed nomination forms with two references to Joris Hermus, EFAS Honorary Secretary (joris.hermus@gmail.com) and to EFAS secretarial support (efassecretary@mcocongres.com). Subject of email: Council Nomination – Elections 2023. Read more
20Apr2026 BOFAS Diabetic Foot Principles Course 20/04/2026 Read more BOFAS Diabetic Foot Principles Course 20th April 2026, Delta by Marriott Hotel, Milton Keynes £150.00 Read more
29Apr2026 BOFAS Trauma Course 29/04/2026 Read more BOFAS Trauma Course 29th April 2026, Bristol £150 Read more
15May2026 BOFAS Allied Health Professionals Course 15/05/2026 Read more BOFAS Allied Health Professionals Course 15th May 2026, Bournemouth Read more
2Jul2026 BOFAS Basics & Advanced Arthroscopy Skills Course 02/07/2026 Read more BOFAS Basics & Advanced Arthroscopy Skills Course 2nd-3rd July 2026, Solihull Read more
1Oct2026 BOFAS Principles Course 01/10/2026 Read more BOFAS Principles Course 1st-2nd October 2026, Glasgow £325.00 Read more
6May2026 Nordic Foot & Ankle Congress 06/05/2026 - 07/05/2026 Read more Nordic Foot & Ankle Congress BOFAS Members have been invited to the Nordic Foot & Ankle Congress May 6/7 2026 in Oslo. Read more
Togay Koç / 24 May 2022 / Categories: Abstracts, 2022, Podium Blasting BMAC: a novel therapy to improve healing in fusion surgery S. Stewart, A. Darwood, C. Higgins, S. Masouros, A. Ramasamy Introduction: Fusion represents an effective treatment option in patients affected by end-stage arthritis. To minimise the risk of non-union following fusion, biological preparations such as bone marrow aspirate concentrate (BMAC) are commonly used intra-operatively. Mechanotransduction represents an emerging field of research whereby physical stimuli can be used to modulate the behaviour and differentiation of cells. Blast waves (a subtype of shock waves) are one such physical stimulus. The aim of this study was to investigate whether the osteogenic potential of BMAC can be enhanced using a blast wave, and thus improve its efficacy in fusion surgery. Methods: Human BMAC samples were obtained from three healthy patients and exposed to a single blast wave (peak overpressure= 50psi), before being placed in a suspension of mesenchymal stem cells, to represent the biological environment of the fusion site. Three test groups were used: MSC (the experimental control); MSC + BMAC; MSC + BMAC + blast wave. Calcium mineralisation assays were performed on the MSCs on Day 7 and 14 to assess for osteoblastic transformation. Results: Calcium mineralisation on Day 7 was significantly increased in the MSC + BMAC group compared to the MSC group (mean percentage change 42.12 vs 0.0, p=0.012). The MSC + BMAC + blast wave group also demonstrated significantly increased levels compared to the MSC + BMAC group (84.56 vs. 42.14, p=0.039). The difference in calcium mineralisation between the MSC and MSC + BMAC + blast wave groups was strongly significant (0.00 vs. 84.56, p=0.003). Conclusion: Exposure of BMAC to a single blast wave enhances its osteogenic potential. This represents a potential novel way to improve healing following fusion surgery and reduce the rates of non-union. Print 1139 Tags: ArthrodesisBiologics