Aifimm - Institute of Applied Musculoskeletal Biomechanics

Aifimm - Institute of Applied Musculoskeletal Biomechanics Physics-based musculoskeletal biomechanics for clinicians. Founded in Genova, Italy, in 1996. Over 300 courses delivered since 1997.

Learn to assess joint and spinal pathologies through vector analysis and turn evaluation into targeted treatment decisions. AIFIMM – Institute of Applied Musculoskeletal Biomechanics
is a postgraduate training institute specializing in musculoskeletal biomechanics for physiotherapists and rehabilitation professionals. Over nearly three decades, we have developed a physics-based clinical reasoning

model that connects vector analysis of muscular forces to therapeutic decision-making in joint and spinal pathologies. The model originated from the clinical work of Françoise Mézières and has been progressively formalized into verifiable biomechanical principles. More than 6,000 physiotherapists have completed our postgraduate courses. AIFIMM is independently accredited as a continuing education provider in three systems:

Italy — ECM Provider No. 1701 (Ministry of Health)
UK — CPD Provider No. 21418 (The CPD Certification Service)
USA — CE Broker Provider ID 50-54885 (Florida)

Our training is led by Mauro Lastrico, PT, and Laura Manni, PT, who trained directly with Françoise Mézières in Paris (1988–1990) and have over 40 years of clinical experience. Systemic and Segmental MSK Biomechanics – Online Course
From vector analysis to clinical decision-making in joint and spinal pathologies

Course content:
– 32h HD video lessons + 6h guided readings and downloadable resources
– Clinical demonstrations, case studies, and diagnostic tools
– Original Italian lectures fully dubbed in English by professional voice actors

Official Certifications:
– 38 CPD hours (UK – The CPD Certification Service, Provider No. 21418)
– 45 contact hours / 4.5 CEU (Florida Board of Physical Therapy – ID 50-54885

On-demand access:
– Available 24/7 for 12 months
– No live webinars – learn at your own pace

23/07/2026

Online course, on demand.
Grounded in published, peer-reviewed physics.

32 hours – downloadable PDFs

38 CPD (UK) internationally
45 contact hours/4.5 CEU Florida

https://mskbiomechanics.com/en

18/06/2026

The theoretical foundations of the AIFIMM clinical model have been published by Elsevier and indexed on Scopus, Web of Science, EMBASE.

"An Integrated Biomechanical Model Linking Connective Tissue Shortening, Segmental Load Distribution, and Vectorial Dominance to Predict Joint Degeneration Patterns"

The article is available here:

01/06/2026

for USA Physiotherapists
MSK biomechanics - on demand online course
45 CE Florida

01/06/2026

For physiotherapists, osteopaths, and rehabilitation professionals in any country.
MSK Biomechanics - on demand online course.
38 CPD
18 videos - 32 hours

31/05/2026
A new article of mine published by the The CPD Certification ServiceVector Analysis of the Vertebral Column in the Front...
12/02/2026

A new article of mine published by the The CPD Certification Service
Vector Analysis of the Vertebral Column in the Frontal Plane – Part 1
https://www.cpduk.co.uk/news/vector-analysis-vertebral-column-frontal-plane-part-1
This contribution explores the biomechanical interpretation of vertebral deviations observed in the frontal plane through a vector-based framework grounded in applied physics. Lateral spinal configurations are examined as three-dimensional mechanical outcomes rather than purely two-dimensional findings.
The article clarifies the relationship between vertebral rotation, lateral translation, and inclination, introducing a causal reading model that differentiates convexity driven by direct muscular traction from concavity arising as a geometric consequence of skeletal convergence. Particular attention is given to the informational differences between standing and supine assessment, highlighting their distinct diagnostic implications.
Segmental analysis focuses on the upper cervical and cervico-thoracic regions, followed by an introduction to the latissimus dorsi as a key generator of complex spinal resultants. Pattern A is described as a predictable mechanical organization emerging from specific lines of force within the latissimus dorsi functional unit.

This informal CPD article ‘Vector Analysis of the Vertebral Column in the Frontal Plane – Part 1’, was provided by Dr. Mauro Lastrico, Physiotherapist at AIFiMM Formazione, an organisation recognised by the Italian Ministry of Health as an authorised CME provider. They offer organised training...

The CPD Certification Service (UK) has published one of my articles on the physical and clinical mechanisms of muscle sh...
19/11/2025

The CPD Certification Service (UK) has published one of my articles on the physical and clinical mechanisms of muscle shortening and joint dysfunction.

Here is the direct link for those who wish to read it:
https://www.cpduk.co.uk/news/muscle-shortening-and-joint-dysfunction-physical-clinical-explanation

Many thanks to CPD Certification Service for their attention and for providing space to discuss biomechanical research.
PT Mauro Lastrico

This informal CPD article ‘Muscle Shortening and Joint Dysfunction: a Physical-Clinical Explanation’ was provided by Dr. Mauro Lastrico, Physioterapist at AIFiMM Formazione, an organisation recognised by the Italian Ministry of Health as an authoried CME provider. They offer organised training c...

08/09/2025

A Physical Interpretation of Muscle Shortening: When "Weakness" Isn't Weakness

📖 Full article: https://aifimm.it/en/a/biomechanics-causes-muscle-shortening
Dr. Mauro Lastrico, physiotherapist.

This article proposes an interpretation of muscle shortening phenomena based on material mechanics principles.
Starting from the clinical observation that muscles tend to shorten their length, we apply the theory of differential elasticity coefficients to explain how contractile components (high elastic coefficient) and connective components (low elastic coefficient) respond differently to mechanical stress.
The model introduces the fundamental concept of the inversely proportional relationship between Resistive Force (RF) and Work Force (WF), demonstrating how connective component shortening generates mechanical inefficiency rather than true muscle weakness.
The analogy: it's like pushing a cart with the parking brake engaged - the motor works perfectly but energy is dissipated overcoming internal resistance.
Implications include static alterations (joint axis modifications), dynamic changes (increased energy expenditure), and the tendency toward perpetuation through adaptive compensations.
Reversibility is predicted by the same physical laws through application of appropriate forces for times compatible with the tissue's viscoelastic properties.
📖 Full article: https://aifimm.it/en/a/biomechanics-causes-muscle-shortening

Indirizzo

Online Education In Applied Musculoskeletal Biomechanics For Physiotherapists And Rehabilitation Professionals
Genova
16121

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