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Due to the steady increase in the ageing population, the number of people with joint diseases is growing and therefore the topic of joint replacement is becoming more important. In order to design a replacement extensive knowledge about the joints contact forces is required. The difficulty is that these forces cannot be measured directly; consequently we need to rely on modelling. Biomechanical models of the upper limb are capable of predicting internal forces, and can be used for understanding the shoulder pathologies and ultimately as a tool to assist the surgeon.

Produktbeschreibung
Due to the steady increase in the ageing population, the number of people with joint diseases is growing and therefore the topic of joint replacement is becoming more important. In order to design a replacement extensive knowledge about the joints contact forces is required. The difficulty is that these forces cannot be measured directly; consequently we need to rely on modelling. Biomechanical models of the upper limb are capable of predicting internal forces, and can be used for understanding the shoulder pathologies and ultimately as a tool to assist the surgeon.
Autorenporträt
Milad Masjedi was born in Iran in 1981 and moved to United Kingdom in 2001. In 2005, he received his Master''s degree in Mechanical & Automotive Engineering from Newcastle University. In 2009, he completed his PhD in Bioengineering at the Newcastle University. He has since worked in Imperial College London within the field of Surgical Robotics.