DrNiamh Nowlan
Visiting Reader
Department of Bioengineering - Faculty of Engineering
Orcid identifier0000-0002-9083-6279 (opens in a new tab)
- Visiting ReaderDepartment of Bioengineering - Faculty of Engineering
- 020 7594 5189 (Work)
- 4.1, Royal School of Mines, South Kensington Campus, United Kingdom
RESEARCH
Overview
Research Field
Dr. Niamh Nowlan combines experimental and computational approaches to the study of the role of mechanical forces on prenatal skeletal development. When there is not enough movement in the womb, bones and joints can be severely affected, but the underlying reasons are not well understood. It is unclear how much movement, and what type of movements, are important for normal development of the skeleton. The multidisciplinary research being conducted by Dr. Nowlan and her research team will enhance our fundamental understanding of the role of mechanical forces on the formation, adaptation and maintenance of healthy cartilage and bone.
Key Topics
Mechanobiology of the developing skeleton
The effects of abnormal prenatal movements on bone and joint development
Joint morphogenesis
Developmental dysplasia of the hip (DDH)
Model systems of abnormal prenatal movement
Mechanobiological computational models of skeletogenesis
Using computational simulations to explore the evolution of human bone
Research Field
Dr. Niamh Nowlan combines experimental and computational approaches to the study of the role of mechanical forces on prenatal skeletal development. When there is not enough movement in the womb, bones and joints can be severely affected, but the underlying reasons are not well understood. It is unclear how much movement, and what type of movements, are important for normal development of the skeleton. The multidisciplinary research being conducted by Dr. Nowlan and her research team will enhance our fundamental understanding of the role of mechanical forces on the formation, adaptation and maintenance of healthy cartilage and bone.
Key Topics
Mechanobiology of the developing skeleton
The effects of abnormal prenatal movements on bone and joint development
Joint morphogenesis
Developmental dysplasia of the hip (DDH)
Model systems of abnormal prenatal movement
Mechanobiological computational models of skeletogenesis
Using computational simulations to explore the evolution of human bone