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Handheld device finds early signs of osteoporosis

The early diagnosis of osteoporosis could be improved with a handheld device currently being evaluated at Southampton University.

The technology is currently being refined and tested at Southampton University with support from the Engineering and Physical Sciences Research Council (EPSRC). The original concept was invented at the University of California, Santa Barbara and could be available for clinical use within five years.

Unlike existing methods of assessing bone fragility, which measure bone density using X-rays, the device is designed to measure the ability of bone tissue to prevent small cracks growing into full-blown fractures.

New technique looks at further measures of bone fragility

Source: EPSRC

New technique looks at further measures of bone fragility

It does this by pressing a microscopic needle a tiny distance into the top layer of bone. Measured electronically, the amount of penetration indicates how fragile the bone tissue is and therefore the risk of experiencing an osteoporotic fracture later in life.

Osteoporosis is often referred to as fragile bone disease but for many sufferers, the first indication that they have the condition is when they actually sustain a fracture.

Drugs can slow or arrest the development of the disease, but the condition may already be quite advanced by the time the first break has happened.

Doctors can estimate an individual’s risk of fracturing by using bone-density measurements and other factors such as age, gender, smoking and any history of fracturing.

The new microindentation technology is claimed to deliver an affordable and fundamentally different measurement that has the potential to refine such an evaluation.

A normal reading might see the needle sink into the bone by around 20 micrometres (0.02mm); a reading of 40 micrometres might indicate a significant risk of fracture.

‘As the population ages and life expectancy rises in the decades ahead, the cost of treating osteoporotic fractures will increase,’ said Prof Philipp Thurner of Southampton University, who is leading the project. ‘One in three women aged over 50 is forecast to experience an osteoporotic fracture in her lifetime and, globally, treatment costs are forecast to reach over $130bn by 2050. The potential improvement in assessing osteoporosis and future fracture risk offered by this new technology could reduce the burden of broken bones for individuals, healthcare systems and the economy.

‘We’re currently inviting patients at Southampton General Hospital who have had a hip replacement due to a broken hip to take part in the Observational Study Examining Osteoporosis (OStEO), which is investigating handheld microindentation with EPSRC funding. We would also specifically like to thank the 23 patients who have agreed to take part in the study so far.’

‘The National Osteoporosis Society welcomes new research in understanding bone health and osteoporosis, and this new study is certainly interesting,’ said Claire Bowring, medical policy manager at the National Osteoporosis Society in a statement.

‘Bone density scanning is the ‘gold-standard’ diagnostic tool. However it is not a perfect measure of bone strength and does not show the quality of bone. New techniques, which look at further measures of bone fragility, are very important in developing our understanding of osteoporosis and bone health and in helping to reduce the number of fragility fractures.’


Readers' comments (1)

  • This looks painful! I'll stick to my DEXA scan thank you very much!

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  • We put the question of how painful the procedure is to Southampton University and this is their response: A clinical handheld instrument is currently being tested and involves testing the lower shin bone. During the test a small patch of overlying skin would be anaesthsetized with local anaesthetic and the tiny needle inserted through the skin to the bone. The procedure takes only a few seconds and should be no more painful than a standard blood test. Our work with the laboratory instrument on bone samples obtained at hip replacement will complement the results of the clinical testing to help fully understand what this new technology can offer.

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