University Of Leicester Scientists Develop New Techniques For Detecting Harmful Blood Clots/Air Bubbles In Arteries
Main Category: Blood / HematologyAlso Included In: Stroke
Article Date: 20 Feb 2008 - 1:00 PDT
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New techniques for detecting emboli (harmful blood clots/air bubbles in arteries) developed at the University of Leicester have played a major role in dramatically reducing stroke rates after carotid endarterectomy. This is an operation designed to remove narrowings in the main arteries supplying the brain before they can cause a stroke.
Before per-operative embolus monitoring was introduced in 1992, the intra-operative stroke rate during carotid artery procedures was 4%. Today it is 0.2%. Before post-operative monitoring was introduced in 1995, the post-operative stroke rate was 2.7%. Today it is extremely rare.
Overall, the 30-day death/stroke rate has fallen from 6% to 2.6%.
The emboli detection techniques developed by Professor David H Evans and Professor A Ross Naylor in the Department of Cardiovascular Sciences at the University of Leicester involve the use of Doppler ultrasound, the same technique used to detect the fetal heartbeat in pregnant women. The work was recently presented at an international conference on Ultrasound in Medicine in Australia.
In the case of emboli detection, the 'transducer' is placed on the side of the patient's head, just in front of the ear, and is used to detect the movement of emboli through blood vessels in the brain. The technique is painless and harmless.
Patients undergoing various types of operation have this small ultrasound transducer attached to the side of their head to give early warning of embolism occurring.
If emboli are detected appropriate measures can be taken to reduce or prevent the embolism from occurring. In some patients the monitoring will continue for 1 or 2 hours post-surgery. This reduces the likelihood of the patient suffering a stroke.
Emboli may be pieces of atheroma that have been dislodged from diseased arteries, they may be blood clots, or they may be air bubbles accidentally introduced into the blood.
They travel through the circulation until they become 'wedged' in an artery. This prevents blood flow in that artery and therefore starves the territory supplied by the artery of its blood supply and thus oxygen.
This can lead to the death of the affected tissue. If this occurs in the brain it leads to stroke, if it occurs in the heart it leads to myocardial infarction. In general small solid emboli are much more likely to cause stroke than similarly sized gaseous emboli, and one of the techniques the Leicester scientists have developed helps them to distinguish one from the other.
Professor of Medical Physics at the University, David Evans, commented: "We have been involved in cerebral embolus research here in Leicester for over 15 years. Much of our work to date has centred on improving the safety of carotid artery surgery.
"More recently we have started to work with cardiac surgeons on embolism during open-heart surgery, in the hope of reducing potentially harmful effects on the brain of open-heart surgery."
Professor Naylor (consultant vascular surgeon) commented; "The paradox with carotid endarterectomy is that although this is a proven operation for preventing stroke in the long term, it is also directly responsible for causing a stroke in a small number of patients in the peri-operative period. The lower the initial risk, the greater the long term benefit.
"The research performed here in Leicester has contributed towards a 60% sustained reduction in the overall operative risk which translates into greatly enhanced long term benefit to the patient and considerable rehabilitation savings to the NHS."
Dr Isabel Lee from The Stroke Association commented: "We are extremely encouraged by the results from this programme of research that was funded by The Stroke Association.
"It is encouraging to see how simple monitoring of patients following a carotid endarterectomy can reduce the risk of stroke by a significant amount. We look forward to seeing how this research translates into clinical practice, where it could lead to the prevention of many potentially devastating strokes."
*Professor Evans is Professor of Medical Physics at the University of Leicester, and Head of Service, Medical Physics, at the University Hospitals of Leicester NHS Trust. Professor Naylor is an Honorary Professor of Surgery at the University of Leicester, and a Consultant Vascular Surgeon, at the University Hospitals of Leicester NHS Trust.
University Of Leicester
A member of the 1994 Group of universities that share a commitment to research excellence, high quality teaching and an outstanding student experience.
- Ranked top for student satisfaction in England (jointly with Oxford) among mainstream universities (average score of 4.4 out of 5 for overall satisfaction)
- Ranked as a Top 20 university by The Sunday Times University Guide, The Guardian University Guide and the UK Good University Guide
- One of just 23 UK universities to feature in world's top 200- Shanghai Jiao Tong International Index, 2005-07.
- Ranked in top 200 world universities by the THES (Times Higher Education Supplement)
- Short listed University of the Year in 2007 by The Sunday Times and Short listed Higher Education Institution of the Year - THES awards 2005 and 2006
- Ranked top 10 in England for research impact by The Guardian
- Students' Union of the Year award 2005, short listed 2006 and 2007
Founded in 1921, the University of Leicester has 19,000 students from 136 countries. Teaching in 18 subject areas has been graded Excellent by the Quality Assurance Agency- including 14 successive scores - a consistent run of success matched by just one other UK University. Leicester is world renowned for the invention of DNA Fingerprinting by Professor Sir Alec Jeffreys and houses Europe's biggest academic Space Research Centre. 90% of staff are actively engaged in high quality research and 13 subject areas have been awarded the highest rating of 5* and 5 for research quality, demonstrating excellence at an international level. The University's research grant income places it among the top 20 UK research universities. The University employs over 3,000 people, has an annual turnover of £184m, covers an estate of 94 hectares and is engaged in a £300m investment programme- among the biggest of any UK university.
University of Leicester
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