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Träfflista för sökning "WFRF:(Lindström Tobias) ;pers:(Nilsson Jan)"

Sökning: WFRF:(Lindström Tobias) > Nilsson Jan

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1.
  • Erlöv, Tobias, et al. (författare)
  • A method for measuring the variation of intima-media thickness during the entire cardiac cycle using B-Mode images
  • 2011
  • Ingår i: 2011 IEEE International Ultrasonics Symposium (IUS). - 9781457712531 ; , s. 2126-2129
  • Konferensbidrag (refereegranskat)abstract
    • Increased intima-media thickness (IMT) has been shown to predict cardiovascular risk, and measurement of intima-media thickness has been extensively used in medical research since the mid-1990s. IMT is conventionally measured by manual tracing, however this method is very time-consuming and suffers from large inter-observer variability. Numerous methods, both semi-automatic and fully-automatic, have been suggested to limit the influence of the observer. However, most methods only report one value per cardiac cycle instead of the variation of IMT over time. We propose a new method that measures the variation of IMT during the entire cardiac cycle. The method tracks spatial variations with compensation for both longitudinal movement and angle variations. This enables detection of positions where an inaccurate measurement of IMT has occurred. These can then be removed from the calculations in order to maximize the accuracy. The method was evaluated in vivo on 20 healthy individuals (mean age 38 years, range 25-57). The overall IMT in diastole (IMTdia) was 717+/-69 mu m and the intima-media compression (IMC) was 66+/-21 mu m which corresponds to a 9.2+/-2.6% maximal compression of the arterial wall during a cardiac cycle. The CV was 3.5% for IMTdia and 9.9% for IMC. Extending traditional IMT measurement to include also the variation of IMT during a cardiac cycle may improve the individual risk classification for cardiovascular diseases.
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2.
  • Erlöv, Tobias, et al. (författare)
  • A Method to Measure Shear Strain with High Spatial Resolution in the Arterial Wall Non-Invasively in vivo by Tracking Zero-Crossings of B-Mode Intensity Gradients
  • 2010
  • Ingår i: Proceedings - IEEE Ultrasonics Symposium. - 9781457703812 ; , s. 491-494
  • Konferensbidrag (refereegranskat)abstract
    • We have previously shown that there is a distinct longitudinal movement of the arterial wall during a cardiac cycle. This movement is larger in the intima-media region than in the adventitial region which introduces a substantial shear strain within the arterial wall. Our previously developed echo-tracking algorithm measured this shear strain by tracking two separate echoes, one in the intima-media region and one in the adventitia region and thus only a linear distribution was evaluated. The objective of this study was to suggest and evaluate a new improved method which can measure the intramural shear strain with higher spatial resolution and thereby provide more information on this new and rather unknown phenomenon. The mean maximum shear strain was 0.82 radians with a standard deviation of 0.17 radians and a CV-value of 14.2%. The total mean difference in measured longitudinal movement between the new and previous method was 10μm with a standard deviation of 90μm and a CV-value of 12.8%. The spatial distribution of the intramural shear strain seems to be very non-linear with a large amount of shear strain occurring in a small section around the transition between the media and adventitia layers.
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  • Resultat 1-2 av 2
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konferensbidrag (2)
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refereegranskat (2)
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Erlöv, Tobias (2)
Cinthio, Magnus (2)
Jansson, Tomas (2)
Rydén Ahlgren, Åsa (2)
Lindström, Kjell (2)
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Persson, Hans W (2)
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Lunds universitet (2)
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Engelska (2)
Forskningsämne (UKÄ/SCB)
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Medicin och hälsovetenskap (1)

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