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Artificial intelligence can speed up the detection of stroke

Date:
March 30, 2020
Source:
University of Turku
Summary:
Scientists have created a fully automated method for acute ischemic lesion segmentation on brain MRIs and shows how artificial intelligence can reduce the work load of radiologists.
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Timely detection and accurate segmentation of acute ischemic stroke (AIS) lesions on magnetic resonance images (MRIs) are essential for the triaging patient for endovascular therapy. Lesion segmentation is a routine process where the abnormal areas within brain images are qualitatively and manually picked by expert radiologists. However, manual lesion segmentation is time consuming and suffers from operator-bias. Accordingly, efficient and low-cost approaches for AIS lesion screening are yet to be introduced.

This research introduces a novel and fully automated technique for detection and segmentation of AIS lesions on MRIs and classification of images into stroke and none-stroke. This fully automated anomaly-detection method compares diffusion weighted images (DWIs) and apparent diffusion coefficients (ADC) images of the subjects with a group of healthy images in voxel-level. Areas with hyperintensity on DWI and hypointensity on ADC are identified as lesions and saved as lesion masks. The lesion segmentation method was investigated on approximately 100 cases. Since there is a risk of false lesion identification due to the artifacts, noises, and image low resolution, the lesion masks created by the method are screened and filtered via a binary classifier which either confirms that the created lesion mask contains a real AIS lesion or not. The classification performance was evaluated on about 200 MRIs.

The published results in the Journal of Neuroscience Methods show good agreement with the manually drawn lesions by experts (gold standard). The whole approach, including lesion segmentation and image classification, is straightforward, fast and does not require high computation power and memory.

"We believe that this method has the capacity to be implemented on an ordinary desktop workstation integrated into the routine clinical diagnostic pipelines of the hospitals. This approach can help the radiologists to speed up the workflow of lesion detection and to reduce the operator bias in lesion segmentation owing to the reproducibility of the method," tells project researcher Sanaz Nazari-Farsani from Turku PET Centre.


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Materials provided by University of Turku. Note: Content may be edited for style and length.


Journal Reference:

  1. Sanaz Nazari-Farsani, Mikko Nyman, Tomi Karjalainen, Marco Bucci, Janne Isojärvi, Lauri Nummenmaa. Automated segmentation of acute stroke lesions using a data-driven anomaly detection on diffusion weighted MRI. Journal of Neuroscience Methods, 2020; 333: 108575 DOI: 10.1016/j.jneumeth.2019.108575

Cite This Page:

University of Turku. "Artificial intelligence can speed up the detection of stroke." ScienceDaily. ScienceDaily, 30 March 2020. <www.sciencedaily.com/releases/2020/03/200330152137.htm>.
University of Turku. (2020, March 30). Artificial intelligence can speed up the detection of stroke. ScienceDaily. Retrieved December 3, 2024 from www.sciencedaily.com/releases/2020/03/200330152137.htm
University of Turku. "Artificial intelligence can speed up the detection of stroke." ScienceDaily. www.sciencedaily.com/releases/2020/03/200330152137.htm (accessed December 3, 2024).

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