Literature DB >> 33202384

Characterizing blood clots using acoustic radiation force optical coherence elastography and ultrasound shear wave elastography.

Hsiao-Chuan Liu1,2, Mehdi Abbasi1, Yong Hong Ding1, Tuhin Roy3, Margherita Capriotti1, Yang Liu1, Seán Fitzgerald1,4, Karen M Doyle4, Murthy Guddati3, Matthew W Urban1,5, Waleed Brinjikji1.   

Abstract

Thromboembolism in a cerebral blood vessel is associated with high morbidity and mortality. Mechanical thrombectomy (MT) is one of the emergenc proceduresperformed to remove emboli. However, the interventional approaches such as aspiration catheters or stent retriever are empirically selected. An inappropriate selection of surgical devices can influence the success rate during embolectomy, which can lead to an increase in brain damage. There has been growing interest in the study of clot composition and using a priori knowledge of clot composition to provide guidance for an appropriate treatment strategy for interventional physicians. Developing imaging tools which can allow interventionalists to understand clot composition could affect management and device strategy. In this study, we investigated how clots of different compositions can be characterized by using acoustic radiation force optical coherence elastography (ARF-OCE) and compared with ultrasound shear wave elastography (SWE). Five different clots compositions using human blood were fabricated into cylindrical forms from fibrin-rich (21% red blood cells, RBCs) to RBC-rich (95% RBCs). Using the ARF-OCE and SWE, we characterized the wave velocities measured in the time-domain. In addition, the semi-analytical finite element model was used to explore the relationship between the phase velocities with various frequency ranges and diameters of the clots. The study demonstrated that the wave group velocities generally decrease as RBC content increases in ARF-OCE and SWE. The correlation of the group velocities from the OCE and SWE methods represented a good agreement as RBC composition is larger than 39%. Using the phase velocity dispersion analysis applied to ARF-OCE data, we estimated the shear wave velocities decoupling the effects of the geometry and material properties of the clots. The study demonstrated that the composition of the clots can be characterized by elastographic methods using ARF-OCE and SWE, and OCE demonstrated better ability to discriminate between clots of different RBC compositions, compared to the ultrasound-based approach, especially in clots with low RBC compositions.

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Year:  2021        PMID: 33202384      PMCID: PMC7880883          DOI: 10.1088/1361-6560/abcb1e

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  49 in total

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9.  Sonorheometry: a noncontact method for the dynamic assessment of thrombosis.

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10.  Orbit image analysis machine learning software can be used for the histological quantification of acute ischemic stroke blood clots.

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2.  Characterizing thrombus with multiple red blood cell compositions by optical coherence tomography attenuation coefficient.

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3.  Novel Human Acute Ischemic Stroke Blood Clot Analogs for In Vitro Thrombectomy Testing.

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5.  Ultrasound Shear Wave Elastography and Transient Optical Coherence Elastography: Side-by-Side Comparison of Repeatability and Accuracy.

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6.  Intraoperative Ultrasound Shear-Wave Elastography in Focal Cortical Dysplasia Surgery.

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