Review of Mechanical Testing and Modelling of Thrombus Material for Vascular Implant and Device Design

被引:33
|
作者
Johnson, S. [1 ]
Duffy, S. [2 ,3 ]
Gunning, G. [3 ]
Gilvarry, M. [3 ]
McGarry, J. P. [1 ]
McHugh, P. E. [1 ]
机构
[1] Natl Univ Ireland, Coll Engn & Informat, Biomech Res Ctr BMEC, Biomed Engn, Galway, Ireland
[2] Galway Mayo Inst Technol, Galway, Ireland
[3] Neuravi Ltd, Galway, Ireland
关键词
Clot material; Mechanical characterization; Computational modelling; Mechanical thrombectomy; Material behaviour; Experimental testing; ABDOMINAL AORTIC-ANEURYSM; ACUTE ISCHEMIC-STROKE; INTRALUMINAL THROMBUS; VISCOELASTIC BEHAVIOR; CONSTITUTIVE MODEL; BLOOD-CLOTS; FIBRIN; BIOMECHANICS; COAGULATION; EFFICIENCY;
D O I
10.1007/s10439-017-1906-5
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
A thrombus or blood clot is a solid mass, made up of a network of fibrin, platelets and other blood components. Blood clots can form through various pathways, for example as a result of exposed tissue factor from vascular injury, as a result of low flow/stasis, or in very high shear flow conditions. Embolization of cardiac or vascular originating blood clots, causing an occlusion of the neurovasculature, is the major cause of stroke and accounts for 85% of all stroke. With mechanical thrombectomy emerging as the new standard of care in the treatment of acute ischemic stroke (AIS), the need to generate a better understanding of the biomechanical properties and material behaviour of thrombus material has never been greater, as it could have many potential benefits for the analysis and performance of these treatment devices. Defining the material properties of a thrombus has obvious implications for the development of these treatment devices. However, to-date this definition has not been adequately established. While some experimentation has been performed, model development has been extremely limited. This paper reviews the previous literature on mechanical testing of thrombus material. It also explores the use of various constitutive and computational models to model thrombus formation and material behaviour.
引用
收藏
页码:2494 / 2508
页数:15
相关论文
共 50 条
  • [21] SIMPLIFYING THE DESIGN PROCESS OF A MEMS-BASED NANOSCALE MATERIAL TESTING DEVICE
    Bansal, Richa
    Clark, Jason V.
    [J]. NANOTECHNOLOGY 2011: ELECTRONICS, DEVICES, FABRICATION, MEMS, FLUIDICS AND COMPUTATIONAL, NSTI-NANOTECH 2011, VOL 2, 2011, : 663 - 666
  • [22] Implants in bone: Part II. Research on implant osseointegration: Material testing, mechanical testing, imaging and histoanalytical methods
    von Wilmowsky C.
    Moest T.
    Nkenke E.
    Stelzle F.
    Schlegel K.A.
    [J]. Oral and Maxillofacial Surgery, 2014, 18 (4) : 355 - 372
  • [23] The relationship between material properties, device design, and the sensitivity of resonant mechanical sensors
    Waggoner, Philip S.
    Craighead, Harold G.
    [J]. JOURNAL OF APPLIED PHYSICS, 2009, 105 (05)
  • [24] The relationship between material properties, device design, and the sensitivity of resonant mechanical sensors
    Waggoner, Philip S.
    Craighead, Harold G.
    [J]. Journal of Applied Physics, 2009, 105 (05):
  • [25] Device-Based In Vitro Techniques for Mechanical Stimulation of Vascular Cells: A Review
    Davis, Caleb A.
    Zambrano, Steve
    Anumolu, Pratima
    Allen, Alicia C. B.
    Sonoqui, Leonardo
    Moreno, Michael R.
    [J]. JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2015, 137 (04):
  • [26] A review of memristor: material and structure design, device performance, applications and prospects
    Xiao, Yongyue
    Jiang, Bei
    Zhang, Zihao
    Ke, Shanwu
    Jin, Yaoyao
    Wen, Xin
    Ye, Cong
    [J]. SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS, 2023, 24 (01)
  • [27] Modelling mechanical behavior of cementitious material incorporating CNTs using design of experiments
    Hassan, Noha M.
    Fattah, Kazi P.
    Tamimi, Adil K.
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2017, 154 : 763 - 770
  • [28] Design and testing of a frictionless mechanical inerter device using living-hinges
    John, E. D. A.
    Wagg, D. J.
    [J]. JOURNAL OF THE FRANKLIN INSTITUTE-ENGINEERING AND APPLIED MATHEMATICS, 2019, 356 (14): : 7650 - 7668
  • [29] Design and Feasibility Testing of a Miniaturized Transapical Mechanical Circulatory Support Device: MVAD
    Slaughter, M. S.
    Giridharan, G. A.
    Aggarwal, S.
    Sobieski, M.
    Tamez, D.
    LaRose, J.
    Sherwood, L.
    Koenig, S. C.
    [J]. JOURNAL OF HEART AND LUNG TRANSPLANTATION, 2010, 29 (02): : S99 - S100
  • [30] Design, manufacture, mechanical testing and numerical modelling of an asymmetric composite crossbow limb
    Virk, Amandeep S.
    Summerscales, J.
    Hall, W.
    Grove, S. M.
    Miles, M. E.
    [J]. COMPOSITES PART B-ENGINEERING, 2009, 40 (03) : 249 - 257