A NOVEL METHOD FOR DETERMINING THE ARRIVAL TIME OF REFLECTED WAVE AT SINGLE SITE: VALIDATION USING PHASE CONTRAST MAGNETIC RESONANCE DATA

被引:0
作者
Ayadi, Asma [1 ]
Sahtout, Wassila [2 ]
Baledent, Olivier [3 ]
机构
[1] Univ Tunis Manar, Higher Inst Med Technol Tunis, Lab Biophys & Med Technol, 9 St Doctor Zouheir, Safi 1006, Tunisia
[2] Univ Sfax, Higher Inst Biotechnol Sfax, Lab Biophys & Med Technol, Sfax, Tunisia
[3] Univ Picardie Jules Verne, Dept Imaging & Biophys, CHU Amiens, F-80054 Amiens, France
关键词
Mathematical model; blood flow signal; cepstral analysis; wave speed; arrival time; reflected waves; PULSE PRESSURE; ARTERIAL; IMPEDANCE; STIFFNESS; MODEL;
D O I
10.1142/S0219519422500233
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Characterization of the wave reflection and mainly its return time has significant clinical value in detecting cardiovascular and cerebrovascular diseases. Indeed, the return time is an indicator which is used to evaluate the performance of peripheral perfusion and the propagation speed for arterial stiffness measurement. The study is aimed at implementing a novel model based on cepstral analysis for estimation of the arrival time of reflected wave (t(0)). The proposed method is specially based on cepstral analysis of the simulated blood velocity wave by using the Matlab software. To achieve this aim, we used a theoretical bidimensional model to simulate blood flow velocity, and we combined this model with clinical data acquired in two healthy subjects using phase contrast magnetic resonance imaging (PCMRI). Values of the arrival time of reflected wave measured are similar to the theoretical values. The suggested model is validated in vivo. We can conclude that the novel approach described in this paper offers a promising efficient and convenient method to determinate noninvasively arrival time of reflected wave.
引用
收藏
页数:12
相关论文
共 28 条
[1]  
Abdessalem K B, 2012, Comput Methods Biomech Biomed Engin, V15 Suppl 1, P108
[2]  
Abdessalem K B, 2012, Comput Methods Biomech Biomed Engin, V15 Suppl 1, P63
[3]   Novel wave intensity analysis of arterial pulse wave propagation accounting for peripheral reflections [J].
Alastruey, Jordi ;
Hunt, Anthony A. E. ;
Weinberg, Peter D. .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING, 2014, 30 (02) :249-279
[4]  
Ayadi Asma, 2018, Biophysical Reviews and Letters, V13, P61, DOI 10.1142/S1793048018500054
[5]   A Meta-Analysis of the Mechanism of Blood Pressure Change With Aging [J].
Baksi, Arun J. ;
Treibel, Thomas A. ;
Davies, Justin E. ;
Hadjiloizou, Nearchos ;
Foale, Rodney A. ;
Parker, Kim H. ;
Francis, Darrel P. ;
Mayet, Jamil ;
Hughes, Alun D. .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2009, 54 (22) :2087-2092
[6]   New method for estimating arterial pulse wave velocity at single site [J].
Ben Abdessalem, Khaled ;
Flaud, Patrice ;
Zobaidi, Samir .
COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2018, 21 (01) :55-64
[7]   Experimental Models of Compliance and Young's Modulus of Woven Vascular Prosthesis [J].
Chen, Ying ;
Ding, Xin ;
Li, Yuling ;
Zhao, Xueqian ;
Hu, Jiyong .
ADVANCED TEXTILE MATERIALS, PTS 1-3, 2011, 332-334 :609-612
[8]   Attenuation of Wave Reflection by Wave Entrapment Creates a "Horizon Effect" in the Human Aorta [J].
Davies, Justin E. ;
Alastruey, Jordi ;
Francis, Darrel P. ;
Hadjiloizou, Nearchos ;
Whinnett, Zachary I. ;
Manisty, Charlotte H. ;
Aguado-Sierra, Jazmin ;
Willson, Keith ;
Foale, Rodney A. ;
Malik, Iqbal S. ;
Hughes, Alun D. ;
Parker, Kim H. ;
Mayet, Jamil .
HYPERTENSION, 2012, 60 (03) :778-+
[9]   Measurements of wave speed and reflected waves in elastic tubes and bifurcations [J].
Khir, AW ;
Parker, KH .
JOURNAL OF BIOMECHANICS, 2002, 35 (06) :775-783
[10]   Evaluation of Noninvasive Methods to Assess Wave Reflection and Pulse Transit Time From the Pressure Waveform Alone [J].
Kips, Jan G. ;
Rietzschel, Ernst R. ;
De Buyzere, Marc L. ;
Westerhof, Berend E. ;
Gillebert, Thierry C. ;
Van Bortel, Luc M. ;
Segers, Patrick .
HYPERTENSION, 2009, 53 (02) :142-U77