Pulse wave velocity measurement along the ulnar artery in the wrist region using a high frequency ultrasonic array

被引:2
|
作者
Benchemoul, Maxime [1 ,2 ]
Mateo, Tony [1 ]
Savery, David [1 ]
Gehin, Claudine [2 ]
Massot, Bertrand [2 ]
Ferin, Guillaume [1 ]
Vince, Philippe [1 ]
Flesch, Martin [1 ]
机构
[1] Vetmon SA, Act Probe Dept, F-37000 Tours, France
[2] Univ Lyon, INSA Lyon, ECL, CNRS,UCBL,CPE Lyon,INL,UMR5270, F-69621 Villeurbanne, France
来源
2021 43RD ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE & BIOLOGY SOCIETY (EMBC) | 2021年
关键词
Pulse wave velocity; intima-media thickness; cardiovascular diseases; arm artery disease; ultrasounds; ulnar artery; wall detection; non-invasive; ultra-fast imaging; ATHEROSCLEROSIS; VALIDATION;
D O I
10.1109/EMBC46164.2021.9629889
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
A pulse wave velocity (PWV) measurement method performed above a small blood vessel using an ultrasonic probe is studied and reported in this paper. These experimentations are carried out using a high-frequency probe (14-22 MHz), allowing a high level of resolution compatible with the vessel dimensions, combined with an open research ultrasound scanner. High frame-rate (HFR) imaging (10 000 frames per second) is used for a precise PWV estimation. The measurements are performed in-vivo on a healthy volunteer. The probe is placed above the ulnar artery on the wrist in order to make longitudinal scans. In addition to conventional duplex ultrasound evaluation, the measurement of the PWV using this method at this location could strengthen the detection and diagnosis of cardiovascular diseases (CVDs), in particular for arm artery diseases (AADs). Moreover, these experimentations are also carried out within the scope of a demonstration for a potential miniaturized and wearable device (i.e., a probe with fewer elements, typically less than 32, and its associated electronics). The study has shown results coherent with expected PWV and also promising complementary results such as intima-media thickness (IMT) with spatiotemporal resolution on the order of 6.2 mu m and 0.1 ms.
引用
收藏
页码:4123 / 4127
页数:5
相关论文
共 50 条
  • [21] High brachial-ankle pulse wave velocity is an independent predictor of the presence of coronary artery disease in men
    Imanishi, R
    Seto, S
    Toda, G
    Yoshida, M
    Ohtsuru, A
    Koide, Y
    Baba, T
    Yano, K
    HYPERTENSION RESEARCH, 2004, 27 (02) : 71 - 78
  • [22] An invasive but simple and accurate method for ascending aorta-femoral artery pulse wave velocity measurement
    Kilic, Harun
    Yelgec, Selcuk
    Salih, Orcan
    Akdemir, Ramazan
    Karakurt, Ozlem
    Cagirci, Goksel
    Yeter, Ekrem
    Acikel, Sadik
    Dogan, Mehmet
    Arslantas, Ugur
    Baha, Resat Mehmet
    BLOOD PRESSURE, 2013, 22 (01) : 45 - 50
  • [23] Validation of a New Ankle Brachial Index Measurement System Using Pulse Wave Velocity
    Romero-Ante, Juan David
    Chicharro-Luna, Esther
    Manrique-Cordoba, Juliana
    Vicente-Samper, Jose Maria
    Gracia-Sanchez, Alba
    Sabater-Navarro, Jose Maria
    BIOSENSORS-BASEL, 2024, 14 (05):
  • [24] Measurement of carotid pulse wave velocity using ultrafast ultrasound imaging in hypertensive patients
    Li, Xiaopeng
    Jiang, Jue
    Zhang, Hong
    Wang, Hua
    Han, Donggang
    Zhou, Qi
    Gao, Ya
    Yu, Shanshan
    Qi, Yanhua
    JOURNAL OF MEDICAL ULTRASONICS, 2017, 44 (02) : 183 - 190
  • [25] An Automatic Pulse Wave Velocity Estimation using a Blood Pressure Sensor for Invasive Measurement
    Choi, Junghyeon
    Park, Junho
    Cho, Jongman
    PROCEEDINGS OF THE THIRD INTERNATIONAL CONFERENCE ON SENSING TECHNOLOGY, 2008, : 539 - 542
  • [26] Association between Brachial-Ankle Pulse Wave Velocity and Microalbuminuria and to Predict the Risk for the Development of Microalbuminuria Using Brachial-Ankle Pulse Wave Velocity Measurement in Type 2 Diabetes Mellitus Patients
    Kim, Byong-Kyu
    Acharya, Dilaram
    Nah, Deuk-Young
    Rhee, Moo-Yong
    Yoo, Seok-Ju
    Lee, Kwan
    HEALTHCARE, 2019, 7 (04)
  • [27] Accurate performance and associated influence factors for Pulse Wave Velocity measurement of carotid arteriesbased on ultrasonic transit time method
    Deng L.
    Zhang Y.
    Yang L.
    Hu X.
    Li Z.
    Gao L.
    Zhang J.
    Dianzi Yu Xinxi Xuebao/Journal of Electronics and Information Technology, 2017, 39 (02): : 316 - 321
  • [28] Repeatability of non-invasive measurement of intracerebral pulse wave velocity using transcranial Doppler
    Gladdish, S
    Manawadu, D
    Banya, W
    Cameron, J
    Bulpitt, CJ
    Rajkumar, C
    CLINICAL SCIENCE, 2005, 108 (05) : 433 - 439
  • [29] Retinal pulse wave velocity measurement using spectral-domain optical coherence tomography
    Li, Qian
    Li, Lin
    Fan, Shanhui
    Dai, Cuixia
    Chai, Xinyu
    Zhou, Chuanqing
    JOURNAL OF BIOPHOTONICS, 2018, 11 (02)
  • [30] Validation of a new piezo-electronic device for non-invasive measurement of arterial pulse wave velocity according to the artery society guidelines
    Margarita S. Morales
    Paula E. Cuffaro
    Jessica Barochiner
    Marcelo A. Rada
    Jose Alfie
    Lucas Aparicio
    Marcos Marin
    Carlos R. Galarza
    Gabriel D. Waisman
    Artery Research, 2015, 10 : 32 - 37