A brief history of the development of transcranial tissue Doppler ultrasound.

IF 3.6 3区 生物学 Q1 BIOLOGY
Jennifer K Nicholls, Andrea Lecchini-Visintini, Jonathan Ince, Edward Pallett, Jatinder S Minhas, Mitsuhiro Oura, Emma M L Chung
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引用次数: 0

Abstract

This article documents the early development of the first transcranial Doppler (TCD)-based ultrasound system for continuous monitoring of brain tissue pulsations (BTPs). Transcranial tissue Doppler (TCTD) uses a lightweight, wearable single-element ultrasound probe to track tissue motion perpendicular to the skin's surface, providing tissue displacement estimates along a single beam line. Feasibility tests using an adapted TCD system confirmed that brain tissue motion data can be obtained from existing TCD hardware. Brain Tissue Velocimetry (Brain TV), a TCTD data acquisition system, was then developed to provide a lightweight and portable means of continuously recording TCTD data in real-time. Brain TV measurements are synchronized to a 3-lead electrocardiogram and can be recorded alongside other physiological measurements, such as blood pressure, heart rate and end-tidal carbon dioxide. We have shown that Brain TV is able to record BTPs from sample depths ranging from 22 to 80 mm below the probe's surface and from multiple positions on the head. Studies in healthy volunteers, stroke patients and ultrasound phantom brain models demonstrate how TCTD might provide insights into the relationships between physiological measurements and brain tissue motion and show promise for rapid clinical assessment and continuous monitoring of BTPs.

经颅组织多普勒超声发展简史。
本文记录了首个基于经颅多普勒(TCD)的连续监测脑组织脉动(BTPs)超声系统的早期发展。经颅组织多普勒(TCTD)使用一种重量轻、可穿戴的单元件超声探头来跟踪垂直于皮肤表面的组织运动,并沿单一波束线提供组织位移估计。采用改进的TCD系统进行可行性测试,证实可以从现有的TCD硬件获得脑组织运动数据。脑组织测速仪(Brain TV)是一种TCTD数据采集系统,它提供了一种轻便、便携的方法,可以实时连续记录TCTD数据。脑电视测量与3导联心电图同步,可以与其他生理测量一起记录,如血压、心率和潮末二氧化碳。我们已经证明,大脑电视能够从探头表面以下22到80毫米的样本深度和头部的多个位置记录btp。对健康志愿者、中风患者和超声幻脑模型的研究表明,TCTD可能为生理测量和脑组织运动之间的关系提供见解,并为快速临床评估和连续监测btp提供了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Interface Focus
Interface Focus BIOLOGY-
CiteScore
9.20
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Each Interface Focus themed issue is devoted to a particular subject at the interface of the physical and life sciences. Formed of high-quality articles, they aim to facilitate cross-disciplinary research across this traditional divide by acting as a forum accessible to all. Topics may be newly emerging areas of research or dynamic aspects of more established fields. Organisers of each Interface Focus are strongly encouraged to contextualise the journal within their chosen subject.
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