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Perfusion Harmonic Imaging of the Human Brain

机译:人脑的灌注谐波成像

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The fast visualisation of cerebral microcirculation supports diagnosis of acute cerebrovascular diseases. However, the commonly used CT/MRI-based methods are time consuming and, moreover, costly. Therefore we propose an alternative approach to brain perfusion imaging by means of ultrasonography. In spite of the low signaloise-ratio of transcranial ultrasound and the high impedance of the skull, flow images of cerebral blood flow can be derived by capturing the kinetics of appropriate contrast agents by harmonic ultrasound image sequences. In this paper we propose three different methods for human brain perfusion imaging, each of which yielding flow images indicating the status of the patient's cerebral microcirculation by visualising local flow parameters. Bolus harmonic imaging (BHI) displays the flow kinetics of bolus injections, while replenishment (RHI) and diminution harmonic imaging (DHI) compute flow characteristics from contrast agent continuous infusions. RHI measures the contrast agents kinetics in the influx phase and DHI displays the diminution kinetics of the contrast agent acquired from the decay phase. In clinical studies, the BHI- and RHI-parameter images were found to represent comprehensive and reproducible distributions of physiological cerebral blood flow. For DHI it is shown, that bubble destruction and hence perfusion phenomena principally can be displayed. Generally, perfusion harmonic imaging enables reliable and fast bedside imaging of human brain perfusion. Due to its cost efficiency it complements cerebrovascular diagnostics by established CT/MRI-based methods.
机译:脑微循环的快速可视化支持急性脑血管疾病的诊断。但是,通常使用的基于CT / MRI的方法既费时又昂贵。因此,我们提出了一种通过超声检查对脑灌注成像的替代方法。尽管经颅超声的信号/噪声比低且颅骨的阻抗高,但是可以通过谐波超声图像序列捕获适当的造影剂的动力学来得出脑血流的血流图像。在本文中,我们提出了三种不同的人脑灌注成像方法,每种方法都可以通过可视化局部血流参数来显示指示患者大脑微循环状态的血流图像。团谐波成像(BHI)显示大剂量注射的流动动力学,而补给(RHI)和减谐波成像(DHI)从造影剂连续输注中计算出流动特性。 RHI测量流入阶段的造影剂动力学,而DHI显示从衰变阶段获取的造影剂的减少动力学。在临床研究中,发现BHI和RHI参数图像代表生理性脑血流的全面且可重现的分布。对于DHI来说,表明可以主要显示出气泡破坏和因此的灌注现象。通常,灌注谐波成像可实现人脑灌注的可靠而快速的床旁成像。由于具有成本效益,它通过建立的基于CT / MRI的方法来补充脑血管诊断。

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