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Towards ultrasonic detection of acoustic windows for transcranial Doppler ultrasound and related procedures

机译:寻求经颅多普勒超声的声学窗口的超声检测及相关程序

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Transcranial Ultrasound (TCD) is a neurosonological procedure to examine intracranial brain supplying arteries, by visualizing cerebral blood flow patterns. In patients suffering from severe blood flow disruption to the brain neurological pathology conditions such as stenosis, occlusions and vasospasm can be identified with TCD. Ischemic and hemorrhagic strokes require regular TCD monitoring. However, the TCD procedure is largely dependent on the operator's skills and experiences. Finding a suitable site on the temporal plane (an acoustic window) for transcranial insonoification can be challenging in patients with poor or no acoustic windows. In such cases, diagnosis and prognosis may be problematic. Approximately, 10–20% of patients have poor or no acoustic windows. Therefore, early detection of acoustic windows for transcranial sonograph is desirable. This paper examines ultrasound signals in-vitro bovine's biological transcranial media to early detect acoustic windows. The results suggest that transcranial acoustic windows can be detected with an ultrasound signal. Ultrasound attenuation-velocity and B-Mode Ultrasound detection contrast the temporal bone and the surrounding soft-tissue, suggesting that acoustic windows can be detected.
机译:经颅超声检查(TCD)是一种神经超声检查程序,通过可视化脑血流模式来检查颅内供血动脉。在患有严重血流破坏的大脑神经病理学状况(如狭窄,闭塞和血管痉挛)的患者中,可以用TCD进行识别。缺血性和出血性中风需要定期的TCD监测。但是,TCD程序很大程度上取决于操作员的技能和经验。对于声学窗较差或没有声学窗的患者,在颞平面(声学窗)上找到合适的部位进行经颅超声检查可能是具有挑战性的。在这种情况下,诊断和预后可能会出现问题。大约有10–20%的患者有较差的声窗或无声窗。因此,希望尽早检测经颅超声检查仪的声学窗口。本文检查牛体外生物经颅介质中的超声信号,以及早发现声窗。结果表明,可以用超声信号检测经颅声学窗口。超声衰减速度和B模式超声检测可对比颞骨和周围软组织,表明可以检测到声学窗口。

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