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首页> 外文期刊>Ultrasound in Medicine and Biology >Assessing the imaging capabilities of radial mechanical and electronic echo-endoscopes using the resolution integral
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Assessing the imaging capabilities of radial mechanical and electronic echo-endoscopes using the resolution integral

机译:使用分辨率积分评估径向机械和电子回波内窥镜的成像能力

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Over the past decade there have been significant advances in endoscopic ultrasound (EUS) technology. Although there is an expectation that new technology will deliver improved image quality, there are few methods or phantoms available for assessing the capabilities of mechanical and electronic EUS systems. The aim of this study was to investigate the possibility of assessing the imaging capability of available EUS technologies using measurements of the resolution integral made with an Edinburgh Pipe Phantom. Various radial EUS echo-endoscopes and probes were assessed using an Edinburgh Pipe Phantom. Measurements of the resolution integral (R), depth of field (LR) and characteristic resolution (DR) were made at all operating frequencies. The mean R value for Fuji miniprobes was 16.0. The GF-UM20 and GF-UM2000 mechanical radial scopes had mean R values of 24.0 and 28.5, respectively. The two electronic radial echo-endoscopes had similar mean R values of 34.3 and 34.6 for the Olympus GF-UE260 and Fujinon EG-530 UR scopes, respectively. Despite being older technology, the mechanical GF-UM2000 scope had superior characteristic resolution (DR), but could not compare with the depths of field (LR) delivered by the current generation of electronic radial scopes, especially at the standard operating frequencies of 7.5 and 12 MHz.
机译:在过去的十年中,内窥镜超声(EUS)技术取得了重大进步。尽管人们期望新技术将提供更好的图像质量,但几乎没有可用的方法或模型来评估机械和电子EUS系统的功能。这项研究的目的是研究通过使用爱丁堡幻影钢管制造的分辨率积分来评估可用的EUS技术的成像能力的可能性。使用爱丁堡管幻影仪评估了各种放射状EUS回波内窥镜和探头。在所有工作频率下都对分辨率积分(R),景深(LR)和特征分辨率(DR)进行了测量。富士微型探头的平均R值为16.0。 GF-UM20和GF-UM2000机械径向瞄准镜的平均R值分别为24.0和28.5。对于Olympus GF-UE260和Fujinon EG-530 UR示波器,两个电子径向回波内窥镜的平均R值分别相似,分别为34.3和34.6。尽管是较旧的技术,但机械GF-UM2000示波器具有卓越的特性分辨率(DR),但无法与当前一代的电子径向示波器提供的景深(LR)相比,尤其是在7.5和12 MHz。

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