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以创新技术提升影像高度 飞利浦推出Multiva 1.5T XD磁共振

2017-11-15 佚名 健康界

双独立处理系统,真16平台、BEST coil,魔镜2.0技术……飞利浦推出Multiva 1.5T XD磁共振,以创新技术提升影像高度。

互联网数字化时代,技术与产品的更新迭代日新月异;几年前还属于高大上的1.5T磁共振,转瞬即成为众多医院影像科的标配产品与主力机型,市场型号也不胜枚举。但好比手机拍照不再以像素高低论英雄(1200万像素iPhone 7的拍照画质远胜众多2000万像素安卓手机),场强也不再是衡量磁共振品质高低的唯一标准。为此,科技底蕴丰厚的飞利浦医疗,早在场强之外,赋予了1.5T磁共振更多高端标准:提升临床效能,改善患者体验,强化经济价值…… Multiva 1.5T XD磁共振,即是飞利浦医疗推出的创新代表作。


双独立处理系统——打破传统磁共振精度、速度瓶颈

飞利浦Multiva 1.5T XD的突出创新亮点,在于革命性地重塑了磁共振图像处理系统,针对磁共振梯度和射频运行规律,通过强化其浮点运算、并行计算的能力,使之不再局限于三维图像处理,而是能够实现四维图像的精准解析,并首次从磁共振中控处理系统当中独立出来。

因为专业,所以更强!

在磁共振图像处理系统独立后,飞利浦Multiva 1.5T XD的图像处理任务便彻底从磁共振中控处理系统当中剥离,进而使得中控处理系统具备更强大的分布式计算及物理模拟能力,将射频精准度提升两个数量级,使磁共振整体性能革命性提升。

1.5T磁共振从此进入精准影像时代!

真16平台、BEST coil——定义高端1.5T磁共振新标准

作为高端1.5T必备平台,飞利浦Multiva 1.5T XD真16平台涵盖16 通道射频、16 通道线圈及16 倍加速功能,真正定义高端1.5T磁共振新标准。其16倍加速能力使Multiva 1.5T XD的扫描速度与图像质量兼备——所有常规检查7min内即可完成,最均匀磁场带来1325px超广角扫查能力。

此外,飞利浦推出的全球第三代高清一体化线圈——BEST coil,真正将第一代高密度靶线圈的高信噪比与第二代一体化线圈技术操作便捷的两大优势完美结合,给Multiva 1.5T XD用户呈现了一种全新的应用体验:0线圈快速流程、0距离高清成像。至此,临床扫描时多部位检查可一次搞定,无需再更换线圈;任何部位扫描均可实现智能自动识别,系统会根据最佳图像质量-信噪比来选择线圈单元。30%流通量的提升,极大提升了磁共振的临床效益。

坐拥潜力,尽享未来!

魔镜2.0技术——实现脂肪全消除

因以往硬件平台的限制,1.5T磁共振在颈椎、足踝等部位压脂都不够理想,医生很难判断、区分脂肪和病变之间的差异;同时,由于扫描技术的限制,常规T2/T1/PD和压脂序列都需要单独逐个扫描用于综合诊断,因此导致扫描时间过长,既让病患难以忍受,同时也阻遏了流通量的提升。

Multiva 1.5T XD磁共振魔镜成像mDIXON-TSE,创新实现一次扫描四幅图像,在减少一半扫描时间的同时,为业界带来最佳的压脂图像,确保医生诊断更为精准。

科技成就未来,创新永无止境!顺应时代需求而生的Multiva 1.5T XD磁共振,在全面临床应用、快速流程化操作、优质图像质量及患者舒适化体验等方面均达到近年来市场制高点,充分体现了飞利浦医疗的雄厚研发实力和对临床需求的快速响应能力。

秉承“通过有意义的创新来改善人们的生活”这一核心与使命,飞利浦医疗致力于尽最大努力给予用户用最低成本,以最快方式提供最贴心医疗关护的可能;致力于用科技创造不同——为使操作技师、阅片医生、广大患者能够从精准影像诊断当中获益,飞利浦医疗的创新,将一直在路上!

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    2017-11-15 Y—xianghai

    学习了新知识

    0

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Hepatology:磁共振成像对儿童非酒精性脂肪肝的诊断如何?

近期,一项发表在杂志Hepatology上的研究评估了在半胱胺酒石酸缓释治疗儿童非酒精性脂肪性肝病(CyNCh)试验中,治疗前后肝脏脂肪变性等级的儿童磁共振成像(MRI)质子密度脂肪分数(PDFF)的表现,此项研究使用中心评分的组织学作为参考。此项研究的受试者均进行了多回波1.5T或3T MRI扫描。在169名受试儿童中,分别有110例(65%)和83例(49%)在基线和治疗结束时(EOT;52周

Neurology: 你以为TIA/小卒中仅会痛苦一时吗?谁曾知竟是祸不单行的先兆!

脑血管病发病越来越普遍同时也越来越年轻化,并且TIA及小卒中随屡见不鲜,然而却常不为患者甚至临床医生所重视。一过性神经功能性障碍常常被敷衍了事。可谁知TIA/小卒中是近期新发梗死的先兆呢?!有研究人员对TIA/小卒中进行了前瞻性研究,旨在研究TIA或小卒中(BI)后1小时内急性灌注加权成像(PWI)的异常灌注区域与发病后1周内MRI复查BI发生率之间的关系。本研究结果被发表在神经病学权威杂志Neu

Radiology:做磁共振时轰隆隆的噪声对你的听力会产生危害吗?

听性脑干反应(ABR):属短潜伏期电位,一般用短声进行测试。可以与其他听力学检查结合用于鉴别听力损失性质;最常用于检查有无耳蜗后病变:如各波潜伏期延长、波间期延长、双耳间潜伏期或波间期相差明显,以及波形分化变差都提示耳蜗后病变存在的可能性。本研究旨在验证在耳塞及海绵等听力保护装置的保护下,健康志愿者在3.0T多序列MR神经成像扫描时长达51分钟的噪声暴露是否会引起听力阈值的变化,并将结果发表在Ra

JCO:磁共振成像和[18F]氟脱氧葡萄糖正电子发射断层扫描在有症状多发性骨髓瘤患者的诊断与维持治疗前的前瞻性评估研究:IMAJEM研究结果

众所周知磁共振成像(MRI)和正电子发射断层扫描(PET-CT)是多发性骨髓瘤(MM)患者重要的检查手段。2017年7月在JCO上发表的一篇文章对MM患者进行了一项前瞻性研究,目的是比较MRI和PET-CT对骨损伤的诊断及这些技术的预后价值。

Radiology:淋巴系统有病变?用个MR新技术检查检查!

淋巴系统由淋巴、淋巴管、淋巴结与淋巴组织等组成:(扁桃腺、脾脏 、胸腺)所有的淋巴管最后汇集成两条主要的大淋巴管,包括胸管与右淋巴管再注入静脉而重新进入血液循环中。本研究旨在评价双弛豫对比(DARC)磁共振(MR)淋巴管显像与常规MR淋巴管显像在继发性淋巴水肿患者单显淋巴系统的临床价值,并将结果发表在Radiology上。

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