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首页> 外文期刊>NeuroImage >Functional MRI in neonates using neonatal head coil and MR compatible incubator.
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Functional MRI in neonates using neonatal head coil and MR compatible incubator.

机译:使用新生儿头部线圈和MR兼容培养箱对新生儿进行功能性MRI。

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摘要

Structural and functional magnetic resonance imaging of the newborn brain is a complex and challenging task. Term and preterm neonates require a controlled microenvironment and close monitoring during the MRI study to maintain respiratory and cardiovascular functions, body temperature, and fluid and electrolyte homeostasis. In addition, to minimize motion artifacts, most neonates also need to be sedated, which carries the risk of respiratory depression compromising the neonate's ability to maintain appropriate ventilation and oxygenation during the procedure. Finally, because of their small head size, the use of the standard MR head coils results in suboptimal picture quality in the neonate. Thus, these limitations affect our ability to obtain both high quality structural and functional MRI studies. To overcome these difficulties, we have utilized an MR compatible incubator with a built-in radiofrequency head coil optimized for the neonatal brain volume. In this study we demonstrate that functional MRIand high-resolution structural MRI of the newborn brain can be achieved with this novel design. The use of this equipment offers potential for studying the development of the preterm and term neonatal brain and obtaining state-of-the-art, high-resolution structural and functional imaging in this most vulnerable patient population.
机译:新生儿大脑的结构和功能磁共振成像是一项复杂而艰巨的任务。足月和早产儿在MRI研究期间需要受控的微环境并密切监测,以维持呼吸和心血管功能,体温以及体液和电解质的体内平衡。另外,为了使运动伪影最小化,大多数新生儿也需要镇静剂,这会带来呼吸抑制的风险,从而损害了新生儿在手术过程中维持适当通气和充氧的能力。最后,由于其头部较小,因此标准MR头部线圈的使用会导致新生儿的图像质量欠佳。因此,这些局限性影响了我们获得高质量结构和功能性MRI研究的能力。为了克服这些困难,我们使用了MR兼容的培养箱,该培养箱具有针对新生儿脑容量进行了优化的内置射频头线圈。在这项研究中,我们证明了使用这种新颖的设计可以实现新生儿大脑的功能性MRI和高分辨率结构MRI。该设备的使用为研究早产和足月新生儿脑的发育以及在此最易受伤害的患者人群中获得最新的高分辨率结构和功能成像提供了潜力。

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