首页> 外文期刊>Journal of neurosurgery. >Quantification of susceptibility artifacts produced on high-field magnetic resonance images by various biomaterials used for neurosurgical implants. Technical note.
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Quantification of susceptibility artifacts produced on high-field magnetic resonance images by various biomaterials used for neurosurgical implants. Technical note.

机译:量化用于神经外科植入物的各种生物材料在高场磁共振图像上产生的磁化伪影。技术说明。

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摘要

Although various biomaterials such as ceramics or titanium alloy are widely used in neurosurgery, the susceptibility artifacts that appear around these materials cause problems when a magnetic resonance (MR) imager is used to assess lesions after surgery. The purpose of the present study was to quantify the susceptibility artifacts produced by various biomaterials used for neurosurgical implants. Using a 3-tesla MR imaging unit, we obtained MR images of various biomaterials, including six types of ceramics, a cobalt-based alloy (Elgiloy), pure titanium, a titanium alloy, and stainless steel. All implants shared a uniform size and shape. In each image, a linear region of interest was defined across the center of the biomaterial in the transverse direction, and the diameter of the susceptibility artifact was calculated. The ceramics produced a considerably smaller artifact diameter than those produced by other biomaterials. Among the types of ceramics, zirconia was found to produce the smallest artifact diameter. Among the remaining biomaterials, the diameters of the artifacts decreased in order from that associated with stainless steel to those associated with cobalt-based alloys, pure titanium, and titanium alloy. Little difference was observed between the artifact diameters associated with pure titanium and titanium alloy. Ceramics are the most suitable biomaterials for minimizing artifacts in high-field MR imaging.
机译:尽管在神经外科手术中广泛使用了各种生物材料,例如陶瓷或钛合金,但是当使用磁共振(MR)成像仪评估手术后的病变时,这些材料周围出现的磁化伪影会引起问题。本研究的目的是量化用于神经外科植入物的各种生物材料产生的药敏伪影。使用3-tesla MR成像单元,我们获得了多种生物材料的MR图像,包括六种陶瓷,钴基合金(Elgiloy),纯钛,钛合金和不锈钢。所有植入物均具有统一的尺寸和形状。在每个图像中,在横向上跨过生物材料的中心定义了一个感兴趣的线性区域,并计算了磁化伪影的直径。陶瓷产生的伪像直径比其他生物材料产生的伪像直径小得多。在陶瓷类型中,发现氧化锆产生的伪影直径最小。在其余的生物材料中,伪影的直径从与不锈钢相关的直径到与钴基合金,纯钛和钛合金相关的直径依次减小。与纯钛和钛合金相关的伪影直径之间几乎没有观察到差异。陶瓷是最适合用于最大程度减少高场MR成像伪影的生物材料。

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