Department of Biomedical Engineering, Texas A&M University, MS 3120, 337 Zachry Engineering Center, College Station, TX 77843, USA.
Ann Biomed Eng. 2012 Apr;40(4):883-97. doi: 10.1007/s10439-011-0468-1. Epub 2011 Nov 19.
Shape memory polymer (SMP) foam possesses structural and mechanical characteristics that make them very promising as an alternative treatment for intracranial aneurysms. Our SMP foams have low densities, with porosities as high as 98.8%; favorable for catheter delivery and aneurysm filling, but unfavorable for attenuating X-rays. This lack of contrast impedes the progression of this material becoming a viable medical device. This paper reports on increasing radio-opacity by incorporating a high-Z element, tungsten particulate filler to attenuate X-rays, while conserving similar physical properties of the original non-opacified SMP foams. The minimal amount of tungsten for visibility was determined and subsequently incorporated into SMP foams, which were then fabricated into samples of increasing thicknesses. These samples were imaged through a pig's skull to demonstrate radio-opacity in situ. Quantification of the increase in image contrast was performed via image processing methods and standard curves were made for varying concentrations of tungsten doped solid and foam SMP. 4% by volume loading of tungsten incorporated into our SMP foams has proven to be an effective method for improving radio-opacity of this material while maintaining the mechanical, physical and chemical properties of the original formulation.
形状记忆聚合物(SMP)泡沫具有结构和机械特性,使其成为颅内动脉瘤治疗的一种很有前途的替代方法。我们的 SMP 泡沫具有低密度,孔隙率高达 98.8%;有利于导管输送和动脉瘤填充,但不利于衰减 X 射线。这种缺乏对比度的情况阻碍了这种材料成为可行的医疗设备的发展。本文报告了通过掺入高 Z 元素钨颗粒填料来提高射线不透明度,同时保留原始未增白 SMP 泡沫的相似物理性能。确定了可见性所需的最小钨量,并随后将其掺入 SMP 泡沫中,然后将其制成不同厚度的样品。通过猪颅骨对这些样品进行成像,以证明原位射线不透明度。通过图像处理方法对图像对比度的增加进行了量化,并针对不同浓度的掺杂钨的固体和泡沫 SMP 制作了标准曲线。已证明将 4%体积的钨掺入我们的 SMP 泡沫中是一种有效方法,可以提高这种材料的射线不透明度,同时保持原始配方的机械,物理和化学性能。