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Controlled Catheter Movement Affects Dye Dispersal Volume in Agarose Gel Brain Phantoms

机译:受控导管运动会影响琼脂糖凝胶脑幻影中的染料分散体积

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摘要

The standard of care for treatment of glioblastoma results in a mean survival of only 12 to 15 months. Convection-enhanced delivery (CED) is an investigational therapy to treat glioblastoma that utilizes locoregional drug delivery via a small-caliber catheter placed into the brain parenchyma. Clinical trials have failed to reach their endpoints due to an inability of standard catheters to fully saturate the entire brain tumor and its margins. In this study, we examine the effects of controlled catheter movement on dye dispersal volume in agarose gel brain tissue phantoms. Four different catheter movement control protocols (stationary, continuous retraction, continuous insertion, and intermittent insertion) were applied for a single-port stepped catheter capable of intrainfusion movement. Infusions of indigo carmine dye into agarose gel brain tissue phantoms were conducted during the controlled catheter movement. The dispersal volume ( ), forward dispersal volume ( ), infusion radius, backflow distance, and forward flow distance were quantified for each catheter movement protocol using optical images recorded throughout the experiment. and for the retraction and intermittent insertion groups were significantly higher than the stationary group. The stationary group had a small but significantly larger infusion radius than either the retracting or the intermittent insertion groups. The stationary group had a greater backflow distance and lower forward flow distance than either the retraction or the intermittent insertion groups. Continuous retraction of catheters during CED treatments can result in larger than traditional stationary catheters, which may be useful for improving the outcomes of CED treatment of glioblastoma. However, catheter design will be crucial in preventing backflow of infusate up the needle tract, which could significantly alter both the and shape of the infusion.
机译:治疗胶质母细胞瘤的护理标准导致仅12至15个月的平均存活。对流增强的递送(CED)是一种治疗胶质母细胞瘤的调查治疗,其通过放入脑妥阳的小口径导管利用局部药物输送。由于不能完全饱和整个脑肿瘤及其边缘,临床试验未能达到其终点。在这项研究中,我们研究了受控导管运动对琼脂糖凝胶脑组织幽灵染料分散体积的影响。施加四种不同的导管运动控制方案(静止,连续缩回,连续插入和间歇插入),用于单端口阶梯式导管,能够闭合运动。在受控导管运动期间进行Indigo Carmine Dye进入琼脂糖凝胶脑组织幽灵的输注。对于各种实验记录的光学图像,对每个导管运动协议量化的分散体积(),前进分散体积(),输注半径,回流距离和正向流量。对于缩回和间歇性插入基团显着高于固定组。静止组比缩回或间歇插入基团具有小但显着较大的输注半径。静止组具有比缩回或间歇插入基团更大的回流距离和下向前流量距离。 CED处理期间的导管连续收缩可导致大于传统的固定导管,这对于改善CED治疗胶质母细胞瘤的结果可能是有用的。然而,导管设计将在防止输注的回流中是至关重要的,这可能会显着改变输注的既和形状。

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