首页> 外文期刊>Journal of neurosurgery. Pediatrics. >The dynamics of brain and cerebrospinal fluid growth in normal versus hydrocephalic mice: Laboratory investigation
【24h】

The dynamics of brain and cerebrospinal fluid growth in normal versus hydrocephalic mice: Laboratory investigation

机译:正常与脑积水小鼠脑和脑脊液生长的动力学:实验室研究

获取原文
获取原文并翻译 | 示例
       

摘要

Object. Hydrocephalus has traditionally been quantified by linear measures of ventricular size, with adjunct use cortical mantle thickness. However, clinical outcome depends on cognitive function, which is more directly related to brain volume than these previous measures. The authors sought to quantify the dynamics of brain and ventricular volume growth in normal compared with hydrocephalic mice. Methods. Hydrocephalus was induced in 14-day-old C57BL/6 mice by percutaneous injection of kaolin into the cisterna magna. Nine hydrocephalic and 6 normal mice were serially imaged from age 2-12 weeks with a 14.1-T MR imaging unit. Total brain and ventricle volumes were calculated, and linear discriminant analysis was applied. Results. Two very different patterns of response were seen in hydrocephalic mice compared with mice with normative growth. In one pattern (3 mice) brain growth was normal despite accumulation of CSF, and in the second pattern (6 mice) abnormal brain enlargement was accompanied by increased CSF volume along with parenchymal edema. In this latter pattern, spontaneous ventricular rupture led to normalization of brain volume, implying edema from transmantle pressure gradients. These 2 patterns of hydrocephalus were significantly discriminable using linear discriminant analysis (p < 0.01). In contrast, clinically relevant measurements of head circumference or frontal and occipital horn ratios were unable to discriminate between these patterns. Conclusions. This study is, to the authors' knowledge, the first serial quantification of the growth of brain and ventricle volumes in normal versus hydrocephalic development. The authors' findings demonstrate the feasibility of constructing normative curves of brain and fluid growth as complements to normative head circumference curves. By measuring brain volumes, distinct patterns of brain growth and enlargement can be observed, which are more likely linked to cognitive development and clinical outcome than fluid volumes alone.
机译:目的。传统上,脑积水是通过心室大小的线性测量来量化的,并伴有皮质套层厚度。但是,临床结果取决于认知功能,而认知功能比这些先前的措施与脑容量更直接相关。作者试图量化与脑积水小鼠相比正常脑和心室容积增长的动力学。方法。通过将高岭土经皮注射到大水罐中,在14天大的C57BL / 6小鼠中诱发脑积水。使用14.1-T MR成像装置对2-12周龄的9只脑积水和6只正常小鼠进行了连续成像。计算总脑和心室体积,并应用线性判别分析。结果。与正常生长小鼠相比,脑积水小鼠有两种非常不同的反应模式。在一种模式(3只小鼠)中,尽管有CSF积聚,脑部生长仍正常;而在第二种模式(6只小鼠)中,异常的脑部肿胀伴有CSF量增加以及实质性水肿。在后一种模式中,自发性心室破裂导致脑容量正常化,这暗示着跨膜压梯度导致的水肿。使用线性判别分析可以明显地区分这2种脑积水(p <0.01)。相反,头围或额角与枕角比例的临床相关测量值无法区分这些模式。结论。据作者所知,这项研究是对正常脑积水和脑积水发展中脑和脑室容积增长的首次连续定量。作者的发现证明了构建脑和液体生长的规范曲线作为规范的头围曲线的补充的可行性。通过测量大脑容量,可以观察到大脑生长和扩张的不同模式,这与单独的液体容量相比,更可能与认知发展和临床结果相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号