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Manganese-enhanced magnetic resonance imaging in the whole visual pathway: chemical identification and neurotoxic changes

机译:全视通路中的锰增强磁共振成像:化学鉴定和神经毒性变化

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摘要

Background Little is known about the specificity of manganese-enhanced magnetic resonance imaging (MEMRI) and its neurotoxic effect of the whole visual pathway. Purpose To explore the specificity of MEMRI and the neurotoxic effect in the whole visual pathway. Material and Methods Twenty-four rats were divided into four groups, in which 50, 100, 200, and 400 nmol MnCl2 were injected into the left eye of each rat through intravitreal injection, respectively. MEMRI was performed one day after injection of MnCl2. Moreover, another 10 rats were divided into two groups, in which 200 and 400 nmol MnCl2 were injected into the left eye of each rat. One day after injecting, chemical identification and transmission electron microscopy were performed to verify the presence and pathological effects. Results The whole three-dimensional (3D) visual pathway of the left eye was observable on MEMRI with thin slab maximum intensity projection (TSMIP) in all rats except the 50 nmol group, which was confirmed by chemical identification. Higher dose of MnCl2 resulted in greater contrast-to-noise ratio, increasing the effectiveness of the technique. Transmission electron microscopy showed most structures of the visual pathway except the superior colliculus and visual cortex were poisoned in the 200 and 400 nmol groups, especially in the latter group. Conclusion Our study indicated that MEMRI with TSMIP after injection of 200 nmol MnCl2 can best show the entire and 3D visual pathway in the rat with less neurotoxic changes. Additionally, chemical identification is useful for the confirmation of the specificity of MEMRI.
机译:背景技术关于锰增强的磁共振成像(MEMRI)的特异性,以及整个视觉途径的神经毒性作用几乎是知名的。目的探讨全视途径中MEMRI的特异性和神经毒性作用。材料和方法将二十四只大鼠分成四组,其中50,100,200和400nmolml2通过玻璃体玻璃体注射注射到每只大鼠的左眼中。 MEMIRI注射MNCL2后一天进行。此外,将另外的10只大鼠分成两组,其中200和400nmolml2注射到每只大鼠的左眼中。注射后的一天,进行化学识别和透射电子显微镜检查以验证存在和病理效果。结果除了50nmol基团之外的所有大鼠中,左眼的全三维(3D)视觉途径在MEMRI上观察到薄板最大强度投影(TSMIP),除了50nmol基团,通过化学鉴定证实。较高剂量的MnCl2导致对比度达到噪声比,增加了该技术的有效性。透射电子显微镜显示出大多数视觉途径的结构,除了在200和400个Nmol组中中毒,特别是在后一组中。结论我们的研究表明,注射200nmolMNCl2后的TSMIP的MEMRI可以最好地展示大鼠的全部和3D视野,具有较少的神经毒性变化。另外,化学鉴定可用于确认MEMRI的特异性。

著录项

  • 来源
    《Acta Radiologica》 |2019年第12期|共10页
  • 作者单位

    Fudan Univ Eye &

    ENT Hosp Dept Radiol Shanghai Med Sch 83 Fenyang Rd Shanghai 200031 Peoples;

    Fudan Univ Eye &

    ENT Hosp Dept Radiol Shanghai Med Sch 83 Fenyang Rd Shanghai 200031 Peoples;

    Fudan Univ Eye &

    ENT Hosp Dept Otolaryngol Shanghai Med Sch Shanghai Peoples R China;

    Fudan Univ Huashan Hosp Dept Radiol Shanghai Med Sch Shanghai Peoples R China;

    Fudan Univ Dept Ophthalmol &

    Visual Sci Eye &

    ENT Hosp Key Lab Myopia NHFPC State Key Lab Med;

    Fudan Univ Huashan Hosp Dept Radiol Shanghai Med Sch Shanghai Peoples R China;

    Fudan Univ Eye &

    ENT Hosp Dept Radiotherapy Shanghai Med Sch Shanghai Peoples R China;

    Siemens Ltd Healthcare Sect Shanghai Peoples R China;

    Fudan Univ Eye &

    ENT Hosp Dept Radiol Shanghai Med Sch 83 Fenyang Rd Shanghai 200031 Peoples;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 放射医学;
  • 关键词

    MEMRI; MnCl2; visual pathway; toxicity; chemical identification;

    机译:MEMRI;MNCL2;视觉途径;毒性;化学鉴定;

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