Lennartsson Finn, Öhnell HannaMaria, Jacobson Lena, Nilsson Maria
Diagnostic Radiology, Department of Clinical Sciences, Lund University, Lund, Sweden.
Center for Medical Imaging and Physiology, Skåne University Hospital, Lund, Sweden.
Front Hum Neurosci. 2021 Oct 26;15:734193. doi: 10.3389/fnhum.2021.734193. eCollection 2021.
To increase the understanding of the relationship between structure and function in individuals with damage to the brain from different stages of maturation of the visual system, we examined 16 teenagers and young adults. We used diffusion-weighted magnetic resonance imaging (MRI) and fiber tractography of the optic radiation (OR) and optical coherence tomography (OCT) of the peripapillary retinal nerve fiber layer (pRNFL) and the ganglion cell layer + inner plexiform layer (GC+IPL) in the macula. Visual field (VF) function was assessed with the Humphrey Field Analyzer (HFA). Injuries to the immature OR were associated with thinning of the pRNFL and GC+IPL, and corresponding VF defects irrespectively of timing of the lesion. However, in cases with bilateral white-matter damage of immaturity (WMDI) we noticed a well preserved central VF despite a very thin GC+IPL. We speculate that this is due to plasticity in the immature visual system. Similar results were not noticed among cases with unilateral damage, acquired pre- or postnatally, in which the central VF was affected in most cases. OCT has proved to be a valuable targeted tool in children with damage to the retro-geniculate visual pathways, and that focal thinning of the GC+IPL predicts VF defects. This brief research report includes a review of four previously published papers. In addition, we present one new case and apply a recently developed classification system for CVI. The classification was applied on cases with bilateral WMDI to investigate its relation to retinal structure.
为了增进对视觉系统不同成熟阶段脑损伤个体结构与功能关系的理解,我们对16名青少年和青年成人进行了研究。我们使用了扩散加权磁共振成像(MRI)、视辐射(OR)的纤维束成像以及黄斑区乳头周围视网膜神经纤维层(pRNFL)和神经节细胞层+内网状层(GC+IPL)的光学相干断层扫描(OCT)。使用 Humphrey 视野分析仪(HFA)评估视野(VF)功能。未成熟OR的损伤与pRNFL和GC+IPL变薄以及相应的VF缺陷相关,与损伤时间无关。然而,在双侧未成熟白质损伤(WMDI)的病例中,尽管GC+IPL非常薄,我们注意到中央VF保存良好。我们推测这是由于未成熟视觉系统的可塑性。在单侧损伤(出生前或出生后获得)的病例中未观察到类似结果,其中大多数病例的中央VF受到影响。OCT已被证明是一种针对膝状体后视觉通路损伤儿童的有价值的靶向工具,并且GC+IPL的局灶性变薄可预测VF缺陷。这份简短的研究报告包括对四篇先前发表论文的综述。此外,我们展示了一个新病例并应用了最近开发的CVI分类系统。该分类应用于双侧WMDI病例以研究其与视网膜结构的关系。