Cornell College of Veterinary Medicine, Cornell University, Ithaca, NY, USA.
Anatomical Research and Clinical Studies (ARCS), Vrije Universiteit Brussel, Brussels, Belgium.
Vet Ophthalmol. 2022 May;25 Suppl 1:60-71. doi: 10.1111/vop.12940. Epub 2021 Nov 16.
The visual system is known to be vital for cognition and perception in the feline and canine and much behavioral research for these species has used visual stimuli and focused on visual perception. There has been extensive investigations into the visual pathway in cats and dogs via histological and neurobiological methods, however to date, only one study has mapped the canine optic pathway in vivo. Advanced imaging methods such as diffusion MRI (DTI) have been routinely used in human research to study the visual system in vivo. This study applied DTI imaging methods to assess and characterize the optic pathway of feline and canine subjects in vivo. The optic nerve (ON), optic tract (OT), and optic radiation (OR) were successfully delineated for each species and the average volume and FA for each tract is reported. The application of DTI to map the optic pathway for canine and feline subjects provides a healthy baseline for comparison in future studies.
视觉系统对于猫和犬的认知和感知至关重要,许多针对这些物种的行为研究都使用了视觉刺激,并专注于视觉感知。已经有大量的组织学和神经生物学方法对猫和犬的视觉通路进行了研究,然而迄今为止,只有一项研究在体内描绘了犬的视神经通路。先进的成像方法,如扩散 MRI(DTI),已在人类研究中常规用于研究体内的视觉系统。本研究应用 DTI 成像方法对体内的猫和犬的视神经、视束和视辐射进行评估和特征描述。成功地描绘了每种物种的视神经、视束和视辐射,并报告了每条通路的平均体积和 FA 值。DTI 技术在犬和猫体内描绘视神经通路的应用为未来的研究提供了一个健康的基线进行比较。