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下额枕束的额状端:解剖学剖析、DTI 研究以及多成分束的功能考量。

Frontal terminations for the inferior fronto-occipital fascicle: anatomical dissection, DTI study and functional considerations on a multi-component bundle.

机构信息

Division of Neurosurgery, Department of Neurosciences and Rehabilitation, S. Anna University-Hospital, 203 C.so della Giovecca, 44100 Ferrara, Italy.

出版信息

Brain Struct Funct. 2013 Jan;218(1):21-37. doi: 10.1007/s00429-011-0372-3. Epub 2011 Dec 27.

Abstract

The anatomy and functional role of the inferior fronto-occipital fascicle (IFOF) remain poorly known. We accurately analyze its course and the anatomical distribution of its frontal terminations. We propose a classification of the IFOF in different subcomponents. Ten hemispheres (5 left, 5 right) were dissected with Klingler's technique. In addition to the IFOF dissection, we performed a 4-T diffusion tensor imaging study on a single healthy subject. We identified two layers of IFOF. The first one is superficial and antero-superiorly directed, terminating in the inferior frontal gyrus. The second is deeper and consists of three portions: posterior, middle and anterior. The posterior component terminates in the middle frontal gyrus (MFG) and dorso-lateral prefrontal cortex. The middle component terminates in the MFG and lateral orbito-frontal cortex. The anterior one is directed to the orbito-frontal cortex and frontal pole. In vivo tractography study confirmed these anatomical findings. We suggest that the distribution of IFOF fibers within the frontal lobe corresponds to a fine functional segmentation. IFOF can be considered as a "multi-function" bundle, with each anatomical subcomponent subserving different brain processing. The superficial layer and the posterior component of the deep layer, which connects the occipital extrastriate, temporo-basal and inferior frontal cortices, might subserve semantic processing. The middle component of the deep layer could play a role in a multimodal sensory-motor integration. Finally, the anterior component of the deep layer might be involved in emotional and behavioral aspects.

摘要

下额枕束(IFOF)的解剖结构和功能作用仍知之甚少。我们准确地分析了其路径及其额叶终点的解剖分布。我们提出了一种将 IFOF 分为不同子成分的分类方法。使用 Klingler 技术对 10 个半球(5 个左半球,5 个右半球)进行解剖。除了 IFOF 的解剖,我们还对单个健康受试者进行了 4-T 扩散张量成像研究。我们确定了 IFOF 的两层。第一层是浅层的,前上方向的,终止于下额前回。第二层较深,由三部分组成:后部、中部和前部。后部成分终止于额中回(MFG)和背外侧前额叶皮层。中部成分终止于 MFG 和外侧眶额皮层。前部成分指向眶额皮层和额极。体内束追踪研究证实了这些解剖学发现。我们认为 IFOF 纤维在额叶内的分布对应于精细的功能分割。IFOF 可以被认为是一个“多功能”束,每个解剖子成分都服务于不同的大脑处理。连接枕外、颞下和下额皮质的浅层和深层后部成分可能参与语义处理。深层中部成分可能在多模态感觉运动整合中发挥作用。最后,深层前部成分可能参与情感和行为方面。

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