Leergaard Trygve B
Department of Anatomy, Institute of Basic Medical Sciences, University of Oslo, 0317 Oslo, Norway.
Anat Embryol (Berl). 2003 Feb;206(3):149-62. doi: 10.1007/s00429-002-0272-7. Epub 2002 Oct 30.
Novel neuroanatomic approaches for investigating topographic maps at a systems level include combined use of sensitive neural tracing techniques and computerized methods for three-dimensional reconstruction from serial sections. Application of these methods have allowed discovery of new principles of topographic organization in the rat pontine nuclei. The pontine nuclei are intercalated in the large pathways connecting the cerebral cortex to the cerebellum. In rat, cerebropontine projections are characterized by multiple delineated terminal fields. It is generally accepted that these projections are topographically organized. The presence of widespread axonal clusters in the pontine nuclei is typically interpreted to represent a complex scheme of organization. In recent anatomic investigations of somatosensory corticopontine projections in young and adult rats, a somatotopic distribution of axonal clusters, concentrically organized in an inside-out fashion, has been reported. This review summarizes the topographic principles of organization proposed for somatosensory corticopontine projections, and discusses the possibility that widely segregated corticopontine terminal fields are located inside lamellar volumes. This organizational pattern may be explained by mechanisms operative during development, and resembles the patterns of organization previously described in cat and monkey. Possible implications of this architecture are discussed in relation to map transformations from the cerebral cortex to the cerebellum.
用于在系统水平研究地形图的新型神经解剖学方法包括联合使用敏感的神经追踪技术和用于从连续切片进行三维重建的计算机化方法。这些方法的应用使得能够发现大鼠脑桥核中地形组织的新原理。脑桥核插入在连接大脑皮层和小脑的大通路中。在大鼠中,大脑脑桥投射的特征是有多个明确的终末场。人们普遍认为这些投射是按地形组织的。脑桥核中广泛存在的轴突簇通常被解释为代表一种复杂的组织模式。在最近对幼年和成年大鼠体感皮质脑桥投射的解剖学研究中,已经报道了轴突簇的躯体定位分布,其以由内向外的方式呈同心组织。本综述总结了为体感皮质脑桥投射提出的地形组织原理,并讨论了广泛分离的皮质脑桥终末场位于板层体积内的可能性。这种组织模式可能由发育过程中起作用的机制来解释,并且类似于先前在猫和猴中描述的组织模式。本文还讨论了这种结构与从大脑皮层到小脑的图谱转换相关的可能意义。