Max Planck Research Group "Neuroanatomy and Connectivity", Max Planck Institute for Cognitive and Brain Sciences Leipzig, Germany.
Front Neuroanat. 2012 Sep 5;6:37. doi: 10.3389/fnana.2012.00037. eCollection 2012.
While the past century of neuroscientific research has brought considerable progress in defining the boundaries of the human cerebral cortex, there are cases in which the demarcation of one area from another remains fuzzy. Despite the existence of clearly demarcated areas, examples of gradual transitions between areas are known since early cytoarchitectonic studies. Since multi-modal anatomical approaches and functional connectivity studies brought renewed attention to the topic, a better understanding of the theoretical and methodological implications of fuzzy boundaries in brain science can be conceptually useful. This article provides a preliminary conceptual framework to understand this problem by applying philosophical theories of vagueness to three levels of neuroanatomical research. For the first two levels (cytoarchitectonics and fMRI studies), vagueness will be distinguished from other forms of uncertainty, such as imprecise measurement or ambiguous causal sources of activation. The article proceeds to discuss the implications of these levels for the anatomical study of connectivity between cortical areas. There, vagueness gets imported into connectivity studies since the network structure is dependent on the parcellation scheme and thresholds have to be used to delineate functional boundaries. Functional connectivity may introduce an additional form of vagueness, as it is an organizational principle of the brain. The article concludes by discussing what steps are appropriate to define areal boundaries more precisely.
尽管过去一个世纪的神经科学研究在定义人类大脑皮层的边界方面取得了相当大的进展,但在某些情况下,一个区域与另一个区域的划分仍然模糊不清。尽管存在明显划分的区域,但早在细胞构筑学研究中就已经知道了区域之间逐渐过渡的例子。自从多模态解剖学方法和功能连接研究重新引起人们对这个主题的关注以来,更好地理解大脑科学中模糊边界的理论和方法意义在概念上是有用的。本文通过将模糊哲学理论应用于神经解剖学研究的三个层次,提供了一个初步的概念框架来理解这个问题。对于前两个层次(细胞构筑学和 fMRI 研究),将模糊性与其他形式的不确定性(如不精确的测量或激活的模糊因果源)区分开来。文章接着讨论了这些层次对皮质区域之间连接的解剖学研究的意义。在那里,由于网络结构依赖于分割方案,并且必须使用阈值来描绘功能边界,因此模糊性被引入到连接研究中。功能连接可能会引入另一种形式的模糊性,因为它是大脑的组织原则。文章最后讨论了定义区域边界更精确的适当步骤。