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The future of human cerebral cartography: a novel approach

机译:人脑制图学的未来:一种新颖的方法

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摘要

Cerebral cartography can be understood in a limited, static, neuroanatomical sense. Temporal information from electrical recordings contributes information on regional interactions adding a functional dimension. Selective tagging and imaging of molecules adds biochemical contributions. Cartographic detail can also be correlated with normal or abnormal psychological or behavioural data. Modem cerebral cartography is assimilating all these elements. Cartographers continue to collect ever more precise data in the hope that general principles of organization will emerge. However, even detailed cartographic data cannot generate knowledge without a multi-scale framework making it possible to relate individual observations and discoveries. We propose that, in the next quarter century, advances in cartography will result in progressively more accurate drafts of a data-led, multi-scale model of human brain structure and function. These blueprints will result from analysis of large volumes of neuroscientific and clinical data, by a process of reconstruction, modelling and simulation. This strategy will capitalize on remarkable recent developments in informatics and computer science and on the existence of much existing, addressable data and prior, though fragmented, knowledge. The models will instantiate principles that govern how the brain is organized at different levels and how different spatio-temporal scales relate to each other in an organ-centred context.
机译:可以从有限的,静态的,神经解剖学的意义上理解脑成像。电子录音中的时间信息有助于增加区域互动性,从而增加功能范围。分子的选择性标记和成像增加了生化作用。制图细节还可以与正常或异常的心理或行为数据相关。现代脑制图正在吸收所有这些要素。制图人员继续收集越来越精确的数据,以期出现组织的一般原则。但是,即使没有详细的制图数据,也无法在没有多尺度框架的情况下生成知识,从而可以将各个观察和发现联系起来。我们建议,在下一个25世纪中,制图学的进步将导致以数据为主导的多尺度人类大脑结构和功能模型的草图越来越准确。这些蓝图将通过对大量神经科学和临床数据的分析,重构,建模和仿真过程得出。该策略将利用信息学和计算机科学领域的近期显着发展,以及大量现有的,可寻址的数据和先前的(尽管是零散的)知识的存在。这些模型将实例化一些原理,这些原理控制着大脑在不同级别的组织方式以及在以器官为中心的环境中不同时空尺度如何相互关联。

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