hypercolumn

[US]/ˈhaɪpəkɒləm/
[UK]/ˈhaɪpərˌkɑləm/

Translation

n. 色譜及分離科學中的一種結構單元或柱體,通常指用於提高化學分析分離效率的增強或專用柱體配置。
Word Forms

Phrases & Collocations

hypercolumn organization

超柱組織

hypercolumn structure

超柱結構

visual hypercolumn

視覺超柱

cortical hypercolumn

皮層超柱

hypercolumn model

超柱模型

hypercolumns

超柱

hypercolumnar

超柱的

hypercolumn theory

超柱理論

hypercolumn system

超柱系統

functional hypercolumn

功能超柱

Example Sentences

visual cortex hypercolumns process orientation, ocular dominance, and color information simultaneously.

視覺皮層的超柱同時處理方向、視網膜優勢和顏色資訊。

neuroscientists have mapped the hypercolumn organization throughout the primary visual area.

神經科學家已經繪製出整個主要視覺區域的超柱組織結構。

the hypercolumn hypothesis revolutionized our understanding of cortical columnar structure.

超柱假說革新了我們對皮層柱狀結構的理解。

each hypercolumn represents a complete set of features for a specific visual field location.

每個超柱代表特定視覺區域位置的一整套特徵。

damage to a hypercolumn can cause specific deficits in visual perception and processing.

超柱受損可能導致視覺感知和處理方面的特定缺陷。

research indicates that hypercolumns enable parallel processing of multiple visual attributes.

研究顯示超柱能夠平行處理多種視覺屬性。

clinical studies correlate hypercolumn dysfunction with certain neurological and psychiatric disorders.

臨床研究顯示超柱功能障礙與某些神經學和精神疾病有關。

the hypercolumn model explains how the brain achieves integration of visual features.

超柱模型解釋了大腦如何整合視覺特徵。

fmri studies reveal hypercolumn activity patterns during complex visual recognition tasks.

fMRI 研究揭示了在複雜視覺辨識任務中超柱的活動模式。

neuroplasticity allows hypercolumns to reorganize and adapt following sensory deprivation.

神經可塑性使超柱在感覺剝奪後能夠重新組織和適應。

hypercolumns are considered fundamental units of cortical computation in mammalian brains.

超柱被認為是哺乳動物大腦皮層計算的基本單位。

the hypercolumn theory suggests modular boundaries are maintained throughout cortical development.

超柱理論認為模塊邊界在整個皮層發育過程中得以維持。

computational models simulate hypercolumn interactions to understand feature integration mechanisms.

計算模型模擬超柱之間的互動,以理解特徵整合機制。

high-resolution imaging has revealed the detailed architecture of individual hypercolumns.

高解析度影像技術揭示了個別超柱的詳細結構。

studies of hypercolumn development show progressive specialization of neural responses over time.

對超柱發育的研究顯示神經反應隨時間逐漸專門化。

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