生理色彩空间的性别差异:功能性经颅多普勒(fTCD)研究。

Philip C Njemanze
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引用次数: 19

摘要

同时色彩对比和色彩不变是与色彩视觉相关的记忆过程,然而,“生理色彩空间”的性别差异仍然未知。采用功能性经颅多普勒(fTCD)技术对16名右撇子健康受试者(8男8女)的色彩加工进行了研究。在暗光和白光条件下,以及在彩色(蓝色和黄色)刺激下,记录大脑中动脉的平均血流速度(MFV)。数据被绘制成三维二次曲线拟合,以得出一个“生理色彩空间”,显示亮度和色彩对比的影响。在男性中,对手对(黄-蓝)的波长差异是通过y轴上黄色的RMCA MFV变化和x轴上蓝色的RMCA MFV变化来判断的。在女性中,对手对(蓝黄)的频率差异是通过y轴上黄色的LMCA MFV和x轴上蓝色的LMCA MFV的变化来判断的。在(Z轴)上绘制了男性和女性在最高光通量的白光下LMCA MFV的亮度效应。女性的3d色彩空间是男性的镜像,并且显示出增强的色彩稳定性。对男性数据采用指数函数模型,对女性数据采用对数函数模型。色彩空间测定在色彩记忆、适应性神经可塑性、脑卒中认知障碍和神经退行性疾病的研究中具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Gender-related differences in physiologic color space: a functional transcranial Doppler (fTCD) study.

Simultaneous color contrast and color constancy are memory processes associated with color vision, however, the gender-related differences of 'physiologic color space' remains unknown. Color processing was studied in 16 (8 men and 8 women) right-handed healthy subjects using functional transcranial Doppler (fTCD) technique. Mean flow velocity (MFV) was recorded in both right (RMCA) and left (LMCA) middle cerebral arteries in dark and white light conditions, and during color (blue and yellow) stimulations. The data was plotted in a 3D quadratic curve fit to derive a 'physiologic color space' showing the effects of luminance and chromatic contrasts. In men, wavelength-differencing of opponent pairs (yellow-blue) was adjudged by changes in the RMCA MFV for Yellow plotted on the Y-axis, and the RMCA MFV for Blue plotted on the X-axis. In women, frequency-differencing for opponent pairs (blue-yellow) was adjudged by changes in the LMCA MFV for Yellow plotted on the Y-axis, and the LMCA MFV for Blue plotted on the X-axis. The luminance effect on the LMCA MFV in response to white light with the highest luminous flux, was plotted on the (Z - axis), in both men and women. The 3D-color space for women was a mirror-image of that for men, and showed enhanced color constancy. The exponential function model was applied to the data in men, while the logarithmic function model was applied to the data in women. Color space determination may be useful in the study of color memory, adaptive neuroplasticity, cognitive impairment in stroke and neurodegenerative diseases.

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