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单侧颞叶损伤患者的延迟模式辨别

Delayed pattern discrimination in patients with unilateral temporal lobe damage.

作者信息

Greenlee M W, Rischewski J, Mergner T, Seeger W

机构信息

Neurologische Universitätsklinik, Freiburg, Germany.

出版信息

J Neurosci. 1993 Jun;13(6):2565-74. doi: 10.1523/JNEUROSCI.13-06-02565.1993.

Abstract

Behavioral and neurophysiological studies in macaque monkeys suggest a role of the inferior temporal cortex in pattern discrimination and visual memory. To determine whether this cortical area is also involved in human short-term visual memory, we measured spatial frequency discrimination thresholds for sequentially presented stimuli in 17 patients with unilateral, postoperative focal damage to the temporal cortex (11 left, 6 right hemisphere). These results are compared to those of 17 age-matched control subjects. Contrast detection thresholds and difference thresholds for spatial frequency were determined for spatially truncated sine wave gratings presented in the left and right visual fields. Detection thresholds were measured for sine wave gratings in a spatial two-alternative forced-choice procedure for three spatial frequencies [2.5, 5, and 10 cycles (c)/degree] for each hemifield. Discrimination thresholds were determined for two gratings sequentially presented either 4 degrees to the left or right of fixation. Grating contrast was five times the value of detection threshold and reference frequency was 5 c/degree. Within each trial, the gratings were separated in time by 1, 3, and 10 sec interstimulus intervals (ISIs), and subjects signaled which grating had the higher spatial frequency. The results indicate that (1) contrast detection thresholds overall did not differ between patient and control groups; (2) spatial frequency discrimination thresholds were, however, significantly elevated in patients and this elevation was significantly more pronounced in the visual field contralateral to the damaged hemisphere; and (3) patients with inferotemporal damage exhibited higher discrimination thresholds for the longest ISI, whereas patients with medial/superior temporal lobe damage did not show this effect. The results suggest that visual areas in human temporal cortex are involved in the higher visual processes underlying delayed pattern discrimination.

摘要

对猕猴的行为和神经生理学研究表明,颞下皮质在模式辨别和视觉记忆中发挥作用。为了确定该皮质区域是否也参与人类的短期视觉记忆,我们测量了17例单侧颞叶皮质术后局灶性损伤患者(11例左侧,6例右侧半球)对顺序呈现刺激的空间频率辨别阈值。将这些结果与17名年龄匹配的对照受试者的结果进行比较。针对呈现于左、右视野的空间截断正弦波光栅,测定了对比度检测阈值和空间频率差异阈值。在空间二选一强制选择程序中,针对每个半视野的三种空间频率[2.5、5和10周/度]测量正弦波光栅的检测阈值。针对依次呈现于注视点左侧或右侧4度处的两个光栅,测定辨别阈值。光栅对比度为检测阈值的5倍,参考频率为5周/度。在每个试验中,光栅在时间上以1、3和10秒的刺激间隔(ISI)分开,受试者示意哪个光栅具有更高的空间频率。结果表明:(1)患者组和对照组的总体对比度检测阈值没有差异;(2)然而,患者的空间频率辨别阈值显著升高,并且这种升高在受损半球对侧的视野中更为明显;(3)颞下损伤的患者在最长ISI时表现出更高的辨别阈值,而颞叶内侧/上部损伤的患者未表现出这种效应。结果表明,人类颞叶皮质中的视觉区域参与了延迟模式辨别背后的高级视觉过程。

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