Alexander K R, Fishman G A
Br J Ophthalmol. 1984 May;68(5):303-9. doi: 10.1136/bjo.68.5.303.
We have assessed the influence of the rod system on cone flicker sensitivity during flicker perimetry. For temporal frequencies above 18 Hz extrafoveal cone-mediated flicker thresholds for a white test stimulus are as much as 1.5 log units lower when measured against a large background light that saturates the rods than when measured in darkness. Following a Ganzfeld bleach extrafoveal cone flicker thresholds are at their minimum once the cones have recovered their sensitivity, but then thresholds rise as the rods begin to recover from the bleach. Our results indicate that the flicker sensitivity of the extrafoveal cone system at high temporal frequencies is influenced by the rods surrounding the flickering test stimulus. The rods reduce flicker sensitivity maximally in the dark adapted state, and their suppressive influence is minimised only by strong rod bleaches or by large backgrounds that saturate the rod system.
我们评估了在闪烁视野检查期间杆系统对锥体细胞闪烁敏感度的影响。对于高于18Hz的时间频率,当以使杆体细胞饱和的大背景光为背景测量时,白色测试刺激的中央凹外周锥体细胞介导的闪烁阈值比在黑暗中测量时低多达1.5个对数单位。在全视野漂白后,一旦锥体细胞恢复其敏感度,中央凹外周锥体细胞闪烁阈值就处于最低水平,但随后随着杆体细胞开始从漂白中恢复,阈值会升高。我们的结果表明,在高时间频率下,中央凹外周锥体细胞系统的闪烁敏感度受闪烁测试刺激周围的杆体细胞影响。在暗适应状态下,杆体细胞最大程度地降低闪烁敏感度,并且只有通过强烈的杆体细胞漂白或使杆体系统饱和的大背景才能将其抑制作用降至最低。