Tsai Ling-Ling
Department of Psychology, National Chung-Cheng University, Chia-Yi 621, Taiwan, ROC.
Chin J Physiol. 2005 Jun 30;48(2):72-8.
Light-to-dark transitions have been found to enhance paradoxical sleep (PS) in albino rats but not pigmented rats. Furthermore, PS inducing effect of dark pulses in albino rats depends on sleep states. This study examined whether the relationship between PS and preceding non-rapid-eye-movement sleep (NREMS) in pigmented Brown Norway rats was different from that in albino F344 rats and whether such a difference was associated with different responses to dark pulses in the two rat strains. Both rat strains showed a positive relationship between PS and preceding NREMS. However, only the albino F344 rats exhibited the PS inducing effect of dark pulses. Dark pulses did not alter the relationship between PS and preceding NREMS in either rat strain, and, reciprocally, nor did duration of preceding NREMS affect dark pulse-induced PS enhancement. Furthermore, this study verified that dark pulses given during NREMS in albino F344 rats specifically induced the suppression of NREMS concomitant with the enhancement of PS. This study proposed that dark pulses might inhibit NREMS and facilitate PS regulating areas concurrently in albino rats.
研究发现,从明到暗的转变可增强白化大鼠的异相睡眠(PS),但对有色大鼠则无此作用。此外,白化大鼠中暗脉冲对PS的诱导作用取决于睡眠状态。本研究考察了有色的挪威棕色大鼠中PS与之前的非快速眼动睡眠(NREMS)之间的关系是否与白化F344大鼠不同,以及这种差异是否与两种大鼠品系对暗脉冲的不同反应有关。两个大鼠品系的PS与之前的NREMS之间均呈正相关。然而,只有白化F344大鼠表现出暗脉冲对PS的诱导作用。暗脉冲并未改变任一大鼠品系中PS与之前NREMS之间的关系,反之,之前NREMS的时长也未影响暗脉冲诱导的PS增强。此外,本研究证实,在白化F344大鼠的NREMS期间给予暗脉冲可特异性地诱导NREMS受到抑制,同时PS增强。本研究提出,暗脉冲可能在白化大鼠中同时抑制NREMS并促进PS调节区域的活动。