Housh Adam A, Berkowitz Laura E, Ybarra Isaac, Kim Esther U, Lee Brian R, Calton Jeffrey L
California State University Sacramento USA.
California State University Sacramento USA.
Brain Res Bull. 2014 Oct;109:77-87. doi: 10.1016/j.brainresbull.2014.09.012. Epub 2014 Oct 13.
Head direction (HD) cells, found in the rodent Papez circuit, are thought to form the neural circuitry responsible for directional orientation. Because NMDA transmission has been implicated in spatial tasks requiring directional orientation, we sought to determine if the NMDA antagonist dizocilpine (MK-801) would disrupt the directional signal carried by the HD network. Anterior thalamic HD cells were isolated in female Long-Evans rats and initially monitored for baseline directional activity while the animals foraged in a familiar enclosure. The animals were then administered MK-801 at a dose of .05 mg/kg or 0.1 mg/kg, or isotonic saline, and cells were re-examined for changes in directional specificity and landmark control. While the cells showed no changes in directional specificity and landmark control following administration of saline or the lower dose of MK-801, the higher dose of MK-801 caused a dramatic attenuation of the directional signal, characterized by decreases in peak firing rates, signal to noise, and directional information content. While the greatly attenuated directional specificity of cells in the high dose condition usually remained stable relative to the landmarks within the recording enclosure, a few cells in this condition exhibited unstable preferred directions within and between recording sessions. Our results are discussed relative to the possibility that the findings explain the effects of MK-801 on the acquisition and performance of spatial tasks.
头部方向(HD)细胞存在于啮齿动物的帕佩兹环路中,被认为构成了负责方向定位的神经回路。由于NMDA传递与需要方向定位的空间任务有关,我们试图确定NMDA拮抗剂地佐环平(MK - 801)是否会干扰HD网络携带的方向信号。在雌性Long - Evans大鼠中分离出丘脑前HD细胞,在动物在熟悉的围栏中觅食时,最初监测其基线方向活动。然后给动物注射0.05mg/kg或0.1mg/kg剂量的MK - 801或等渗盐水,并重新检查细胞的方向特异性和地标控制的变化。虽然在注射盐水或较低剂量的MK - 801后,细胞的方向特异性和地标控制没有变化,但较高剂量的MK - 801导致方向信号显著减弱,其特征是峰值放电率、信噪比和方向信息含量降低。虽然在高剂量条件下细胞大大减弱的方向特异性相对于记录围栏内的地标通常保持稳定,但在这种条件下的一些细胞在记录期间内和记录期间之间表现出不稳定的偏好方向。我们将根据这些发现解释MK - 801对空间任务的获取和表现的影响这一可能性来讨论我们的结果。