Murray B, Shizgal P
Department of Psychology, Concordia University, Montreal, Québec, Canada.
Behav Brain Res. 1996 Feb;75(1-2):33-47. doi: 10.1016/0166-4328(96)00155-6.
Psychophysical data consistent with rostro-caudal conduction along reward-relevant neurons linking the lateral hypothalamus (LH) and ventral tegmental area (VTA) have lead to the hypothesis that some of the directly activated neurons responsible for medial forebrain bundle (MFB) self-stimulation arise anterior to the level of the LH. This hypothesis has been challenged on the grounds that lesions to the anterior LH (ALH) often fail to degrade the rewarding value of stimulating more posterior MFB sites. The present study was aimed at investigating the effect of lesion location and stimulation current on the efficacy of ALH lesions in an effort to account for the inconsistencies in the earlier data. Self-stimulation thresholds were obtained for LH and VTA sites by estimating the number of pulses per stimulation train required for half-maximal responding at each of 3 currents. Electrolytic lesions (anodal, 1.0 mA for 10 s) were then made to the ALH at varying medial-lateral coordinates. In 7 of the 14 rats with MFB stimulation sites, lesions to the ALH produced increases in threshold which often declined over the next several days to weeks; in 5 cases thresholds remained elevated by 0.1 to 0.25 log10 units above baseline up to end of testing. In all but one case, the effective lesions were centered in the lateral ALH. Increases in threshold were more likely to be detected when stimulating at low currents; at low currents fewer neurons are recruited and the lesion can have a greater proportional effect on threshold. These data support the hypothesis that cell bodies, terminals, or fibers of passage in the ALH contribute to the rewarding effect of stimulating more posterior MFB sites.
与沿连接外侧下丘脑(LH)和腹侧被盖区(VTA)的奖赏相关神经元的头-尾传导一致的心理物理学数据,引发了这样一种假说:一些负责内侧前脑束(MFB)自我刺激的直接激活神经元起源于LH水平之前。这一假说受到了挑战,理由是对前LH(ALH)的损伤往往不会降低刺激更靠后MFB部位的奖赏价值。本研究旨在调查损伤位置和刺激电流对ALH损伤效果的影响,以解释早期数据中的不一致之处。通过估计在3种电流下每种电流产生半最大反应所需的每个刺激序列的脉冲数,获得LH和VTA部位的自我刺激阈值。然后在不同的内外侧坐标处对ALH进行电解损伤(阳极,1.0 mA,持续10 s)。在14只具有MFB刺激部位的大鼠中,有7只大鼠的ALH损伤导致阈值升高,这种升高通常在接下来的几天到几周内下降;在5例中,直到测试结束,阈值仍比基线高出0.1至0.25 log10单位。除1例之外,所有有效损伤均集中在外侧ALH。在低电流刺激时更有可能检测到阈值升高;在低电流时,被募集的神经元较少,损伤对阈值的比例影响可能更大。这些数据支持这样的假说:ALH中的细胞体、终末或纤维通路有助于刺激更靠后MFB部位的奖赏效应。