Callu Delphine, El Massioui Nicole, Dutrieux Gérard, Brown Bruce L, Doyere Valérie
Laboratoire de Neurobiologie de l'Apprentissage, de la Mémoire et de la Communication, CNRS UMR 8620, Bat.446, Université Paris Sud, 91405 Orsay, France.
Neurobiol Learn Mem. 2009 Mar;91(3):250-9. doi: 10.1016/j.nlm.2008.12.002. Epub 2009 Jan 9.
The role of interpositus nuclei (IN) in timing in the sub-second range is well supported in eyeblink conditioning studies. Timing impairments shown in the seconds range in patients with intermediate cerebellar lesion, and known intermediate cerebellar cortex projection to IN raise the question of a possible involvement of IN in timing in the supra-second range as well. To address this question, we tested rats (Sprague-Dawley) given bilateral lesions of IN with Colchicine in a 2- vs. 8-s temporal discrimination task, followed by three daily sessions of a temporal bisection tests with five added intermediate non-reinforced durations. IN lesioned rats showed normal acquisition of the temporal discrimination, but a transient impairment of temporal sensitivity during the bisection tests. In addition, their response latencies suggested a different behavioral strategy from that of control animals. Our results indicate that the IN of the cerebellum may not be critically involved in temporal processing in the 2-8 s range, but may play a role in the cognitive processes that access temporal information in the mediation of choice behavior.
在眨眼条件反射研究中,间位核(IN)在亚秒级时间计时中的作用得到了充分支持。中度小脑病变患者在秒级时间范围内出现计时障碍,且已知小脑中间皮质投射至IN,这就提出了一个问题,即IN是否也可能参与超秒级时间计时。为了解决这个问题,我们对给予秋水仙碱双侧损毁IN的大鼠(斯普拉格-道利大鼠)进行了2秒与8秒的时间辨别任务测试,随后每天进行三次时间二等分测试,并增加五个中间非强化持续时间。损毁IN的大鼠在时间辨别任务中表现出正常的习得能力,但在二等分测试期间出现了短暂的时间敏感性损伤。此外,它们的反应潜伏期表明其行为策略与对照动物不同。我们的结果表明,小脑的IN可能并非在2 - 8秒范围内的时间处理中起关键作用,但可能在选择行为中介导获取时间信息的认知过程中发挥作用。