Alvarado Maria C, Bachevalier Jocelyne
Department of Neurobiology and Anatomy, University of Texas Health Science Center at Houston, Houston, Texas 77030, USA.
J Neurosci. 2005 Feb 9;25(6):1599-609. doi: 10.1523/JNEUROSCI.4457-04.2005.
Monkeys with damage to the parahippocampal (TH/TF) or perirhinal (PRh) cortex were tested on two sets of the transverse patterning (TP) problem (A+/B-, B+/C-, C+/A- and D+/E-, E+/F-, F+/D-) and delayed nonmatching-to-location paradigm (DNML), with delays ranging from 10 to 600 s. Damage to either area impaired acquisition and performance of TP but not of linear discriminations (e.g., A>B>C>X). Damage to areas TH/TF impaired performance of the DNML at all delays but only affected memory for objects at the longest delay, as measured by a delayed nonmatching-to-sample task (DNMS) (Nemanic et al., 2004). Damage to the PRh impaired performance of the DNMS but not of the DNML. The results present a dissociation in object and place memory for these two cortical regions and suggest a role for each in the cortical circuitry supporting configural/relational memory.
对海马旁(TH/TF)或嗅周(PRh)皮质受损的猴子进行了两组横向模式化(TP)问题(A+/B-、B+/C-、C+/A-以及D+/E-、E+/F-、F+/D-)和延迟位置非匹配范式(DNML)测试,延迟时间范围为10至600秒。任一区域受损都会损害TP的习得和表现,但不会损害线性辨别(例如,A>B>C>X)。TH/TF区域受损会损害所有延迟情况下DNML的表现,但仅在最长延迟时影响对物体的记忆,这通过延迟样本非匹配任务(DNMS)来衡量(内马尼奇等人,2004年)。PRh受损会损害DNMS的表现,但不会损害DNML的表现。结果表明这两个皮质区域在物体和地点记忆方面存在分离,并表明每个区域在支持构型/关系记忆的皮质回路中都发挥着作用。