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1 ect on increasing outcome-independent choice perseveration.
2 iorated by task manipulations that precluded perseveration.
3 C dysfunction can contribute to pathological perseveration.
4 ning rate, locomotion, shock sensitivity, or perseveration.
5 y tested the hypothesis that galanin induces perseveration.
6 2 performance was due to increased cognitive perseveration.
7 s, such as loss of situational awareness and perseveration.
8 ated to deficits in initiation and errors in perseveration.
9 so with deficits in initiation and errors in perseveration.
10 al fluency, and attention were predictive of perseveration.
11 ome sensitivity, reward-loss trade-offs, and perseveration.
12 accompanied by a higher number of errors and perseverations.
13 ffect the number of incorrect lever response perseverations.
14 th L' homozygosity, while leaving unaffected perseveration after reversal.
15 to amygdala activation, including behavioral perseveration after stimulus termination.
16 nticipation prior to the reversal as well as perseveration after the reversal, suggesting that they u
17  the sample experience would tend to promote perseveration and contravene alternation, the equal diff
18 minent eyes and teeth; and the third, visual perseveration and delayed palinopsia.
19 visual attention rather than a deficiency in perseveration and inhibitory control.
20 associated with impairment in initiation and perseveration and with late onset of depression.
21  cortex (OFC) damage elicits impulsivity and perseveration, and impairments in OFC function may under
22             Deficits in acquisition, recall, perseveration, and reversal learning were evident 1 mont
23 emarkably similar errors in anticipation and perseveration as with visual stimuli, thereby continuing
24 ot only deficits in initiation and errors in perseveration but also longer P300 latency in depressed
25 erior cingulate inactivation did not lead to perseveration but selectively increased errors to the od
26 e data suggest that galanin does not produce perseveration, but are consistent with a galanin-induced
27                                              Perseveration, concreteness, affective blunting, and lac
28 ophrenia-like behavioral phenotypes, such as perseveration, disrupted prepulse inhibition, and strong
29 red, especially in the memory and initiation/perseveration domains.
30 hesized that the NBM lesion group would show perseveration during serial reversal and extinction test
31 task quickly, compounded with high levels of perseveration during the task, was associated with failu
32 n of erroneous memory responses (intrusions, perseverations, false alarms).
33 saporin lesions of the NBM were assessed for perseveration (i.e., cognitive inflexibility) in the ser
34 ecognized categories of pathological vision (perseveration, illusory visual spread, polyopia, prosopo
35  domains of conceptualization and initiation/perseveration improved significantly relative to those o
36 ounted for by reinforcement learning models: perseveration in choice, independent of reward history,
37 ncy and deficits in initiation and errors of perseveration in depressed elderly patients are related
38 emory and autistic/obsessive-compulsive-like perseveration in several assays including the water maze
39 n an instrumental response or cause response perseveration in the absence of reinforcement.
40 n caudate nucleus volume and the severity of perseveration in two distinct working memory tasks in th
41                                   Therefore, perseveration induced by SCIN ablation extends to social
42                                              Perseveration is a classic sign of frontal cortex damage
43 he cognitive sequelae of drug abuse in which perseveration is prominent.
44                                Similarity of perseveration measures indicated the differences were no
45 vation impairs behavioral flexibility due to perseveration of a previously learned strategy.
46 ctivity closely related to the appearance or perseveration of motor symptoms.
47 ors revealed that the deficit was not due to perseveration of the previously learned strategy, but to
48  errors revealed that the deficit was due to perseveration of the previously learned strategy.
49 ctions, as evidenced particularly by greater perseverations on card sorting and reduced learning of w
50 complished goal as still pending could cause perseveration or compulsive checking, two disorders comm
51            These deficits were not caused by perseveration or insensitivity to negative feedback thou
52 rned to choose the same color as the sample (perseveration or matching), others to choose the alterna
53 ther the same as a recently rewarded sample (perseveration) or different (alteration).
54 udy, we thoroughly characterized a prominent perseveration phenotype displayed by Ophn1-deficient mic
55                          Abnormal initiation/perseveration score, psychomotor retardation, and long P
56 omatic (n = 25) had more abnormal initiation/perseveration scores and longer P300 latency compared wi
57                      Abnormal initiation and perseveration scores, but not memory impairment, were as
58  between psychomotor retardation, initiation/perseveration scores, P300 latency, and response to anti
59 nents of executive functions: the initiation-perseveration subscale of the Mattis Dementia Rating Sca
60 th the main impairment of the Initiation and Perseveration subscale.
61 lton Depression Rating Scale, the initiation/perseveration subscore of the Mattis Dementia Rating Sca
62 y higher numbers of incorrect lever response perseverations than did sterile water-injected subjects.
63  Dementia Rating Scale scores for initiation/perseveration; these scores were lower in unremitted tha
64 pecifically, a disturbance in initiation and perseveration was significantly related to global disabi
65 e affected the influence of prior choices on perseveration, while leaving lose-shifting unaltered.
66          Performance in 4 cognitive domains (perseveration, working memory, fluid reasoning, and voca

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