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Age-related functional recruitment for famous name recognition: an event-related fMRI study.

Recent neuroimaging research shows that older adults exhibit recruitment, or increased activation on various cognitive tasks. The current study evaluated whether a similar pattern also occurs in semantic memory by evaluating age-related differences during recognition of Recent (since the 1990s) and Enduring (1950s to present) famous names. Fifteen healthy older and 15 healthy younger adults performed the name recognition task with a high and comparable degree of accuracy, although older adults had slower reaction time in response to Recent famous names. Event-related functional MRI showed extensive networks of activation in the two groups including posterior cingulate, right hippocampus, temporal lobe and left prefrontal regions. The Recent condition produced more extensive activation than the Enduring condition. Older adults had more extensive and greater magnitude of activation in 15 of 20 regions, particularly for the Recent condition (15 of 15; 7 of 15 also differed for Enduring); young adults did not show greater activation magnitude in any region. There were no group differences for non-famous names, indicating that age differences are task-specific. The results support and extend the existing literature to semantic memory tasks, indicating that older adult brains use functional recruitment to support task performance, even when task performance accuracy is high.

Age Factors↗

Some neurophysiological constraints on models of word naming.

The pronunciation of irregular words in deep orthographies like English cannot be specified by simple rules. On the other hand, the fact that novel letter strings can be pronounced seems to imply the existence of such rules. These facts motivate dual-route models of word naming, which postulate separate lexical (whole-word) and non-lexical (rule-based) mechanisms for accessing phonology. We used fMRI during oral naming of irregular words, regular words, and nonwords, to test this theory against a competing single-mechanism account known as the triangle model, which proposes that all words are handled by a single system containing distributed orthographic, phonological, and semantic codes rather than word codes. Two versions of the dual-route model were distinguished: an 'exclusive' version in which activation of one processing route predominates over the other, and a 'parallel' version in which both routes are equally activated by all words. The fMRI results provide no support for the exclusive dual-route model. Several frontal, insular, anterior cingulate, and parietal regions showed responses that increased with naming difficulty (nonword > irregular word > regular word) and were correlated with response time, but there was no activation consistent with the predicted response of a non-lexical, rule-based mechanism (i.e., nonword > regular word > irregular word). Several regions, including the angular gyrus and dorsal prefrontal cortex bilaterally, left ventromedial temporal lobe, and posterior cingulate gyrus, were activated more by words than nonwords, but these 'lexical route' regions were equally active for irregular and regular words. The results are compatible with both the parallel dual-route model and the triangle model. 'Lexical route' regions also showed effects of word imageability. Together with previous imaging studies using semantic task contrasts, the imageability effects are consistent with semantic processing in these brain regions, suggesting that word naming is partly semantically-mediated.

Adolescent↗

Complexities of the herbal nomenclature system in traditional Chinese medicine (TCM): lessons learned from the misuse of Aristolochia-related species and the importance of the pharmaceutical name during botanical drug product development.

Herbs used in traditional Chinese medicine (TCM) have diverse cultural/historical backgrounds and are described based on complex nomenclature systems. Using the family Aristolochiaceae as an example, at least three categories of nomenclature could be identified: (1) one-to-one (one plant part from one species): the herb guan mutong refers to the root of Aristolochia manshuriensis; (2) multiple-to-one (multiple plant parts from the same species serve as different herbs): three herbs, madouling, qingmuxiang and tianxianteng, derived respectively from the fruit, root and stem of Aristolochia debilis; and (3) one-to-multiple (one herb refers to multiple species): the herb fangji refers to the root of either Aristolochia fangchi, Stephania tetrandra or Cocculus trilobus; in this case, the first belongs to a different family (Aristolochiaceae) than the latter two (Menispermaceae), and only the first contains aristolochic acid (AA), as demonstrated by independent analytical data provided in this article. Further, mutong (Akebia quinata) is allowed in TCM herbal medicine practice to be substituted with either guan mutong (Aristolochia manshuriensis) or chuan mutong (Clematis armandii); and mu fangji (Cocculus trilobus) by guang fanchi (Aristolochia fangchi) or hanzhong fangji (Aristolochia heterophylla), thereby increasing the risk of exposing renotoxic AA-containing Aristolochia species to patients. To avoid these and other confusions, we wish to emphasize the importance of a pharmaceutical name, which defines the species name, the plant part, and sometimes the special process performed on the herb, including cultivating conditions. The pharmaceutical name as referred to in this article is defined, and is limited to those botanicals that are intended to be used as drug. It is hoped that by following the pharmaceutical name, toxic herbs can be effectively identified and substitution or adulteration avoided.

Aristolochia↗

Syllabic length effects in visual word recognition and naming.

Two experiments investigated the role of the number of syllables in visual word recognition and naming. Experiment 1 (word and nonword naming) showed that effects of number of syllables on naming latencies were observed for nonwords and very low-frequency words but not for high-frequency words. In Experiment 2 (lexical decision), syllabic length effects were also obtained for very low-frequency words but not for high-frequency words and nonwords. These results suggest that visual word recognition and naming do require syllabic decomposition, at least for very low-frequency words in French. These data are compatible with the multiple-trace memory model for polysyllabic word reading [Psychol. Rev. 105 (1998) 678]. In this model, reading depends on the activity of two procedures: (1) a global procedure that operates in parallel across a letter string (and does not generate a strong syllabic length effect) and that is the predominant process in generating responses to high-frequency words, and (2) an analytic procedure that operates serially across a letter string (and generates a strong syllabic length effect) and that is the predominant process in generating responses to very low-frequency words. A modified version of the dual route cascaded model [Psychol. Rev. 108 (1) (2001) 204] can also explain the present results, provided that syllabic units are included in this model. However, the Parallel Distributed Processing model [Psychol. Rev. 96 (1989) 523; J. Exp. Psychol.: Human Perception Perform. 16 (1990) 92] has difficulties to account for these results.

Analysis of Variance↗

Discoordinate re-expression of cardiac fetal genes in N(omega)-nitro-L-arginine methyl ester (L-NAME) hypertension.

OBJECTIVE: Hypertension produced by chronic inhibition of nitric oxide (NO) synthase by N(omega)-nitro-L-arginine methyl ester (L-NAME) was used to determine the effect of severe pressure overload with or without left ventricular (LV) hypertrophy on the transcriptional activation of the cardiac fetal genes encoding for the natriuretic peptides (NP) atrial natriuretic factor (ANF) and brain natriuretic peptide (BNP), and for beta-myosin heavy chain (MHC) in both atrial and ventricular muscle. A previously reported association of LV hypertrophy with the activation of cardiac renin and angiotensin-converting enzyme (ACE) in this hypertension model was also investigated. METHODS: Male Sprague-Dawley rats received L-NAME (75 mg/kg/day) or were left untreated for 4 (n=12) or 8 (n=12) weeks. RESULTS: L-NAME-treated rats became severely hypertensive in both treatment groups but only five out of 12 8-week treatment animals showed a significantly increased LV weight to body weight (BW) ratio (LVW/BW). LV ANF mRNA, but not LV BNP mRNA, correlated significantly with LVW/BW only in animals showing LV hypertrophy. No changes were observed in atrial gene expression or plasma concentration of ANF or BNP. A significant correlation was found between LVW/BW and LV renin mRNA and LV ACE activity in rats with LV hypertrophy. LV beta-MHC mRNA levels were significantly increased in the LV of rats with or without LV hypertrophy at both 4 and 8 weeks of treatment. CONCLUSIONS: It is concluded that pressure overload per se does not promote NP or cardiac renin-angiotensin system gene expression while increased beta-MHC expression is a marker of LV pressure overload even in the absence of LV hypertrophy. It is apparent that L-NAME causes a disruption in the coordinated transcriptional activation of cardiac fetal genes expected of hypertrophic stimuli acting on the LV.

Animals↗

Inhibitory role of N omega-nitro-L-arginine methyl ester (L-NAME), a potent nitric oxide synthase inhibitor, on brain malondialdehyde and conjugated diene levels during focal cerebral ischemia in rats.

The effect of N omega-nitro-L-arginine methyl ester (L-NAME) on ischemic neuronal damage was studied in a rat model of permanent focal cerebral ischemia in terms of ipsilateral and contralateral cortical and cerebellar tissue lipid peroxides. Forty-five male Swiss Albino rats were assigned to one of four groups; sham operated as control, subjected to right middle cerebral artery occlusion or injection of L-NAME (10 mg/kg i.p.) either 30 min before or just after right middle cerebral artery occlusion. Changes in lipid peroxides were expressed as nanomoles of malondialdehyde and conjugated diene per milligram of protein. Malondialdehyde values following 60 min of ischemia relative to contralateral cortex and conjugated diene levels in 0, 10 and 60 min of ischemia were found to be higher in ipsilateral cortex than in contralateral cortex. On the other hand, contralateral cerebellar malondialdehyde levels after 0 and 60 min of ischemia and conjugated diene levels after 0, 10 and 60 min of ischemia were higher than those in ipsilateral cerebellum. Pharmacological inhibition of nitric oxide synthase by L-NAME before or just after permanent middle cerebral artery occlusion significantly decreased the malondialdehyde and conjugated diene levels in both the cortex and the cerebellum. No significant differences were found in malondialdehyde values between rats that had been pre- and post-treated with L-NAME, but conjugated diene levels in the post-treated group seemed to be significantly lower than those in the pretreated group. On the whole, these results suggest that malondialdehyde and conjugated diene represent early biochemical markers of lipid peroxidation in ischemic tissues, reflecting the radical-mediated tissue damage.

Animals↗

Effects of semantic context in the naming of pictures and words.

Two experiments investigated whether lexical retrieval for speaking can be characterized as a competitive process by assessing the effects of semantic context on picture and word naming in German. In Experiment 1 we demonstrated that pictures are named slower in the context of same-category items than in the context of items from various semantic categories, replicating findings by Kroll and Stewart (Journal of Memory and Language, 33 (1994) 149). In Experiment 2 we used words instead of pictures. Participants either named the words in the context of same- or different-category items, or produced the words together with their corresponding determiner. While in the former condition words were named faster in the context of same-category items than of different-category items, the opposite pattern was obtained for the latter condition. These findings confirm the claim that the interfering effect of semantic context reflects competition in the retrieval of lexical entries in speaking.

Analysis of Variance↗

How 2-year-old children learn novel part names of unfamiliar objects.

The present study examined whether 2-year-olds can learn a novel part name of an unfamiliar object when an adult demonstrates an action upon a part of the object. In the experiment, an experimenter pointed at, named, and acted upon a certain part (nut) of an unfamiliar object (a u-shaped bolt with a nut) or simply pointed at and named the part. Twenty-four Japanese 2-year-olds were asked to choose a referent for the given name in forced-choice tests. The results showed that children choose an isolated part (the nut) when the experimenter demonstrates an action upon the part. However, they choose a whole object of similar shape (a u-shaped bolt without a nut) when the experimenter does not demonstrate such an action. The study suggests that young children are able to 'override' the whole object assumption (Markman, E.M., Wachtel, G.F., 1988. Cognitive Psychology 20, 121-157) when they observe adults' actions on parts of objects.

Child Development↗

Impaired naming and preserved reading: a complete dissociation.

This study examines the relationship between reading and naming in an anomic patient whose verbal comprehension skills were intact. In spite of very poor naming skills, his ability to read irregular words was well preserved. Moreover, his naming remained impaired in conditions when he had read the same word only a few minutes or even seconds before and there was unexpectedly little overlap between his performance on the two tasks. The implications of these results for current models of reading and naming are discussed.

Adult↗

Characteristics of visual stimuli and naming performance in aphasic adults.

A confrontation naming task utilizing objects and pictures from the Porch Index of Communicative Ability was presented to 14 aphasic patients. Both initially correct and self-corrected naming responses were compared for the two sets of visual stimuli. In contrast to some studies that have also varied the physical characteristics of size, color and dimensionality, the present study (as well as two other studies) found no significant differences in naming performance for aphasic patients. This evidence would suggest that a choice between pictures and objects will seldom be crucial to diagnosis or therapy with aphasic naming problems.

Adult↗

L-NAME reduces infarction, neurological deficit and blood-brain barrier disruption following cerebral ischemia in mice.

The role of nitric oxide (NO) in the development of post-ischemic cerebral infarction has been extensively examined, but fewer studies have investigated its role in other outcomes. In the present study, we first determined the temporal evolution of infarct volume, NO production, neurological deficit and blood-brain barrier disruption in a model of transient focal cerebral ischemia in mice. We then examined the effect of the nonselective NO-synthase inhibitor N(omega)-nitro-L-arginine-methylester (L-NAME). L-NAME given at 3 mg/kg 3 h after ischemia reduced by 20% the infarct volume and abolished the increase in brain NO production evaluated by its metabolites (nitrites/nitrates) 48 h after ischemia. L-NAME with this protocol also reduced the neurological deficit evaluated by the grip test and decreased by 65% the extravasation of Evans blue, an index of blood-brain barrier breakdown. These protective activities of L-NAME suggest that NO has multiple deleterious effects in cerebral ischemia.

Animals↗

The effect of dimension and vocabulary age on rapid picture naming in children.

UNLABELLED: This investigation involved measures of the reaction times of normally developing children who were asked to name a series of centrally presented picture stimuli of varying vocabulary age and dimension. Results of the ANOVA on reaction times indicated a significant main effect of vocabulary level and an interaction of Dimension x Vocabulary level for the normally developing children. Post-hoc tests showed significant differences between two- and three-dimensional pictures for higher-level vocabulary items, but not for lower-level vocabulary items. This finding indicates that central operations involved in picture naming are influenced differentially by the physical characteristics of the stimulus items. The finding that two-dimensional higher-level vocabulary items were associated with significantly longer reaction times than the three-dimensional higher-level vocabulary suggests that dimensionality may be a critical feature for rapid lexical access for higher-level picture vocabulary. Clinically, the employment of three-dimensional forms may facilitate access to stored visual object memory for advanced levels of picture vocabulary. LEARNING OUTCOMES: As a result of this activity, participants will be able to (1) identify the various visual and verbal processes involved in the naming of pictures; and (2) understand the influence of physical characteristics of pictures on reaction time in rapid naming tasks.

Age Factors↗

Picture naming of cognate and non-cognate nouns in bilingual aphasia.

Previous research has found differences in the speed and accuracy of responses involving concrete cognate nouns and non-cognate nouns in a range of written and "on-line" tasks using neurologically unimpaired, bilingual adults. The present study investigated whether cognateness affects verbal confrontation naming performance in balanced French/English bilinguals (N = 15 aphasic and 15 non-aphasic subjects). Subjects met selection criteria for equal proficiency, regular use, and early acquisition of both languages. Results of a picture naming test show that cognate pictures were more often correctly named in both languages than were non-cognates. Some error types and self-correction behaviors also varied with cognate status. There were similarities between the results of this study and those of previous studies of monolingual naming. Some error types and self-correction strategies appear to be unique to bilingual speakers. Theoretical questions and treatment applications arising from these findings are outlined.

Adult↗

Human brain potential correlates of repetition priming in face and name recognition.

We investigated repetition priming in the recognition of famous people by recording event-related brain potentials (ERPs) and reaction times (RTs). Participants performed speeded two-choice responses depending on whether or not a stimulus showed a famous person. In Experiment 1, a facilitation was found in RTs to famous (but not to unfamiliar) faces when primed by the same face shown in an earlier priming phase of the experiment. In ERPs, an influence of repetition priming was observed neither for the N170 nor for a temporal N250 component which in previous studies had been shown to be sensitive to immediate face repetitions. ERPs to primed unfamiliar faces were more negative over right occipitotemporal areas than those to unprimed faces, but this effect was specific for repetitions of the same image, consistent with recent findings. In contrast, ERPs to primed familiar faces were more positive than those to unprimed faces at parietal sites from 500-600 ms after face onset, and these priming effects were comparable regardless of whether the same or a different image of the celebrity had served as prime. In Experiment 2, similar results were found for name recognition-a facilitation in RTs to primed familiar but not unfamiliar names, and a parietal positivity to primed names around 500-600 ms. ERP repetition effects showed comparable topographies for faces and names, consistent with the idea of a common underlying source. With reference to current models of face recognition, we suggest that these ERP repetition effects for familiar stimuli reflect a change in post-perceptual representations for people, rather than a neural correlate of recognition at a perceptual level.

Adolescent↗

A nitric oxide synthase inhibitor, L-NAME, attenuates saccharin drinking in a two-choice test in water-deprived rats.

The nitric oxide synthase (NOS) inhibitor N(G)-nitro-L-arginine methyl ester (L-NAME) [0 (veh)], 10, 25, and 50 mg/kg s.c.) was administered to water-deprived, saccharin-preferring, rats in a 30-min two-bottle choice test of 0.1% sodium saccharin and tap water in a within subjects design. Saccharin intake was selectively attenuated in a dose-related manner with increasing dose of L-NAME, reaching statistical significance at 25 and 50 mg/kg L-NAME when compared to vehicle control condition (p < 0.01). In contrast, water intake was not appreciably affected. Total fluid intake was attenuated as well. Neither saccharin nor water intake in a second group of animals was significantly affected by the inactive isomer, D-NAME, suggesting a stereospecific action. These data suggest that a taste factor might contribute to the well-documented hypophagic action of NOS inhibitors in a number of animal species. The possibility that such effect might be mediated through a serotonergic mechanism is considered.

Analysis of Variance↗

Deficient speech-sound processing, as shown by the electrophysiologic brain mismatch negativity response, and naming ability in prematurely born children.

Very low birth weight (VLBW, <1500 g) preterm birth has been associated with anatomic abnormalities in brain development and cognitive and language disorders. We examined object naming ability, and an electrophysiologic index of auditory sensory discrimination of speech sounds (the mismatch negativity, MMN) in 4-year-old VLBW prematurely born children. We found that half of the VLBW children were inferior to their controls in the object naming ability. Also the MMN amplitudes were smaller in the preterm group as compared with the controls. Further, the MMN amplitude varied as a function of children's performance on object naming, such that the weaker object-naming performance of the preterm group was paralleled by the diminished MMN amplitudes. Therefore, difficulties in auditory discrimination seem to be implicated in language difficulties encountered in VLBW prematurely born children.

Acoustic Stimulation↗

Using BLAST for identifying gene and protein names in journal articles.

We describe a system which automatically identifies gene and protein names in journal articles, an important and non-trivial first step in knowledge extraction of protein and gene actions. Our system uses a database of gene and protein names and is based on BLAST [Altschul et al., Nucleic Acids Res. 25 (1997) 3389-3402], a popular tool for DNA and protein sequence comparison. We describe a method that consists of mapping sequences of text characters into sequences of nucleotides that can be processed by BLAST. We demonstrate that this approach is feasible: the system matches gene and protein names with a recall of 78.8% and a precision of 71.7%, which includes names that are not part of the system database. An analysis of the results suggests techniques that can be used to improve performance further.

Algorithms↗

Cerebral lateralization of neuronal activity during naming, reading and line-matching.

Changes in human right or left temporal cortical neuronal activity during language and visuospatial tasks were investigated during craniotomy under local anesthesia for medically intractable epilepsy in patients known to be left dominant for language based on preoperative intracarotid amobarbital perfusion testing. Extracellular recordings were obtained from 57 neuronal populations (26 from the left hemisphere) in the superior and middle temporal gyri of 34 patients. Frequency of activity was compared during over and silent object naming, word reading and line-matching. Although all recordings were from the cortex not essential for language, statistically significant changes in activity during these tasks were identified in 49% of the populations. Most populations showed significant changes to only one of the tasks, indicating discrete neural networks for reading and naming. Nearby neuronal populations recorded by the same microelectrode usually had different behavioral correlates. There were no significant differences in the proportion of neurons changing activity with language or spatial measures between right (non-dominant) or left (dominant) temporal lobes. Left superior and middle temporal gyrus populations, however, demonstrated significant early reductions in activity during overt or silent naming, while right middle temporal gyrus recordings showed significant early increased activity only during overt naming. Although reading measures elicited more activity from the non-dominant temporal lobe, early reductions in activity were recorded exclusively from the dominant side. Visuospatial tasks evoked changes in neuronal frequency predominantly in the middle temporal gyrus, and during one of these tasks, significant later increases in activity were present bilaterally. Our results indicate that the functional lateralization of cognitive behaviors may depend less on the anatomic location of the associated neuronal activity than on the neurophysiologic characteristics of that activity.

Adult↗