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Lateral differences in lexical access: word length vs. stimulus length.

A. W. Young and A. W. Ellis (1985, Brain and Language, 24, 326-358) have shown that visual length of stimuli is a major determinant of lateral differences in word processing. They suggest that the right hemisphere must first code the words in graphemic form and, therefore, is affected by the word length. They demonstrated that visual length is best defined as the number of letters. The present experiment was conducted with 36 normal subjects to test this definition of the visual length by contrasting the number of letters and the physical length in the visual field. Spaces were inserted in the short words (4-letter) so that they matched the physical length of the long words (7-letter). Our results replicated those of Young and Ellis and confirmed that visual length can be defined by the number of letters. In addition, the imagery value of the words tended to affect this Hemifield x Length effect, a result not obtained by Young and Ellis.

Adult

Language processing in aphasia: changes in lateralization patterns during recovery reflect cerebral plasticity in adults.

During single word processing the negative cortical DC-potential reveals a left frontal preponderance in normal right-handers as well as in patients with a history of transient aphasia. Lateralization of DC-negativity therefore provides a reliable and robust method for the assessment of language dominance. In 11 stroke patients with permanent aphasia this physiological pattern changed to bilateral activation reflecting an additional right-hemispheric involvement in compensatory mechanisms in aphasia. Along with complete clinical recovery the classical aphasic syndromes revealed specific differences in changes of their lateralization patterns. In Broca's aphasia the initial right-hemispheric preponderance changed to a left frontal lateralization while in Wernicke's aphasia a presumably permanent shift towards the right hemisphere occurred. Differences in lateralization patterns might reflect different mechanisms of recovery such as the initial disinhibition of homologous areas contralaterally and subsequent collateral sprouting and synaptic modulation. The assessment of changes in lateralization of the cortical DC-potential during language tasks in a non-invasive, safe method with excellent time resolution that might provide further insights in the neural basis of recovery from aphasia.

Action Potentials

Effects of level of processing on implicit and explicit tasks.

The series of experiments presented in this article replicate the interaction that B. H. Challis and D. R. Brodbeck (1992) reported between list design (blocked or mixed) and level of processing for word fragment completion: The advantage for semantically processed words over shallowly processed words was greater when the conditions were blocked than when they were mixed on the study list. A similar interaction was found for perceptual identification (a data-driven implicit task) and priming in general knowledge questions (a conceptually driven implicit task). However, both data-driven and conceptually driven explicit tasks failed to reveal such a pattern.

Humans

The effect of varying stimulus rate and duration on brain activity during reading.

The effect of the presentation rate and exposure duration of visually presented words on brain activity was investigated using positron emission tomography. Subjects either read aloud or silently mouthed the names of words. In regions associated with early visual analysis, activity increased with both rate and duration; in regions associated with response generation, activity increased with increasing rate but was unaffected by duration; and in regions associated with word recognition, activity decreased with increasing duration. The variable responses of different brain regions illustrate the functional segregation of these regions. Of particular interest was the dissociation between activity in the posterior fusiform gyri and that in the medial lingual gyrus--in the former, activity increased with rate and duration but the latter was unaffected by either variable. This finding suggests that word processing in the lingual gyrus during reading is distinct from that in the posterior fusiform gyri. A further observation was that during reading aloud, when subjects can hear the sound of their own voice, the response in the primary auditory cortices increased with stimulus rate, demonstrating that subjects process the sound of their own voice in a qualitatively similar way to words spoken by another.

Adult

The function of sentence accents and given/new information in speech processing: different strategies for normal-hearing and hearing-impaired listeners?

Two experiments were carried out to investigate how the correspondence between sentence accentuation and distribution of information is used in human word processing. A forced-choice task with target words embedded in sentences was employed for this purpose. Target words provided either 'given' or 'new' information, and were either accented or unaccented. The subjects had to choose between two words that differed in the last consonant by one phonetic feature (e.g., mouth/mouse). The first experiment involved both normal-hearing and hearing-impaired listeners. A fixed amount of noise was used to reduce the quality of speech for normal-hearing listeners, in order to enable a comparison between the two listener groups. The results of the first experiment showed different processing patterns for normal-hearing and hearing-impaired listeners. The hearing-impaired listeners were more accurate with words that were properly accented for their information value, whereas the normal-hearing subjects were more accurate with accented than unaccented words regardless of their information value. A new group of normal-hearing subjects was tested in a second experiment with speech of more severely reduced quality. The results indicated that, under these circumstances, the normal-hearing listeners changed their strategy and also showed an interaction between information value and accent. It seems that, as speech becomes less intelligible, listeners depend increasingly on linguistic expectations stemming from the correlation between information value and accentuation.

Adult

Electrocortical distinction of vocabulary types.

Psycholinguistic theories propose that words of the 2 major vocabulary classes, content (open-class) and function (closed-class) words, are computationally distinct and have different neuronal generators. This predicts distinct EEG patterns elicited by words of these 2 classes. To test this prediction, content and function words, together with matched pseudowords, were presented in a lexical decision task (where subjects had to decide whether stimuli were meaningful words or not). Evoked potentials were recorded from 17 electrodes 12 of which were located in close vicinity of the perisylvian cortices. Already 160 msec post stimulus onset, substantial differences in activity patterns distinguish the 2 vocabulary classes. A hemisphere by word class interaction revealed interhemispheric differences for function words but not for content words. Potentials evoked by function words were more negative over the left hemisphere compared to the right. These results evidence that brain mechanisms underlying function and content word processing are different. The following explanation of the data is proposed: content words correspond to neuronal assemblies equally distributed over both hemispheres, while assemblies corresponding to function words are strongly lateralized to the left hemisphere and primarily located in the perisylvian region.

Adult

Selective processing of food words in anorexia nervosa.

The selective processing of food- and body size-related information was investigated using a modified version of the Stroop task. Anorexic subjects were generally slower than controls in colour-naming all words, and particularly slow with food-related words. This interference effect appeared to operate maximally amongst subjects who fell into the higher end of the anorexic weight range. The findings appeared to be a reflection of current concerns with food and eating.

Anorexia Nervosa

On the role of word frequency in the detection of component letters.

The experiments reported in this study were conducted to explore the issue of race models versus holistic models of word processing. In both types of model, it is assumed that an available word-level encoding for a display will conceal letter information, and thereby inhibit component-letter detection. However, whereas in holistic models it is assumed that encoding always should occur at the word or pattern level first, in the race models it is assumed that encoding occurs at all levels (e.g., feature, letter, and word) simultaneously, with the final level of encoding being at whatever level has been completed first. If the rate of word-level encoding is facilitated by increasing word frequency, the holistic models predict a generally declining latency for letter detection, because the initial step in letter detection (i.e., word-level encoding) will be occurring more rapidly. The race models, on the other hand, predict that with increasing word frequency there will be an increasing chance that the word-level encoding will win the encoding race, resulting in an increase in the latency for letter detection (i.e., the word code will conceal the letter codes). Two experiments are reported, and the obtained pattern of latency data appears to be most consistent with the race models.

Adult

Use of a database for managing qualitative research data.

In this article, a process for handling text data in qualitative research projects by using existing word-processing and database programs is described. When qualitative data are managed using this method, the information is more readily available and the coding and organization of the data are enhanced. Furthermore, the narrative always remains intact regardless of how it is arranged or re-arranged, and there is a concomitant time savings and increased accuracy. The author hopes that this article will inspire some readers to explore additional methods and processes for computer-aided, nonstatistical data management. The study referred to in this article (Ross, 1991) was a qualitative research project which sought to find out how teaching faculty in nursing and education used computers in their professional work. Ajzen and Fishbein's (1980) Theory of Reasoned Action formed the theoretical basis for this work. This theory proposes that behavior, in this study the use of computers, is the result of intentions and that intentions are the result of attitudes and social norms. The study found that although computer use was sometimes the result of attitudes, more often it seemed to be the result of subjective (perceived) norms or intervening variables. Teaching faculty apparently did not initially make reasoned judgments about the computers or the programs they used, but chose to use whatever was required or available.

Data Collection

Naming multisyllabic words.

The process of reading multisyllabic words aloud from print was examined in 4 experiments. Experiment 1 used multisyllabic words that vary in terms of the consistency of component spelling-sound correspondences. The stimuli were regular, regular inconsistent, and exception words analogous to the monosyllabic items used in previous studies. Both regular inconsistent and exception words produced longer naming latencies than regular words. In Experiment 2 these differences between word types were found to be limited to lower frequency items. Experiment 3 showed that effects of number of syllables on naming latency are also limited to lower frequency words when the stimulus display forced subjects to use syllabic units. Thus, frequency modulates the effects of two aspects of lexical structure-consistency of spelling-sound correspondences and number of syllables. The results suggest that the naming of multisyllabic words draws on some of the same knowledge representations and processes as monosyllabic words; however, naming does not require syllabic decomposition. The results are discussed in the context of current models of naming.

Adult

Geometric and semantic similarity in visual masking.

Semantic and geometric or physical similarity were manipulated separately in a backward-masking situation. When the target was a word to be read aloud, formal similarity between the letters of target and mask facilitated target recognition, as did associative similarity. Masking a target word by its own anagram also facilitated whole word report. In contrast, formal similarity was inhibitory rather than facilitatory of report when the target was spelled letter-by-letter, rather than read whole. This was true even for the same target words whose whole report was facilitated by formal similarity. A model to account for this reversal in the broader context of the neural substrate of reading is advanced. It is proposed that letter and word processing are fundamentally different in that letters are recognized by hierarchical feature analysis while words are stored and recognized wholistically by diffuse and redundant networks. Implications of the results for the study of reading are discussed.

Female

Learned changes of brain states alter cognitive processing in humans.

Humans can learn to intentionally control their brain states based on information about their own electrocortical activity. Using an operant conditioning technique, twelve healthy volunteers were trained to shift their slow cortical potentials recorded from left-hemispheric language cortices in the positive versus negative direction. After training, six subjects who achieved reliable control of left-hemispheric brain responses showed substantial modification of word processing. During conditioned negative shifts of cortical potentials (activation condition), responses to words were substantially speeded, whereas lexical decisions were slower during positive shifts of slow cortical potentials (inhibition condition). No comparable difference was seen in trained participants who failed to achieve control over slow cortical potentials. Additional data suggest that the effect was not related to perception, attention, or motor processes. Thus, operant conditioning can produce focal cortical activity dynamics and thereby modify specific higher cortical processes such as access to words. This finding may open new perspectives on neuropsychological rehabilitation based on operant conditioning of brain responses.

Adult

Quick, automatic, and general activation of orthographic and phonological representations in young readers.

Second through 6th graders were presented with nonword primes (orthographic, pseudohomophone, and control) and target words displayed for durations (30 and 60 ms) that were brief enough to prevent complete processing. Word reading skills were assessed by 3 word and nonword naming tasks. Good readers exhibited more orthographic priming than poor readers at both durations and more pseudohomophone priming at the short duration only. This suggests that good readers activate letter and phonemic information more efficiently than poor readers. Good readers also exhibited an equal amount of priming at both durations, whereas poor readers showed greater priming at the longer duration. This suggests that activation was not under strategic control. Finally, priming was reliable for both high- and low-frequency targets. This suggests that readers activate consistent information regardless of target word characteristics. Thus, quick, automatic, and general activation of orthographic and phonological information in skilled readers results from the precision and redundancy of their lexical representations.

Age Factors

Free recall of lists of word and sign labels by severely handicapped children.

Two experiments are reported which tested short-term recall of lists of four sign or four word labels by severely handicapped children. The findings suggest that the subjects were more efficient at processing words than signs in short-term memory, and that their organization of sign and word lists were affected by the length of time the material had to be held in short-term store. Both of these effects were influenced by whether or not the subjects had to use the stimuli as labels when making a response.

Adolescent

[Data processing in radiology: summary and prospects].

The technical aspects of radiology are particularly suitable for electronic data processing. In addition to automation of radiological apparatus and tumour registration, there are three areas in radiology particularly suitable for electronic data processing: treatment planning, dose calculations and supervision of radiotherapy techniques in radio-oncology. It can be used for word processing in the office and for documentation, both in diagnostic and therapeutic radiology, and digital techniques can be employed for image transmission, storage and manipulation. Computers for treatment planning and dose calculation are standard techniques and suitable computers allow one to spot occasional and systematic errors during radiation treatment and to eliminate these. They also provide for the automatic generation of the required protocols. Word processors have proved particularly valuable in private practice. They are valuable for composing reports from their basic elements, but less valuable for texts that are stereotypes. The most important developments are in digital imaging, image storage and image transmission. The storage of images on video discs, transmission through fibre-optic cables and computer manipulation of images are described and the consequences and problems, which may affect the radiologist, are discussed.

Computers

Reading aloud in jargonaphasia: an unusual dissociation in speech output.

A patient is described who showed several dissociations between oral and written language processing after bilateral retrorolandic vascular lesion. Dissociation was firstly between abolished auditory comprehension and preserved written comprehension and then involved confrontation naming, clearly superior in the written modality. The third striking dissociation involved oral output; spontaneous speech, although fluent and well articulated, consisted of neologistic jargon, while reading aloud was clearly superior though not perfect. Data are discussed with reference to a cognitive model of word processing. The pattern of dissociation in word production may be due to a failure in retrieving the phonological word form from the semantic system.

Aged

Hemispheric specialization in learning disabled readers' recall as a function of age and level of processing.

This study was designed to test the inadequacy of two theoretical accounts of learning disabled readers' memory deficiencies. Two age groups of learning disabled and nondisabled readers were compared on diotic and dichotic listening recall tasks for semantically organized, phonemically organized, and categorically unrelated word lists presented in either the left, right, or both ears. Dependent measures were free recall, serial recall, recall organization, and hierarchical organization. As expected, recall increases were a function of age, group, and level of word processing. However, the results clearly demonstrated that age and group recall differences were an interaction of both mode of presentation and level of processing. The recall differences between reading groups were attributed to word knowledge (superordinate categorization) rather than recall organization within cerebral hemispheres or differences in hemispheric capacity, per se.

Adolescent

The effect of motivation and word characteristics on recognition.

Two tachistoscopic studies assessed the effects of motivation on high-speed word processing. Study 1 assessed the effect of anxiety and Study 2 the effect of hunger compared to satiation. Words differed in interletter associative frequency (generated value), Thorndike-Lorge word frequency, and categories. In both studies, all three word variables yielded significant main effects. Motivational relevance of words did not significantly alter word recognition, the food words being most readily recognized and negatively emotional words least readily recognized in both studies. Anxiety did not have a significant effect, but hunger in interaction with word characteristics was found to be facilitating. Contrary to Hullian theory regarding word dominance and drive interaction and to Broadbent's "filtering" hypothesis, hunger in comparison to satiation increasingly facilitated word recognition the more infrequent the words and the more rare were the interletter associations.

Anxiety