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Visual and phonological processing of words: a comparison of good and poor readers.

At the beginning of the school year, 80 first graders, half receiving phonics instruction and half receiving whole word instruction, were asked to spell, read aloud, and recognize 60 regular and exception words. A standardized reading test and phoneme segmentation test were also administered. Those above grade level in reading excelled in phonological recording and application of grapheme-phoneme correspondence rules and were weaker in utilization of visual-orthographic knowledge. Those below grade level applied visual more than phonological coding and benefited from the visual-orthographic knowledge available in a clue word. Results support a continuum of visual and phonological analysis skills in first-grade reading consistent with Frith's (1985) logographic, alphabetic, and orthographic skill levels.

Awareness

Computerized literature reference system: use of an optical scanner and optical character recognition software.

A computerized reference system for radiology journal articles was developed by using an IBM-compatible personal computer with a hand-held optical scanner and optical character recognition software. This allows direct entry of scanned text from printed material into word processing or data-base files. Additionally, line diagrams and photographs of radiographs can be incorporated into these files. A text search and retrieval software program enables rapid searching for keywords in scanned documents. The hand scanner and software programs are commercially available, relatively inexpensive, and easily used. This permits construction of a personalized radiology literature file of readily accessible text and images requiring minimal typing or keystroke entry.

Electronic Data Processing

Survey of ACCP members regarding use of computers and information processing.

A questionnaire was sent to a random sample of 480 members of the American College of Clinical Pharmacy to determine their opinions on various issues relating to computer technology and the future role of computers in information processing in pharmacy. Results from the 335 evaluable responses revealed nearly universal use of computers. Word processing was the most common application and IBM or compatible computers were the dominant machines. Respondents used a wide variety of generalized and specialized programs, especially electronic communication products. Computer technology is expected to have a major impact on routine aspects of pharmacy practice, although, respondents were split on its impact on more cognitively intensive functions.

Clinical Pharmacy Information Systems

Lessons from a doctoral thesis.

The production of a doctoral thesis is a time-consuming affair that until recently was done in conjunction with professional publishing services. Advances in computer technology have made many sophisticated desktop publishing techniques available to the microcomputer user. We describe the computer method used, the problems encountered, and the solutions improvised in the production of a doctoral thesis by computer. The Apple Macintosh was selected for its ease of use and intrinsic graphics capabilities. A scanner was used to incorporate text from published papers into a word processing program. The body of the text was updated and supplemented with new sections. Scanned graphics from the published papers were less suitable for publication, and the original data were replotted and modified with a graphics-drawing program. Graphics were imported and incorporated in the text. Final hard copy was produced by a laser printer and bound with both conventional and rapid new binding techniques. Microcomputer-based desktop processing methods provide a rapid and cost-effective means of communicating the written word. We anticipate that this evolving technology will have increased use by physicians in both the private and academic sectors.

Academic Dissertations as Topic

Hemispheric differences for orthographic and phonological processing.

The role of hemispheric differences for the encoding of words was assessed by requiring subjects to match tachistoscopically presented word pairs on the basis of their rhyming or visual similarity. The interference between a word pair's orthography and phonology produced matching errors which were differentially affected by the visual field/hemisphere of projection and sex of subject. In general, right visual field/left hemisphere presentations yielded fewer errors when word pairs shared similar phonology under rhyme matching and similar orthography under visual matching. Left visual field/right hemisphere presentations yielded fewer errors when word pairs were phonologically dissimilar under rhyme matching and orthographically dissimilar under visual matching. Males made more errors and demonstrated substantially stronger hemispheric effects than females. These patterns suggested visual field/hemispheric differences for orthographic and phonological encoding occurred during the initial stages of word processing and were more pronounced for male compared to female subjects.

Adolescent

Phonemic similarity effects and prelexical phonology.

Ten experiments were conducted on visually presented Serbo-Croatian words and pseudowords, comprising phonemically similar and dissimilar context-target sequences. There were five main results. First, phonemic similarity effects in both lexical decision and naming are independent of graphemic similarity. Second, phonemic similarity need not facilitate lexical decision; the direction of its effect depends on lexicality, target frequency, and type of similarity (specifically, the position of the phoneme that distinguishes context and target). Third, phonemic similarity expedites the naming of words and pseudowords, and to the same degree. Fourth, phonemic similarity is negated in naming, but not in lexical decision, when the visually presented context and target are stressed differently. Fifth, the phonemic similarity effect occurs even when the context is a masked pseudoword. These results are discussed in terms of a model in which word-processing units are activated routinely by phoneme-processing units, and in which compositionally similar word units, when activated, inhibit one another in proportion to each's familiarity. In this model, the phonemic similarity effect in naming is based on the states of phoneme units, whereas the phonemic similarity effect in lexical decision is based on the states of word units. Overall, the results comport with an account in which phonology is computed prelexically and automatically.

Adolescent

On the role of competing word units in visual word recognition: the neighborhood frequency effect.

Current models of word recognition generally assume that word units orthographically similar to a stimulus word are involved in the visual recognition of this word. We refer to this set of orthographically similar words as an orthographic neighborhood. Two experiments are presented that investigate the ways in which the composition of this neighborhood can affect word recognition. The data indicate that the presence in the neighborhood of at least one unit of higher frequency than the stimulus word itself results in interference in stimulus word processing. Lexical decision latencies (Experiment 1) and gaze durations (Experiment 2) to words with one neighbor of higher frequency were significantly longer than to words without a more frequent neighbor. This neighborhood frequency effect is discussed in terms of the different types of candidate selection process postulated by contemporary models of visual word recognition.

Adult

Hypnotic susceptibility and verbal automaticity: automatic and strategic processing differences in the Stroop color-naming task.

The original hypothesis of Dixon, Brunet, and Laurence (1990) that highly hypnotizable (HH) subjects process words more automatically than do low hypnotizable (LH) subjects was retested in a paradigm that separated strategic from automatic processes in the Stroop color-naming task. The words red and blue preceded a color patch that was red or blue. Subjects were told that the word predicted the opposite color 75% of the time. Automatic and strategic processes were assessed by varying the interstimulus interval (ISI) between the word and the color patch. Both HH and LH subjects showed significant strategic effects (faster incongruent-trial, color-naming reaction times than congruent-trial reaction times at ISIs over 400 ms), but only HH subjects showed significant automaticity (significantly faster congruent-trial reaction times than incongruent-trial reaction times at 16.7 ms, the lowest ISI).

Adult

Visual field effects for processing content and function words.

This study investigated the processing of content and function words when input to the left vs right hemispheres. For both lexical decision and naming there was a larger RVF advantage for function as compared to content words: function words were processed more slowly than content in the LVF, but not in the RVF. These results do not replicate the previous report of Bradley and Garrett, Neuropsychologia 21, 155-159, 1983, and provide some support for the view that function words are less accessible to the right hemisphere. In a second experiment, there was no difference in VF asymmetry when acceptability judgments were required for function vs content word phrases. Grammaticality judgments, of any sort, may be predominantly processed in the left hemisphere.

Female

Psychophysiological components of imagery.

McGuigan's neuromuscular model of information processing (1978a, 1978b, and 1989) was investigated by electrically recording eye movements (electro-oculograms), covert lip and preferred arm responses (electromyograms), and electroencephalograms. This model predicts that codes are generated as the lips are uniquely activated when processing words beginning with bilabial sounds like "p" or "b," as is the right arm to words like "pencil" that refer to its use. Twelve adult female participants selected for their high imagery ratings were asked to form images to three orally presented linguistic stimuli: the letter "p," the words "pencil" and "pasture," and to a control stimulus, the words "go blank." The following findings were significant beyond the 0.05 level: an increased covert lip response only to the letter "p," increased vertical eye activity to "p" and to the word "pencil," right arm response only to the word "pencil," and a decreased percentage of alpha waves from the right 02 lead only to the word "pasture." Since these covert responses uniquely occurred during specific imagery processes, it is inferred that they are components of neuromuscular circuits that function in accord with the model of information processing tested.

Adult

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

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

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