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Integration of orthographic, conceptual, and episodic information on implicit and explicit tests.

An experiment was conducted to determine how orthographic and conceptual information are integrated during incidental and intentional retrieval. Subjects studied word lists with either a shallow (counting vowels) or deep (rating pleasantness) processing task, then received either an implicit or explicit word fragment completion (WFC) test. At test, word fragments contained 0, 1, 2, or 4 letters, and were accompanied by 0, 1, 2, or 3 semantically related words. On both the implicit and explicit tests, performance improved with increases in the numbers of letters and words. When semantic cues were presented with the word fragments, the implicit test became more conceptually drive. Still, conceptual processing had a larger effect in intentional than in incidental retrieval. The Fuzzy Logical Model of Perception (FLMP) provided a good description of how orthographic, semantic, and episodic information were combined during retrieval.

Adult↗

Early and late acquisition of discriminative neuronal activity during differential conditioning in rabbits: specificity within the laminae of cingulate cortex and the anteroventral thalamus.

Multiple-unit activity of the cingulate cortex and the anteroventral (AV) nucleus of the thalamus was recorded during discriminative conditioning of an avoidance response (locomotion) in rabbits. The results indicated a greater unit response in cingulate cortex to the positive conditional stimulus (CS+; a tone paired with a footshock unconditional stimulus [UCS]) relative to the negative conditional stimulus (CS-; a tone randomly interspersed with the positive stimuli but never paired with the UCS). The majority of neuronal records obtained from the deep laminae (V and VI) of cingulate cortex manifested first neuronal discrimination in the session of first exposure to conditioning. However, the majority of neuronal records of the superficial laminae (I-IV) showed first discrimination at a late stage of training, during the session in which the criterion of behavioral discrimination was met. The late developing discriminative activity of the superficial laminae was coincident with the late developing discriminative activity of the AV thalamus. Once acquired, neuronal discrimination in cortex persisted throughout 600 msec after CS onset, and during six sessions of training (overtraining) beyond criterion. Analysis of individual neuronal records suggested that the persistence during overtraining resulted from replacement of early fading neuronal discriminations by late neuronal discriminations.

Animals↗

Mice with an aspartylglucosaminuria mutation similar to humans replicate the pathophysiology in patients.

Aspartyglucosaminuria (AGU) is a lysosomal storage disease with autosomal recessive inheritance that is caused by deficient activity of aspartylglucosaminidase (AGA), a lysosomal enzyme belonging to the newly described enzyme family of N-terminal hydrolases. An AGU mouse model was generated by targeted disruption of the AGA gene designed to mimic closely one human disease mutation. These homozygous mutant mice have no detectable AGA activity and excrete aspartylglucosamine in their urine. Analogously to the human disease, the affected homozygous animals showed storage in lysosomes in all analyzed tissues, including the brain, liver, kidney and skin, and lysosomal storage was already detected in fetuses at 19 days gestation. Electron microscopic studies of brain tissue samples demonstrated lysosomal storage vacuoles in the neurons and glia of the neocortical and cortical regions. Magnetic resonance images (MRI) facilitating monitoring of the brains of living animals indicated cerebral atrophy and hypointensity of the deep gray matter structures of brain-findings similar to those observed in human patients. AGU mice are fertile, and up to 11 months of age their movement and behavior do not differ from their age-matched littermates. However, in the Morris water maze test, a slow worsening of performance could be seen with age. The phenotype mimics well AGU in humans, the patients characteristically showing only slowly progressive mental retardation and relatively mild skeletal abnormalities.

Acetylglucosamine↗

Preadmission self-instruction booklets, postadmission exercise performance, and teaching time.

The relative effects of preadmission self-instructional information on levels of performance and time needed to achieve level of mastery of exercise behaviors were examined using a sample of 130 presurgical cholecystectomy and herniorrhaphy patients. Experimental interventions were (1) no preadmission information, (2) specific preadmission instructions, and (3) nonspecific preadmission instructions. Preadmission instructions consisting of either a specific or nonspecific booklet mailed to patients focused on techniques for coughing, deep breathing exercises leg movements, and ambulatory behaviors. During hospitalization, patients' exercise behaviors and the length of teaching time required for patients to perform the exercise steps were measured. Findings showed that subjects in the specific exercise instruction group performed significantly more of the exercise behaviors common to both booklets than subjects in the nonspecific exercise instruction group. Subjects in the specific instruction group also performed significantly more of the behaviors available to them than the nonspecific instruction group. Required postadmission teaching time did not differ significantly between the specific and nonspecific information groups, but both the groups required significantly less teaching time in the hospital than the no-preadmission instruction group.

Adult↗

Effects of nucleus basalis lesion on muscarinic receptor subtypes.

The cholinergic system in the central nervous system is an important component of the neural circuitry of learning, memory and cognition. A decline of cholinergic innervation in the human brain is a characteristic feature of dementia of Alzheimer's type. In this study, changes in cholinergic markers were studied after a unilateral lesion of the nucleus basalis magnocellularis (nbM). Acetylcholinesterase (AChE) histochemistry showed a loss of cortical AChE-containing neurons, and choline acetyltransferase (ChAT) immunohistochemistry demonstrated a loss of cholinergic cells in nbM. The localizations of muscarinic M1 and M2 receptors using [3H]pirenzepine ([3H]PZ) and [3H]AF-DX 384, respectively, were studied by quantitative autoradiography 1, 2, 4 and 6 weeks following unilateral ibotenic acid lesion of nbM. A significant decrease in [3H]PZ binding sites was observed at postlesion week 1 in the parietal and temporal cortices. The decrease in [3H]AF-DX 384 binding sites on the lesioned side was observed throughout frontal, parietal and temporal cortices after postlesion week 1, with a significant increase after 6 weeks, possibly as result of loss of presynaptic receptors and upregulation of postsynaptic ones. Moreover, laminar distribution after nbM lesion shows that M1 and M2 receptor binding sites are more affected in superficial layers (I,II,III) than in the deep layers (IV,V,VI), depending on ligand, postlesion period and cortical region. Furthermore, nbM lesion causes a higher deficit of M2 receptors than of M1 receptors. These data suggest the existence of a presynaptic population as well as a postsynaptic population of M1 and M2 receptors which are differently affected after unilateral nbM lesion.

Acetylcholinesterase↗

Current view of risk factors for periodontal diseases.

Peridontal diseases are infections, and many forms of the disease are associated with specific pathogenic bacteria which colonize the subgingival area. At least two of these microorganisms, Porphyromonas gingivalis and Actinobacillus actinomycetemcomitans, also invade the periodontal tissue and are virulent organisms. Initiation and progression of periodontal infections are clearly modified by local and systemic conditions called risk factors. The local factors include pre-existing disease as evidenced by deep probing depths and plaque retention areas associated with defective restorations. Systemic risk factors recently have been identified by large epidemiologic studies using multifactorial statistical analyses to correct for confounding or associated co-risk factors. Risk factors which we know today as important include diabetes mellitus, especially in individuals in whom metabolic control is poor, and cigarette smoking. These two risk factors markedly affect the initiation and progression of periodontitis, and attempts to manage these factors are now an important component of prevention and treatment of adult periodontitis. Systemic conditions associated with reduced neutrophil numbers or function are also important risk factors in children, juveniles, and young adults. Diseases in which neutrophil dysfunction occurs include the lazy leukocyte syndrome associated with localized juvenile periodontitis, cyclic neutropenia, and congenital neutropenia. Recent studies also point to several potentially important periodontal risk indicators. These include stress and coping behaviors, and osteopenia associated with estrogen deficiency. There are also background determinants associated with periodontal disease including gender (with males having more disease), age (with more disease seen in the elderly), and hereditary factors. The study of risk in periodontal disease is a rapidly emerging field and much is yet to be learned. However, there are at least two significant risk factors-smoking and diabetes-which demand attention in current management of periodontal disease.

Actinobacillus Infections↗

Movements resembling orientation or avoidance elicited by electrical stimulation of the superior colliculus in rats.

Some studies have reported that stimulation of the superior colliculus in rats produces orienting responses, as it does in a number of species. However, other studies have reported movements resembling avoidance and escape, which are not characteristic of collicular stimulation in other mammals. This apparent discrepancy was investigated by systematically recording the effects on head and body movements of electrical stimulation at a large number of sites throughout the superior colliculus (SC) and surrounding structures. It was found that the nature of the movements observed depended on the location of the stimulating electrode. Contralateral head and body movements resembling orienting and approach were obtained from sites in the intermediate and deep layers in rostral colliculus, the intermediate white layer and immediately surrounding tissue in central colliculus, and in all layers except deep white in caudal colliculus. At the remaining responsive sites, movements resembling avoidance and escape were obtained. The most common response was an ipsilateral cringelike movement of the body that developed into ipsilateral locomotion, followed by running and jumping as the current was increased. These movements were obtained from sites in the superficial and intermediate layers rostrally; from the intermediate gray and the medial superficial and deep layers in central colliculus; and from the deep layers and underlying tegmentum caudally. The distributions of sites, together with evidence from other studies, suggested the following conclusions: Within the superficial layers, avoidance responses were obtained from a region of the superior colliculus that appeared to represent the upper visual field, whereas orienting responses were obtained from a region apparently representing the lower visual field. Stimulation of the area containing the cells of origin of the predorsal bundle produced orientation and approach movements, whereas the avoidance and escape movements were probably mediated by parts of the ipsilateral descending pathway. The stimulation-induced avoidance and escape may reflect the importance of such responses to visual "events," particularly in the upper part of the visual field, in animals, like rats, with many predators.

Animals↗

Silent hydronephrosis/pyonephrosis due to upper urinary tract calculi in spinal cord injury patients.

STUDY DESIGN: A study of four patients with spinal cord injury (SCI) in whom a diagnosis of hydronephrosis or pyonephrosis was delayed since these patients did not manifest the traditional signs and symptoms. OBJECTIVES: To learn from these cases as to what steps should be taken to prevent any delay in the diagnosis and treatment of hydronephrosis/pyonephrosis in SCI patients. SETTING: Regional Spinal Injuries Centre, Southport, UK. METHODS: A retrospective review of cases of hydronephrosis or pyonephrosis due to renal/ ureteric calculus in SCI patients between 1994 and 1999, in whom there was a delay in diagnosis. RESULTS: A T-5 paraplegic patient had two episodes of urinary tract infection (UTI) which were successfully treated with antibiotics. When he developed UTI again, an intravenous urography (IVU) was performed. The IVU revealed a non-visualised kidney and a renal pelvic calculus. In a T-6 paraplegic patient, the classical symptom of flank pain was absent, and the symptoms of sweating and increased spasms were attributed to a syrinx. A routine IVU showed non-visualisation of the left kidney with a stone impacted in the pelviureteric junction. In two tetraplegic patients, an obstructed kidney became infected, and there was a delay in the diagnosis of pyonephrosis. The clinician's attention was focused on a co-existent, serious, infective pathology elsewhere. The primary focus of sepsis was chest infection in one patient and a deep pressure sore in the other. The former patient succumbed to chest infection and autopsy revealed pyonephrosis with an abscess between the left kidney and left hemidiaphragm and xanthogranulomatous inflammation of perinephric fatty tissue. In the latter patient, an abdominal X-ray did not reveal any calculus but computerised axial tomography showed the presence of renal and ureteric calculi. CONCLUSIONS: The symptoms of hydronephrosis may be bizarre and non-specific in SCI patients. The symptoms include feeling unwell, abdominal discomfort, increased spasms, and autonomic dysreflexia. Physicians should be aware of the serious import of these symptoms in SCI patients.

Adult↗

Aggregation in memory of episodic influences on rule-guided decisions.

The authors confirmed E. Z. Rothkopf and M. L. Dashen's (1995) finding that specific problem context, such as thematic surface features, forms associative connections with deep problem features and thus speeds particular decisions (particularization). In 5 experiments, using a 3-bit decision task and pre-memorized decision rules, the authors found that the ability of a situational context to reinstate was decreased by its replacement by another modal surface context. Context reinstatement, as measured by decision speed, depended on both global and recent local densities of specific problem features linked to a particular decision. The authors' results are consistent with J. R. Anderson and L. J. Schooler's (1991) needs/odds analysis and suggest a push-down file model for diverse context influences as a mechanism for responding to changing situational demands.

Adaptation, Psychological↗

Activation of the phonological lexicon for reading and object naming in deep dyslexia.

Poor oral reading in some cases of deep dyslexia could be due to difficulty in inhibiting the phonological lexical entries of words semantically related to the correct reading responses. If this is the case, then additional activation of the correct phonological entries should improve reading performance, whereas additional activation of competing entries should lead to errors. This should hold true for object naming as well as for reading, since both depend on a semantically mediated lexical route. These predictions were borne out with an "output" deep dyslexic patient, who made many semantic errors in both reading and naming. Providing phonetic cues (the initial portions of the correct responses) increased his reading and naming accuracy, and providing miscues (the initial portions of words related semantically to the correct responses) led to errors. Furthermore, when the patient was shown a printed word or pictured object and the examiner spoke a correct reading or naming response in isolation, the patient almost always accepted the response as correct, but he also judged that many semantically related foils were correct. Finally, a comparison of reading and naming errors suggested that "visual" errors may sometimes have a phonological basis.

Anomia↗

Differential effects of Ketaset/Rompun anesthesia on hypothermia-induced retrograde amnesia and its recovery.

A nonbarbiturate anesthetic consisting of ketamine HCl (Ketaset) and xlyazine (Rompun) was administered to assess the effects of anesthesia on hypothermia-induced retrograde amnesia in Long Evans hooded and Sprague-Dawley albino rats. Results from Experiment 1a indicate that this anesthetic does not attenuate retrograde amnesia, and the findings from Experiment 1b suggest that awakening from Ketaset/Rompun anesthesia at normal body temperature (following administration of deep body cooling) does not attenuate the resulting hypothermia-induced retrograde amnesia. Experiment 2 demonstrated that various delays between training and hypothermia resulted in a temporal gradient that was the same for animals cooled while either conscious or under anesthesia. The results of Experiment 3 showed that rats made amnesic while under anesthesia did not recover the target memory if given a recooling treatment, but rats that were made amnesic while conscious did recover the memory with the same reminder treatment. These findings indicate that the conscious processing of stimuli associated with hypothermia treatment is not necessary in inducing hypothermia-induced retrograde amnesia, but that conscious processing is an important factor if the amnesia is to be recovered with a recooling treatment.

Anesthetics, Dissociative↗

How analogies are generated: the roles of structural and superficial similarity.

Laboratory studies of analogical reasoning have shown that subjects are mostly influenced by superficial similarity in the retrieval of source analogs. However, real-world investigations have demonstrated that people generate analogies using deep structural features. We conducted three experiments to determine why laboratory and real-world studies have yielded different results. In the first two experiments, we used a "production paradigm" in which subjects were asked to generate sources for a given target. Results show that the majority of the analogies that were generated displayed low levels of superficial similarity with the target problem. Moreover, most of the analogies were based on complex underlying structures. The third experiment used a "reception paradigm" methodology. The subjects had to retrieve predetermined sources instead of generate their own. In this case, retrieval was largely constrained by surface similarity. We conclude that people can use structural relations when given an appropriate task and that this ability has been underestimated in previous research on analogy.

Association Learning↗

Effect of mental task load on fronto-central theta activity in a deep saturation dive to 450 msw.

The increase of theta activity (4-7 Hz) in the electroencephalogram (EEG) during deep diving is commonly attributed to pathophysiologic mechanisms underlying the high pressure neurologic syndrome. The aim of this study was to clarify whether more precise cognitive aspects of the condition may be described in which theta activity occurs during a deep dive. Among 4 divers who were repeatedly examined during the GUSI 14 dive to 450 msw, 3 divers exhibited a pronounced correlation between short-term memory load, as varied by the memory set size of Sternberg's memory search task (MST), and the size of a distinct peak in the theta band of the EEG-power spectrum. The power of this peak was greatest in the fronto-central electrode position (Fz), increased dramatically during MST-performance at pressure, and failed to subside fully 1 day before surfacing. Despite the close dependency of observed theta activity on cognitive demands, no consistent correlation with performance measures (mean reaction time and errors) was found. In one diver, theta waves of similar morphology appeared in the resting EEG and increased significantly during the dive. We suggest two alternative explanations for the positive interaction of memory load and hyperbaric exposure on Fz-theta: a) Both factors induce a state of increased mental effort or selectivity of attention, known to be accompanied by frontal theta activity from normobaric studies. b) Pressure abnormally facilitates or patterns rhythmical excitations underlying theta activity that would occur naturally to a lesser extent during certain mental activities, learning, or repetitive short-term memory operations.

Adult↗

Possible CS and US pathways for rabbit classical eyelid conditioning: electrophysiological evidence for projections from the pontine nuclei and inferior olive to cerebellar cortex and nuclei.

Projections from the lateral region of the pontine nuclei and the dorsal accessory inferior olive to both cerebellar cortex and cerebellar dentate/interpositus nuclei were electrophysiologically examined using single-pulse stimulation and single-unit and population recording. Stimulation of the pontine nuclear region activated population potentials and single units recorded in both cerebellar cortex and deep nuclei. Pontine-evoked activity in cerebellar cortex (Larsell's lobule HVI and adjacent areas) was rather well-defined and strong while pontine-evoked activity in the deep cerebellar nuclei seemed relatively more diffuse and weaker. Short onset latencies for both single units and population potentials were found suggesting direct projections. Similar to previous studies, inferior olive stimulation evoked short-latency responses in cerebellar cortex and nuclei thus suggesting direct projections. More pontine- and olivary-evoked activity was seen in cortex than in the nuclei with slightly more olivary-evoked potentials per recording electrode penetration observed than pontine-evoked activity. Our findings suggest that cortical and nuclear regions of the cerebellum receive converging projections from the pontine nuclei and inferior olive, projections that may carry information about stimuli used during classical conditioning. These findings are discussed in terms of cerebellar circuits that may be involved in classical eyelid conditioning.

Animals↗

A simplified technique for non-penetrating deep sclerectomy.

PURPOSE: To present a modified technique for non-penetrating deep sclerotomy (NPDS) with limited use of sharp instruments. MATERIALS AND METHODS: A special fine spatula is used to separate the Descemet membrane from stromal tissue afterpreparing superficial and deep scleral flaps and opening the Schlemm's canal. Another specially designed spatula is used to protect the membrane when excising the overlying trabecular and stromal tissue. The other steps of the surgery are identical with the original Kozlov method. The modified surgery was performed by one surgeon experienced in NPDS, and three others starting their transition to this technique under the guidance of the first. Sixty-six patients (66 eyes) with primary open-angle glaucoma (51) or pseudo-exfoliature glaucoma (15) were treated with NPDS. RESULTS: Two microperforations (3%) of the Descemet membrane were the only intraoperative complications. They did not require iridotomy or any special treatment. In the early postoperative period one 2-mm hyphema was observed, and in five cases there was transient hypotony. In one other case there was a choroidal detachment, which resolved spontaneously in less than two weeks. IOP the day after surgery ranged from 5 to 13 mmHg (mean 9.6) and after one year from 10 to 22 mmHg (mean 14.6). Late complications and IOP control were similar to conventional NPDS. CONCLUSIONS: These procedures performed by one experienced and three inexperienced surgeons gave satisfactory results and the modified method can be recommended for surgeons beginning nonpenetrating glaucoma surgery, and should shorten their learning curve.

Adult↗

What is a global manager?

Riven by ideology, religion, and mistrust, the world seems more fragmented than at any time since, arguably, World War II. But however deep the political divisions, business operations continue to span the globe, and executives still have to figure out how to run them efficiently and well. In "What Is a Global Manager?" (first published in September-October 1992), business professors Christopher Bartlett and Sumantra Ghoshal lay out a model for a management structure that balances the local, regional, and global demands placed on companies operating across the world's many borders. In the volatile world of transnational corporations, there is no such thing as a "universal" global manager, the authors say. Rather, there are three groups of specialists: business managers, country managers, and functional managers. And there are the top executives at corporate headquarters who manage the complex interactions between the three--and can identify and develop the talented executives a successful transnational requires. This kind of organizational structure characterizes a transnational rather than an old-line multinational, international, or global company. Transnationals integrate assets, resources, and diverse people in operating units around the world. Through a flexible management process, in which business, country, and functional managers form a triad of different perspectives that balance one another, transnational companies can build three strategic capabilities: global-scale efficiency and competitiveness; national-level responsiveness and flexibility; and cross-market capacity to leverage learning on a worldwide basis. Through a close look at the successful careers of Leif Johansson of Electrolux, Howard Gottlieb of NEC, and Wahib Zaki of Procter & Gamble, the authors illustrate the skills that each managerial specialist requires.

Administrative Personnel↗

Coastal seas as a context for science teaching: a lesson from Chesapeake Bay.

Lessons that employ authentic environmental data can enhance the ability of students to understand fundamental science concepts. This differs from traditional "environmental education" in that school curricula need not set aside time for educators to teach only environmental topics. Rather, the "environment" is used to advance student learning in science and technology. The success of this approach depends on programs that encourage scientists to communicate more effectively with teachers at all education levels. The expanding diversity of research and monitoring activities on the world's marine waters constitutes an outstanding potential education resource. Many of these projects involve remote sensing with sophisticated instrumentation and employ Internet technology to compile measurements, interpret data using graphs and satellite imagery, and share the results among scientific colleagues and the general public alike. Unfortunately, these resources, which constitute a much shortened path between research findings and textbook presentation, are seldom interpreted for use by K-12 educators. We have developed an example that uses the Chesapeake Bay as a paradigm to demonstrate how such interpretation can assist educators in teaching important principles in physical oceanography and marine ecology. We present this example using PowerPoint to conduct a virtual tour of selected Internet sources. Our example begins with the conceptual "salt wedge" circulation model of Chesapeake Bay as a partially mixed estuary. Teachers have the opportunity to explore this model using salinity, temperature, and dissolved oxygen data taken from a research vessel platform during summer professional development programs. This source of authentic data, originally obtained by teachers themselves, clearly demonstrates the presence of a picnocline and deep-water anoxia. Our lesson plan proceeds to interpret these data using additional Internet-based resources at increasing scales of time and space. The "salt wedge," picnocline, and anoxia are examined using graphics derived from data taken by researchers using "ScanFish," a towed instrument that samples temperature, salinity, and dissolved oxygen at a resolution of only a few meters vertically and horizontally. The seasonal dynamics of these parameters at a given location are interpreted using biweekly monitoring data obtained as part of the state-federal Chesapeake Bay Program. The influence of annual variations in freshwater input is examined using stream flow data from US. Geological Survey gauging stations. Satellite remote sensing images from the TOPEX/Poseidon project are used to show how El Niño and La Niña events in the mid-Pacific affect the Chesapeake Bay system via rainfall on its watershed. Finally, the life cycle of the blue crab (Callinectes sapidus) is presented to show how an estuarine organism has adapted to this truly unique and dynamic coastal environment.

Animals↗

[Gamma nail osteosynthesis of per- and subtrochanteric femoral fractures. 4 years experiences and their consequences for further implant development].

The Gamma nail can be used in all types of per- and subtrochanteric fractures because of its biomechanical characteristics. In this prospective evaluation of our 330 patients treated between November 1989 and November 1993 the usefulness of the Gamma nail for the osteosynthesis of all types of fracture was evaluated. The rate of intraoperative and postoperative complications but also gait function, postoperative weight bearing, general complications, and survival were analysed. We compared the results of four therapy periods to evaluate the importance of the expertise of the surgeon and the 'learning curve'. The Gamma nail osteosynthesis was performed in 72-98% in unstable per- and subtrochanteric fractures. The nail diameters used shifted to the 12 mm nail (99%) and the 130 degrees angle (93%) in the fourth examination period. The intraoperative complication rate is highly dependent from the expertise of the surgeon and the experience with the system. The rate decreased from 42.2% in the first to 17.2% in the fourth examination period. The most important complications were: additional fractures (1.7%), distal locking screw problems (7%), femoral head rotation (2,4%), and not sufficient fracture reduction (4.1%). Whereas in general these did not influence the postoperative management the use of a too short femoral neck screw lead to instability. Postoperative local complications were: rotation of the femoral head and neck (0.6-5.5%), related to the gliding of the neck screw (0.6-4%), fracture at the end of the nail (1.8-4%), fatigue break of the nail (1 case) and hematoma (1.2-8.3%). In all these cases reoperation was needed. To reduce the rate of intra- and postoperative complications a new gliding nail (GN) is presented. Due to the double T-profile of the femoral neck blade the implant is stable for neck rotation. The blade has a collar which makes it impossible to implant the blade to deep in the femoral neck. The larger nail profile at the femoral neck perforation reduces the risk of implant failure. The implant can be used as dynamic compression as well as static implant both in the direction of femoral neck and shaft.

Aged↗