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Sensitivity of complex cells in cat striate cortex to relative motion.

Sensitivity of 95 complex cells to relative motion between oriented bars and textured backgrounds was investigated monocularly in the striate cortex of lightly anesthetized, paralyzed cats. Cells were classified conventionally. Those in deep layers were either direction-selective, or strongly preferred one direction of motion, and responded well to background texture motion alone: backgrounds potentiated the response to the bar in the cell's preferred direction when moved in phase, or in the opposite direction when moved in antiphase; other combinations depressed the level of response compared with that for the bar alone. The majority of direction-selective or strongly direction-biased cells in superficial layers behaved similarly. The most interesting superficial-layer cells were bidirectional or weakly direction-biased, and recorded closer to the cortical surface than the direction-selective neurons. A majority showed preference for relative motion, some for antiphase, others for in-phase motion, regardless of the absolute direction of motion across the receptive field, which could not be accounted for on the basis of separate responses to bars and backgrounds alone. Three of the superficial-layer direction-selective cells also showed preference for antiphase relative motion. In a few complex cells from superficial laminae, backgrounds were either without influence on responses to oriented stimuli, or purely suppressive. Visual backgrounds against which objects are perceived are usually neither featureless nor motionless: the results suggest that most complex cells in striate cortex are sensitive to the context in which objects are seen and susceptible to relationships between objects and their backgrounds in relative motion.

Animals↗

Effects of 5-HT2 receptors blockade on fear-induced analgesia elicited by electrical stimulation of the deep layers of the superior colliculus and dorsal periaqueductal gray.

The deep layers of the superior colliculus (DLSC) and the dorsal periaqueductal gray matter (DPAG) have been implicated in the control of defensive-like behaviors. Electrical and chemical stimulation of these structures elicits fear and escape behaviour, expressed by immobility (freezing) and wild running, followed by jumps and rapid rotations. There is evidence that the neural substrates responsible for defensive behavior in this level of the midbrain tectum (MT) may also be responsible for fear-induced analgesia. This study was aimed at examining the characteristics of the analgesia that follows the defense-oriented reactions induced by electrical midbrain tectum stimulation at freezing and escape thresholds. The animals were submitted to the tail-flick test, following the induction of the defense behavioral responses. The obtained results show that the antinociception that follows the freezing and escape behaviors were not antagonized by MT microinjections of the opioid antagonist naltrexone. These results emphasize previous data showing the non-opioid nature of this analgesia. On the other hand, the fear-induced analgesia was inhibited by microinjections of the serotonergic blockers, methysergide and ketanserin in the MT. Since methysergide is a non-specific antagonist of 5-HT receptors and ketanserin acts with a high degree of specificity at 5-HT2 receptors the present results suggest that activation of 5-HT2 receptors may be implicated in the antinociception induced by midbrain tectum stimulation.

Analgesia↗

Neurones in the dorsolateral periaqueductal grey matter in coronal slices of rat midbrain: electrophysiological and morphological characteristics.

Intracellular recordings using the whole-cell patch-clamp configuration were made from 87 neurones in the dorsolateral "aversive" region of the periaqueductal grey matter (PAG) in coronal slices of rat midbrain. Camera lucida reconstructions made of 28 of the cells, which had been filled with biocytin, revealed round, triangular or oval cell bodies 11-40 microm in diameter. Between two and seven primary dendrites were present, which branched further, often becoming varicose. The dendritic tree was always contained within the dorsal half of the PAG. Biocytin-filled axons could be followed for 177-2315 microm from the soma. The axons typically travelled to the perimeter of the dorsal half of the ipsilateral PAG, before either turning ventrolaterally to run parallel to the tecto-bulbopsinal fibres or continuing their trajectory into the deep collicular layers or the mesencephalic reticular formation. Electrophysiologically, two functional categories of cells could be distinguished: type-A cells (30%) showed inward rectification at membrane voltages in excess of -77 mV and had short action potentials (1.6+/-0.07 ms), which were followed by a biphasic afterpolarisation characterised by an initial fast and a later slow phase. Only 18.5% of the type-A cells were spontaneously active (<4 Hz). The second category of cell (type B, 70% of the recorded population) did not show rectification and had longer-duration action potentials (2.1+/-0.07 ms), which showed a smooth decay of the afterhyperpolarisation phase. Approximately one third (37%) of the type-B cells fired spontaneously (<4 Hz). The gross morphology of the two types of cells was similar. However, in type-A cells (n=6), the axons could be seen to originate from the cell soma, whereas, in the majority of the type-B population (10/13), the axon arose from a primary dendrite. The results show that coronal slices of midbrain contain a viable population of "output" or "projection" neurones, which are accessible to electrophysiological and pharmacological investigation. In conscious animals, efferent output from this part of the PAG is concerned with mediating the autonomic and somatomotor changes which are characteristic components of aversive emotional behaviour. The output neurones should therefore reflect the net level of excitability in the PAG in relation to its functional activity.

Action Potentials↗

Regarding: Rosenthal DI, Glatstein E. "We've Got a Treatment, but What's the Disease?" The Oncologist 1996;1.

To the Editors: We have read with interest and some concern the recently published editorial, "We've Got a Treatment, but What's the Disease," by Rosenthal and Glatstein. This editorial enunciates these common anxieties (? "mid-life") about radiosurgery: A) that thedure as currently practiced worldwide, even in the United States, does not in all cases rely on the talents of radiation oncologists; B) that the technique disregards fundamental (? proven) principles about radiobiology, and C) that the authors of the editorial have chosen to ignore a tremendous body of historical and clinical literature relative to outcomes. In fact, long-term clinical data have been published in a wide variety of reports during the last ten years. Their reference list does not include a single article published beyond 1992. Now let's address the first issue. While it is true that the advantages obtained by closed skull focused stereotactic single session irradiation of a small but well-defined intracranial target volume (radiosurgery) were first espoused and practiced by neuosurgeons, the goal was not to impact upon the turf of the radiation oncologist. The goal was to provide a minimally invasive treatment for many problems deep within the brain for which traditional neurosurgical procedures were neither satisfactory nor effective. The tools that allowed neurosurgeons to accomplish this goal included focused particle beams or photon beams generated by the gamma knife or by linear accelerators. The technique also required highly precise (<1 mm) intracranial guiding systems (stereotactic technology). The initial evolution of this technology was cautious. It was based on more than 30 years of experimental and clinical work that preceded its introduction into the worldwide medical community beginning in the mid-1980s. In the United States, the vast majority of centers provide this technology based on the multidisciplinary input of neurosurgeons, radiation oncologists and medical physicists. The team provides both the necessary experience as well as the different perspectives that facilitate safe intervention and effective outcomes. The issue of responsibility in this multidisciplinary medical team should not be obfuscated by individual socio-economic concerns (who's in charge, who gets paid?). The recent purchase of an expensive deice for fractionated frameless radiotherapy by Southwest Medical Center may impact on Rosenthal and Glatstein's recent publication. In fact, stereotactic fractionated radiotherapy is the expensive treatment in search of a disease to pay for it Of greater concern is the authors' misconceptions (misunderstanding?) about the goals of radiosurgery (the second issue). Initially, radiosurgery was created to provide small volume destruction (in this case, true necrosis) of small target volumes withinthe basal ganglia, thalamus, or internal capsule for the treatment of intractable movement disorders, chronic pain, or medically refractory neuroses. With the redesign of the technology, deep-seated neoplasms and vascular malformations became more appealing targets with an entirely different radiobiologic goal. Instead, the goal became radiobiological inactivation of the ability of a tumor cell to divide and multiply (for tumors) or progressive luminal closure induced by endothelial hyperplasia (in the case of vascular malformations). Preservation of the surrounding normal brain (a feature brought about by the very sharp fall-off of the radiation dose delivered to small volumes with precise technology) reduced the risk of complications to normal brain, especially in contrast to surgical extirpation. Fractionated radiation therapy has rarely been an alternative to the usage of radiosurgery for these conditions. For malignant tumors, radiosurgery is most often used in conjunction with fractionated radiation therapy to take advantage of the single fraction destructive effects of radiosurgery followed or preceded by conventional fractionated radiation therapy. Such an approach enhances the likelihood of a satisfactory response based on the standard 4 Rs of curret radiobiological thinking. Stereotactic radiosurgery is a single "fraction" treatment; fractionated stereotactic radiosurgery is an absolute oxymoron. Certainly, renewed interest in the risk-benefit of fractionated radiation therapy is a logical outgrowth of the current tremendousave of enthusiasm for radiosurgery. In fact, the growth of radiosurgery has made radiation oncologists re-think their own practice of conventional radiation therapy. Similarly, it has had a profound impact on procedure selection by neurological surgeons. The third issue is addressed by the enormous volume of literature relative to outcomes in vascular malformations, malignant tumors, and benign tumors. The usage of radiosurgical technology should continue to stimulate thoughtful investigators to advance outcomes in these difficult conditions and reduce the risks of standard surgical techniques. It must be based on a collegial and multidisciplinary approach. The timing of Rosenthal and Glatstein's editorial was a mystery, appearing almost atavistic, especially considering the enormous growth of understanding and experience accumulated in the ten-year interval since both linac and gamma knife radiosurgical tecnologies became available in North America. AUTHORS' RESPONSE: In response to the Letter to the Editor by Lunsford, Flickinger and Larson, our main objectives in writing that article were twofold. The first was to review those principles of fractionation derived from a near century's experience in clinical radiobioloy. We have learned over and over again that, in general, hypofractionation leads to poorer tumor control, and more frequent and severe normal tissue complications. We believe that this point was, perhaps, not as fully appreciated during the development of radiosurgery because of a more surgical rather than radiotherapeutic influence. The second objective regards the safety issues of the even more widespread use of radiosurgery for brain tumors during the period when long-term follow-up data (ten years or more) are still emerging. Radiosurgery is in common use at our institution, the University of Pennsylvania Medical Center. We in no way wish to diminish the established safety and effectiveness of radiosurgery for arteriovenous malformations (AVMs). Additionally, we wholeheartedly encourage continued investigation for benign and malignant intracranial tumors. Our chief concern is the objective scientific validation of radiosurgery for these latter applications in prospective trials which have adequate long-term follow-up to establish safety. The central nervous system is the most unforgiving organ in terms of late radiation effects. Are all patients undergoing radiosurgery for benign tumors being accurately informed of the good results of modern fractionated radiotherapy, and those who undergo it for malignant tumors, that objective phase III validation and long-term safety data are NOT yet available? It frightens us even more that Lunsford et al. state, "In fact, the growth of radiosurgery has made radiation oncologists re-think their own practice of conventional raiation therapy." Just when do we evaluate the new clothes for the emperor Lunsford et al. tell us that radiosurgery technology has been "re-designed" with ".an entirely different radiobiologic goal. (the) inability of a tumor cell to divide and multiply." Radiation oncologists have long been taught as residents that raiologists accept the definition of "radiobiologic cell death" as the loss of continual clonogenicity. We all strive to this end in the treatment of tumors, but we are concerned about the extrapolation of the accepted application of radiosurgery for AVM tumors. More than 10,000 patients have had radiosurgery for brain tumors. Many of these have been benign, and more than 1,000 patients were treated with protons at the Harvard Cyclotron Unit, mostly for pituitary adenoma. Their experience has established safety, but the data for photon radiosurgery is not as large or mature, and one wonders how much photon radiosurgery adds to the excellent results achievable by conventional fractionated radiotherapy, especially for patients with pituitary tumors. With respect to malignant primary tumors or metastases, there have been fewer patients so treated. We recognize that longer term follow-up is not as important an issue for this unfortunate patient population whose survival period is generally short. Nonetheless, we reiterate that: A) hypofractionation has historically been shown to lead both to decreased control and increased complications, and B) that the higher the grade of a brain tumor, the more difficulty we have in localizing its extensions, especially when a treatment volume is <3 cc. There is absolutely no evidence that fractionated stereotactic treatment is an "oxymoron." Those data are only now beginning to emerge. It makes sense to encourage the investigation of radiosurgery as a boost followingonventional fractionated radiotherapy, or, for those who had the wherewithal to develop practical and cost-effective methods to treat with "fractionated radiosurgery" (read "stereotactic radiotherapy") to use those principles of clinical radiobiology twe have learned painstakingly over the last century to drive clinical investigation, and not rely solely on the impetus of new technology. Such investigation is ongoing at our institution, as we strive for the scientific evaluation of the comparative efficacy and long-term safety of radiosurgery for brain tumors. Had Coutard and Baclesse not pioneered fractionation, radiotherapy probably would have fallen into oblivion due to the morbidities of single shot treatment. Indeed, much of the first half of this century was spent learning that doses large enough to sterilize a mass of tumor cells (10 logs) cannot be predictably given safely. Instead, fractionation evolved which permitted us to exploit repopulation, redistribution, reoxygenation and repair. The use of these large single doses remains, at least in our minds, investigational in the treatment of especially malignant tumors. This is the way this subject is presented to patients here.

Journal Article↗

Extinction and synesthesia in patients with spinal cord injuries.

Extinction and synesthesia were studied in 50 patients with spinal cord injury with various levels and extents. Extinction was found in 20 (40 per cent) and synesthesia in 6 (12 per cent) of the 40 males and 10 females. No correlations were found between either of the two phenomena and parameters of patient's age, lesion's age, lesion's level and extent, or accompanying head injury. The latter occurred in 22/50 patients (44 per cent), diagnosed by a history of amnesia. Extinction was tested by synchronous double stimulation unilaterally and bilaterally, symmetrically and asymmetrically. It was more frequent unilaterally than bilaterally. The modalities of superficial sensibility were prone to be extinct but those of deep sensibility (pallesthesia from bone conduction and kinesthesia) were not. Extinction of tactile responses did not imply that all other skin modalities (pain, temperature, pressure, skin pallesthesia) will also be extinct in an all or nothing fashion. Modalities could become extinct either singly or in combination. Extinction in spinal man was presumed to be caused by a reduction of perception in hypesthetic areas and was of diagnostic value insofar as its segmental distribution suggested the longitudinal extent of a cord lesion. This concept is in accord with the results of monkey experiments by Eidelberg and Schwartz (1971). Synesthia in spinal man is not identical with synchiria of the monkey. It is not in a reciprocal relationship with extinction and both phonemena co-existed in four of the six patients. Synesthesia is elicited by a stimulus delivered to the normesthetic skin above the level of the lesion with two responses: one well localised at the site of stimulation and the other unilaterally or bilaterally in anaesthetic parts of the body. Five of the six patients reported volitional phantom movements of somatic (toes) and/or visceral (micturition-defaecation) structures. Such sensations are elicited by remembering the engrams of pre-traumatic experiences in areas of the body image connected with motor function. Synesthesia could be understood as a sensory counterpart in areas of the body image when ascending impules of actual perception are mixed with impulses modulated at the artifical synapse of the rostral cord stump creating a phantom sensation.

Adolescent↗

Contribution of perceptual fluency to recognition judgments.

Following a shallow (count vowels) or deep (read) study task, old and new words were tested for both fluency of perception and recognition memory. Subjects first identified a test word as it came gradually into view and then judged it as old or new. Old words were identified faster than new words, indicating implicit, perceptual memory for old words. Independently of this effect, words judged old were identified faster than words judged new, especially after shallow study. Eight experiments examined the possible causal relationship between perceptual fluency and recognition judgements. Experiments 1 to 4 showed that fast identifications per se do not promote old judgments. Accelerating the identification of test items by semantically priming them or making them come more quickly into view did not affect recognition judgments. Experiment 5 showed that the usual association of fast identifications with old judgments is not an artifact of item selection because the association disappeared when the identifications and judgements were segregated into different phases of the test task. Experiments 6 and 7 showed tha the likelihood of old judgments increases directly with the pretested perceptibility of test words, but only after shallow study. Experiment 8 showed that the dependency of recognition judgments on perceptual fluency continues to hold when the requirement to identify the words before judging them is eliminated. We conclude that fluency of perception contributes to recognition judgments, but only when the fluency is produced naturally (e.g., through perceptual memory) and explicit memory is minimal.

Adult↗

Desipramine attenuates working memory impairments induced by partial loss of catecholamines in the rat medial prefrontal cortex.

RATIONALE: The density of tyrosine hydroxylase-immunoreactive (TH-IR) axons in the prefrontal cortex of schizophrenic subjects may be reduced by as much as 50% in the deep cortical layers (Am J Psychiatry 156:1580-1589, 1999). Previously, we demonstrated that approximately 60% loss of TH-IR axons in the rat medial prefrontal cortex (mPFC) decreases local basal and stress-evoked extracellular dopamine (DA) concentrations, suggesting that moderate loss of DA axons in the mPFC is sufficient to alter the neurochemical activity of the remaining DA neurons (Neuroscience 93:497-505, 1999). OBJECTIVES: To further assess the functional consequences of partial mPFC DA depletion, we examined the effects of 6-hydroxydopamine lesions of the rat mPFC on behavior in a T-maze delayed-response task. We also assessed whether chronic administration of the norepinephrine (NE) uptake inhibitor, desipramine (DMI), attenuates lesion-induced deficits in T-maze performance. Previous research indicates that inhibition of NE transport in the mPFC results in a concomitant increase in extracellular DA and NE. RESULTS: Moderate loss of mPFC DA and NE (approximately 50 and 10% loss, respectively) was sufficient to impair delayed-response behavior, in part due to an increase in perseverative responding. Chronic DMI treatment (3 mg/kg delivered via osmotic pumps) impaired performance of control rats but attenuated the deficits in delayed-response behavior in rats previously sustaining loss of mPFC DA and NE (approximately 75 and 35% loss, respectively). CONCLUSION: These data suggest that moderate loss of DA and NE in the prefrontal cortex is sufficient to impair cognitive function, and these behavioral effects are attenuated by inhibition of the NE transporter.

3,4-Dihydroxyphenylacetic Acid↗

Self-awareness and the subconscious effect of personal pronouns on word encoding: a magnetoencephalography (MEG) study.

The effect of personal pronouns such as "ein" (German for "a"), "mein" (German for "my") and "sein" (German for "his") on the processing of associated nouns was investigated using MEG. Three different encoding strategies were provided in order to vary the level of consciousness involved in verbal information processing. A shallow (alphabetic), a deep (semantic) and a very deep (contextual) encoding instruction related to visual word presentation were given to all study participants. After the encoding of pronoun-noun pairs, recognition performances of nouns only were tested. The number of correctly recognized nouns previously associated with "sein" was significantly lower than the number of correctly recognized nouns previously associated with "ein" in the shallow encoding condition. The same trend was found for "mein" associated nouns which were also less accurately recognized compared to "ein" associated nouns. Magnetic field distributions recorded during the encoding phases revealed two significant effects, one between about 200 and 400ms after stimulus onset and the other between about 500 and 800ms. The earlier effect was found over occipito-parietal sensors, whereas the later effect occurred over left frontal sensors. Within both time ranges, brain activation varied significantly as a function of associated pronoun independent of depth of word processing. In the respective areas of both time ranges, conditions including personal pronouns ("mein" and "sein") showed higher magnetic field components compared to the control condition of no personal pronouns ("ein"). Evidence is shown that early stage processing is able to distinguish between no personal and personal information, whereas later stage processing is able to distinguish between information related to oneself and to another person (self and non-self). Along with other previous reports our MEG findings support the notion that particular human brain functions involved in processing neurophysiological correlates of self and non-self can be identified.

Adult↗

Neuronal activity in the second somatosensory cortex of monkeys (Macaca mulatta) during active touch of gratings.

1. In penetrations made into the upper bank of the lateral sulcus in two monkeys (Macaca mulatta), cells were isolated from the second somatosensory cortex (SII). During single-cell recordings, animals performed an active touch task in which they rubbed their fingertips over pairs of gratings differing in groove width and indicated which was the smoother surface. Hand motion and downward applied force were measured and recorded during these strokes. 2. In this survey, 151 penetrations provided observations on 352 cells that responded to passive stimulation of the digits or during performance of the active touch task. Consistent with previous reports, receptive fields (RFs) in SII were large, often multi-digit, and frequently included a portion or all of the hand and occasionally the arm. Modality was determined for 92 of 127 fully characterized cells, and included 70 cutaneous, 5 deep, 11 Pacinian corpuscle, and 6 joint cells. Characteristic of SII, modality could not be defined in 35 cells that were unresponsive to passive stimulation or whose responses varied widely over time. 3. Response properties of a subgroup of 79 cells in SII resembled those previously studied in the primary somatosensory cortex (SI) and ventroposterior lateral nucleus of the thalamus (VPL) using identical procedures. Correlation analysis revealed that 29 of these cells, like a portion of cells in SI, responded to changes in groove width independent of force or velocity. This selectivity could be considered a form of feature specificity. 4. In contrast to SI and VPL, transient responses to the fingertips contacting small elevated metal bars, which demarcated the beginning, middle, and end of strokes across the gratings, were seen in a majority of SII cells (109/127). During contact with bars, 89 cells displayed excitatory responses and 20 cells showed suppressed activity. Twelve cells, which responded to bars in isolation from gratings, provided a possible example of increased stimulus selectivity. 5. Passive stimulation failed to activate 16 cells that responded, in some cases differentially to gratings or force, during the task. Responses of nine other cells demonstrated task-dependent modulation in the form of response reduction or enhancement during selected portions of the stroke. In these same cells, response changes did not occur under comparable stimulus conditions in other portions of the stroke that differed only in behavioral context. These types of selective response modulations, not noted in our previous studies of VPL or SI, suggest that mechanisms regulating sensory inputs may affect SII.(ABSTRACT TRUNCATED AT 400 WORDS)

Afferent Pathways↗

Zinc-rich transient vertical modules in the rat retrosplenial cortex during postnatal development.

The rat retrosplenial cortex is part of a heavily interconnected limbic circuit, considered to have an important role in spatial memory. Interestingly, the granular retrosplenial cortex has an exceptionally distinct system of dendritic bundles, originating from callosally projecting pyramidal neurons in layer II. These can be detected as early as postnatal day 5; and, although their functional significance remains to be elucidated, the existence of these bundles makes the granular retrosplenial cortex an attractive model system for a wide range of development and functional investigations. Here, we report four results concerning the development of modularity in the granular retrosplenial cortex in rats as investigated by neurochemical markers associated to cortico-cortical and thalamo-cortical connections. Emphasis is placed on zinc, an activity-related substance associated with glutamatergic, non-thalamic terminations. 1) Zinc shows a transient strong expression during early postnatal development, but later than the appearance of the upper layer bundles (at postnatal day 5). By postnatal day 11 to postnatal day 15 staining for zinc achieved its most complex pattern; such that layer I had an elaborate organization both in the tangential and radial dimensions. Three sublaminae were distinguished (layers Ia-c): a superficial, thin tier (Ia) with patchy, moderate staining which periodically intruded into the underlying layer Ib ("funnel" modules), a middle band of variable width and light staining (Ib), and a deep, thin band with heavy and patchy staining (Ic) which, at rostral levels, spread upward into layer Ib (as "dome-like" modules). 2) At postnatal day 15, immunohistochemical methods showed that layers Ia, b zinc-funnels were co-localized with glutamate receptor subunits 2/3, GABA receptor type A alpha1 subunit and the thalamo-cortical marker, vesicular glutamate transporter 2. Layer Ic and the zinc dome-like modules were co-labeled for the cortico-cortical marker, vesicular glutamate transporter 1 and calretinin. 3) The spatial coincidence between zinc funnels in layers Ia, b and vesicular glutamate transporter 2 was further investigated by electron microscopy, which demonstrated co-localization of zinc and vesicular glutamate transporter 2 in synaptic boutons. The unusual co-localization of zinc and thalamo-cortical terminations was confirmed by retrograde transport of zinc to neurones in the anterodorsal thalamic nucleus at postnatal day 9 and postnatal day 13, and can thus be considered a transient zinc expression in thalamo-cortical boutons. This was not observed at postnatal day 28 or later. 4) After postnatal day 18, zinc staining started to fade in all layers. Before postnatal day 21, the heavy staining for zinc in the domes had completely disappeared. Zinc staining in layer Ia and the funnels virtually disappeared after postnatal day 28. A transient expression of zinc is reported in at least one other cortical area (layer IV of barrel cortex from postnatal day 5 to postnatal day 14, maximal at postnatal days 9-11). We conclude that the transient expression of zinc can occur in both limbic and sensory areas, and that down-regulation of zinc in cortical modules might be related to synaptic plasticity and remodeling during development.

Aging↗

The writing approaches of secondary students.

BACKGROUND: Research with college students has supported a model of writing approaches that defines the relationship between a writer and writing task along a deep and surface process continuum (Biggs, 1988). Based on that model, Lavelle (1993) developed the Inventory of Processes in College Composition which reflects students' motives and strategies as related to writing outcomes. It is also important to define the approaches of secondary students to better understand writing processes at that level, and development in written composition. AIMS: This study was designed to define the writing approaches of secondary students by factor analysing students' responses to items regarding writing beliefs and writing strategies, and to compare the secondary approaches to those of college students. A related goal was to explore the relationships of the secondary writing approaches to perceived self-regulatory efficacy for writing (Zimmerman & Bandura, 1994), writing preferences, and writing outcomes. SAMPLES: The initial, factor analytic phase involved 398 junior level high school students (11th grade) enrolled in a mandatory language arts class at each of three large Midwestern high schools (USA). Then, 49 junior level students enrolled in two language arts classes participated as subjects in the second phase. METHOD: Classroom teachers administered the Inventory of Processes in College Composition (Lavelle, 1993), which contained 72 true-or-false items regarding writing beliefs and strategies, during regular class periods. Data were factor analysed and the structure compared to that of college students. In the second phase, the new inventory, Inventory of Processes in Secondary Composition, was administered in conjunction with the Perceived Self-Regulatory Efficacy for Writing Inventory (Zimmerman & Bandura, 1994), and a writing preferences survey. A writing sample and grade in Language Arts classes were obtained and served as outcome variables. RESULTS: The factor structure of secondary writing reflected three process dimensions. The first factor, Elaborative-Expressive, describes a writing strategy based on personal investment and audience concern. The second factor, Planful-Procedural, denotes sticking to a plan, following the rules, and 'preparing' for writing. Achieving-Competitive, the third factor, reflects a 'teacher pleasing' strategy or doing only what needs to be done to get a good grade. Two factors from the college model, Elaborative and Procedural, were replicated, and two were not, Reflective-Revision and Low Self-Efficacy. Regression analyses supported that the processes in writing under a timed condition are different from those used when writing over time, and that students' perceptions of writing self-regulatory efficacy were predictive of writing success under both conditions.

Adolescent↗

Radiosurgery for residual or recurrent nonfunctioning pituitary adenoma.

OBJECT: Nonfunctioning pituitary adenomas comprise approximately 30% of all pituitary tumors. The purpose of this retrospective study is to evaluate the efficacy and role of gamma knife radiosurgery (GKS) in the management of residual or recurrent nonfunctioning pituitary adenomas. METHODS: A review was conducted of the data obtained in 42 patients who underwent adjuvant GKS at the University of Pittsburgh between 1987 and 2001. Prior treatments included transsphenoidal resection, craniotomy and resection, or conventional radiotherapy. Endocrinological, ophthalmological, and radiological responses were evaluated. The duration of follow-up review varied from 6 to 102 months (mean 31.2 months). Fifteen patients were observed for more than 40 months. The mean radiation dose to the tumor margin was 16 Gy. Conformal radiosurgery planning was used to restrict the dose to the optic nerve and chiasm. Tumor control after GKS was achieved in 100% of patients with microadenomas and 97% of patients with macroadenomas. Gamma knife radiosurgery was equally effective in controlling adenomas with cavernous sinus invasion and suprasellar extension. No patient developed a new endocrinological deficiency following GKS. One patient's tumor enlarged with an associated decline in visual function. Another patient experienced a deterioration of visual fields despite a decrease in tumor size. CONCLUSIONS: Gamma knife radiosurgery can achieve tumor control in virtually all residual or recurrent nonfunctioning pituitary adenomas. Dose sparing facilitates tumor management even when the adenoma is close to the optic apparatus or invades the cavernous sinus.

Adenoma↗