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Words created by children versus aphasic adults: an analysis of their form and communicative effectiveness.

The creation of words through the novel combination of English morphemes (e.g., "map ball" to refer to a globe) was studied in 40 preschool children, 40 grade school children, and 40 adults. These lexical innovations were collected while subjects named pictured objects, and were evaluated in terms of incidence, communicative effectiveness, novelty, semantic accuracy, and certain linguistic characteristics. Preschool children's innovations were as communicatively effective as those of grade school children and adults and contained the highest proportion of innovations with redundant elements. Grade school children produced the highest proportion with semantic inaccuracies. This suggests that preschoolers invent words from a limited set of highly familiar terms, whereas grade schoolers rely more on partially known terms. In addition, the children's innovations differed significantly from those previously collected from aphasic adults. This demonstrates that aphasia does not cause a regression to an early level of linguistic sophistication.

Anomia

The nucleotide recognized by the Escherichia coli A restriction and modification enzyme.

The nucleotide recognition sequence for the restriction-modification enzyme of Escherichia coli A (EcoA) has been determined to be GAG-7N-GTCA. This sequence is fairly similar, but distinctly different from the two other type I restriction enzyme recognition sites known for E. coli B and E. coli K12, respectively. N6-adenosine methylation has been observed at nucleotide positions 2 and 12 within that sequence after modification by EcoA. As a reference point for mapping the single EcoA site in lambda, the position of lambda point mutation Oam29 has been determined also.

Base Sequence

Enzymatic cleavage of a bacterial chromosome at a transposon-inserted rare site.

The sequential use of the methylase M.Xbal (5'.TCTAGm6A) and the methylation-dependent endonuclease Dpnl (5'-Gm6A decreases TC) results in cleavage at 5'.TCTAGA decreases TCTAGA. This recognition sequence was introduced into a transposon derived from the Mu bacteriophage and transposed into the genome of the bacterium Salmonella typhimurium. M.Xbal methylation was provided in vivo by a plasmid containing the M.Xbal gene and the S. typhimurium genome was cleaved to completion by Dpnl at one or more sites, depending on the number of transposon insertions. The resulting genomic fragments were resolved by pulsed-field electrophoresis. The potential use of single M.Xbal/Dpnl cleavage sites as reference positions to map rare restriction sites is discussed.

Base Sequence

Branch duct origin of solid type pancreatic ductal carcinoma.

A case of branch duct origin of solid type pancreatic ductal carcinoma is presented. Stepwise tissue sections of an entire specimen, including the carcinoma area, and mapping, with special reference to the relationship between the main duct and the carcinoma area, were performed. Carcinoma cells of the branch duct showed intraductal spread with minimal stromal invasion. No carcinoma tissue was observed in the main duct. Therefore this case was considered to be of branch duct origin. The finding of histologically identified branch duct origin of solid type pancreatic ductal carcinoma indicates a distinct advantage to be gained by giving special attention to both the main and branch ducts when using image diagnosis for early detection of carcinomas, and may represent the first reported surgically resected case.

Humans

Therapy with refugee families: what is a "good" conversation?

This article addresses the question of what is a "good" conversation by analyzing "poor" conversations. During a project on family therapy with refugee families, we often experienced what we labeled as "poor" conversations. We present examples of a variety of such conversations, which we then analyze with reference to therapeutic maps and central concerns of the therapists. We describe four patterns of therapist/client relationships that emerged from this analysis. The main focus of our discussion is to clarify when "poor" conversations may be an important part of the therapeutic process, and when and how they should be avoided. We believe that the issues we raise are central to therapeutic work in general and not just to therapy with refugee families.

Acculturation

The vestibular nuclei in the domestic hen (Gallus domesticus). IV. The projection to the spinal cord.

Horseradish peroxidase was injected at various levels of the spinal cord of the hen and the cells in the brain stem, labeled due to retrograde transport of the tracer enzyme, were mapped with particular reference to the vestibular nuclear complex. The Deiters' nuclei project ipsilaterally to the spinal cord. The projection from the nucleus Deiters ventralis reaches down to the lumbosacral spinal cord. The spinal projection from the nucleus Deiters dorsalis is somatotopically organized. Cells localized rostrally within the nucleus project to upper parts of the spinal cord cells localized caudally project to the lumbosacral spinal cord. The medial and the descending nucleus contain labeled cells in two compartments of the nuclei. In each of them a rostral one projects to the upper cervical cord, a caudal one projects to the thoracical spinal cord. In addition, labeled cells are observed in the reticular formation, mainly in the pons and the medulla oblongata, in the red nucleus, in the raphe nuclei and in the periaqueductal grey. Very few labeled cells are observed in the locus ceruleus, the nucleus intercalatus and in the nucleus of the solitary tract. In some cases, the number of labeled cells in the various nuclei in the brain stem projecting to the spinal cord was counted to get an impression of the quantitative importance of the vestibulospinal projection relative to afferents to the spinal cord from the other nuclei. The findings are discussed in the light of what is known of the vestibulospinal projection in mammals.

Animals

Non-invasive external regional measurement of cerebral circulation time changes in supratentorial infarctions using pertechnetate.

A method for measuring regional cerebral circulation time (rCCT) between the hemispheres using intravenous pertechnetate and a multidetector system is presented. Interhemispheric differences of rCCT instead of absolute values were selected because of the variation of pertechnetate bolus dispersion due to changes in the systemic circulation and injection technique inter-and intraindividually. Time activity curves over one minute were analyzed by a modified gamma function fitting method. The results are printed as a brain map which shows reference values and abnormal findings. Abnormal rCCT asymmetry was observed in 10 out of 77 controls (13%) and 58 out of 65 patients with cerebral infarction (89%). Within 2 weeks after a stroke shorter circulation time values on the side of the lesion than on the contralateral side were found in 5 patients. In the severe infarction cases and in the acute stages of infarction circulatory changes could be found in a great number of areas. In patients with manifest diabetes abnormal circulatory findings occurred in larger regions and in a greater number of the patients than in those without that disease. Although the luxury perfusion and diaschisis phenomena, as well as the influence of cross-over of the count rates between the hemispheres, reduce circulatory time differences, use of the present pertechnetate method allows detection of subtle regional circulatory changes in patients with brain infarction.

Adult

Logical types and ostensive insight.

Discrimination of analogic and digital modes in communication allows clearer distinction of transference (mutative) and extra-transference interpretation. Relying on explicit formulation, Strachey introduces 'implicit' mutative interpretation, which is explicitly extra-transferential but transferential as to process. Each interpretive verbalization has an analogic impact pertaining to the analogic unconscious level of archaic objects, and its emitter--the analyst--is its propositional subject. Interpretation can afford to be as explicit as possible inasmuch as it retains the metalevel in which the analyst can remain as third-party to what he formulates, but it must be gradual in making explicit the archaic object he actualizes. It is by 'withholding'--as Strachey says--the validation of the archaic relational analogic 'psychic reality' that is the referent of interpretive 'mapping', and not be verbal 'mapping' in itself, that the 'judgement of reality' underlying ostensive insight comes into play.

Awareness

A Macintosh program for the management of biological samples generated by recombinant DNA techniques.

A series of Macintosh HyperCard Stacks have been developed to organize DNA clones. Four different levels of organization have been designed: the individual data cards including links to restriction maps and literature reference cards, the boxes in which the individual test tubes are organized, the freezers in which the boxes are kept and the laboratories where the freezers are found. A data base of all the commercially available DNA cloning vectors has been developed to illustrate how these stacks can be used to organize clones according to a functional hierarchy.

DNA Restriction Enzymes

Contamination of a monoclonal antibody with LDH-virus causes interferon induction.

Interferon induction occurred unexpectedly during an in vivo study using a mouse monoclonal antibody. The interferon was typed alpha/beta and the titer reached a maximum at 24 hours in contrast with other inducers. Similar results were obtained with a virus pool derived from the antibody and with a LDV reference strain. MAP-testing of the monoclonal antibody revealed contamination with lactate dehydrogenase virus (LDV). The production of IFN seems to be controlled genetically. This experimental error demonstrates the importance of an appropriate quality control of biological materials.

Animals

EEG mapping: current status and future prospects.

EEG mapping is the topographical display of parameters evaluated from multichannel EEG recordings. Different problems connected with EEG mapping are: number of electrodes, interpolation between electrodes, types of reference and statistical treatment of maps. These problems are discussed briefly and examples are given. To complete this report, a short historical background along with some comments about the clinical settings have been provided and attention given to future prospects.

Brain Mapping

[Localization of infarction of the anterior and inferior myocardial wall by body surface mapping].

11 patients after anterior myocardial infarction and 7 patients inferior myocardial infarction were subjected to potentials mapping from 87 body surface electrode system. The reference group was made up by 15 healthy individuals. The analysis referred to isopotential and isointegral maps during the 20 ms and 40 ms of the QRS onset and for the entire QRS. It was stated that the occurrence of abnormal potential minimum might be the essential diagnostic criterion. In the case of anterior infarction, the abnormal negative potentials is located in the vicinity of the sternum, whereas in inferior infarction in right and lower part of the chest. The diagnostics of inferior infarction requires additional criteria, ventricular activation time maps especially.

Action Potentials

Characterization of new baculovirus genotypes arising from inoculation of Pieris brassicae with granulosis viruses.

Previous studies have shown that of 15 Artogeia (Pieris) rapae granulosis virus isolates (ArGV1 to ArGV15) only two, ArGV1 and ArGV2, gave a normal dose-mortality response in larvae from an established colony of Pieris brassicae. We report here that at extremely high doses, approaching 10000 times the LD50 for ArGV1 and ArGV2, three other ArGV isolates caused low and irregular levels of mortality in P. brassicae. At similar doses Agrotis segetum GV caused 43% mortality in one infection, but no deaths ensued from other inoculations with this virus. Restriction endonuclease analysis of viral DNA recovered from individual larval cadavers revealed that, in most cases, progeny virus differed from the inoculum and consisted either of ArGV1 or of novel genotypes explicable as recombinants between genomes of the inoculum and of ArGV1. Field-collected P. brassicae inoculated with ArGV8 yielded a similar range of progeny genotypes. Physical maps were constructed for two such recombinants, based on comparative restriction analysis with reference to the published map of ArGV1 and to those of ArGV5 and ArGV8, which are presented. Replication of the inoculum genotype was observed in only two infections. The origin of ArGV1 DNA appearing among progeny from these infections and the relevance of our results to identifying ArGV DNA sequences that modulate pathogenicity for P. brassicae are discussed.

Animals

Rapid identification of gene sequences for transcriptional map assembly by direct cDNA screening of genomic reference libraries.

We have used the direct cDNA screening protocol to identify sequences transcribed in cerebral cortex from a reference library of human Xq28. To derive coding sequences from these genomic clones, we first identified fragments containing transcribed sequences and subjected these to exon trapping or to partial sequencing and analysis by Grail. In a preliminary analysis of three clones, coding sequences from two novel genes expressed in brain were identified. This method allows the rapid identification of coding sequences of genes expressed in specific tissues without recourse to cDNA libraries. The approach is amenable to large scale applications and should be useful for isolating candidate disease genes and in particular for assembling integrated transcriptional maps from large genomic regions.

Amino Acid Sequence

Sequence analysis and genetic mapping of porcine chromosome 11 centromeric S0048 marker.

We report the existence of a new family of swine centromeric satellite DNA composed of a 51-bp repeat unit, most specifically found on pig chromosome 11 centromere and with less specificity at the centromeric region of other meta- and submetacentric chromosomes. This satellite DNA family, which has no homologies with the Mc1 and Ac2 families published previously, was named Mc2. We designed a specific primer set for PCR amplification of this centromeric satellite DNA. Specificity of amplification was checked by using a porcine somatic cell hybrid panel and by FISH. Furthermore, the development of a PCR-RFLP marker of Mc2 repetition allowed its genetic mapping on the PiGMaP reference families panel. The centromere of chromosome 11 was thus integrated to the genetic map previously published.

Animals

[Vegetation analysis used for the detection of exophile tick populations in the south-east of France: the example Ixodes ricinus (Linne 1758) (acarina, ixodoidea)].

The cross-linking relation between the evidence of outside living tick populations and specific vegetation units allows for efficiently using the vegetation maps, and more especially the medium scale maps. Ixodes ricinus is referred to here as an example. The limitations of this data derived from such maps are evaluated by the authors. They suggest some means aiding in improving their efficiency through the knowledge of the ecological variables playing a role in the species settlement.

Methods

Genetic Differentiation is Constrained to Chromosomal Inversions and Putative Centromeres in Locally Adapted Populations With Higher Gene Flow.

The impact of genome structure on adaptation is a growing focus in evolutionary biology, revealing an important role for structural variation and recombination landscapes in shaping genetic diversity across genomes and among populations. This is particularly relevant when local adaptation occurs despite gene flow, where clustering of differentiated loci can maintain locally adapted variants by reducing recombination between them. However, the limited genomic resources for nonmodel species, including reference genomes and recombination maps, have constrained our understanding of these patterns. In this study, we leverage the Atlantic silverside-a nonmodel fish with extensive local adaptation across a steep latitudinal gradient-as an ideal system to explore how genome structure influences adaptation under varying levels of gene flow, using a newly available reference genome and multiple recombination maps. Analyzing 168 genomes from four populations, we found a continuum of genome-wide differentiation increasing from south to north, reflecting higher connectivity among southern populations and reduced gene flow at northern latitudes. With increasing gene flow, the number and clustering of FST outlier loci also increased, with differentiated loci found exclusively within large haploblocks harboring inversions and smaller peaks overlapping putative centromeric regions. Notably, sequence divergence was only evident in inversions, supporting their role in adaptive divergence with gene flow, whereas centromeric regions appeared differentiated because of low recombination and diversity, with no indication of elevated divergence. Our results support the hypothesis that clustered genomic architectures evolve with high gene flow and enhance our understanding of how inversions and centromeres are linked to different evolutionary processes.

Gene Flow

Brain maps and parallel computers.

It is well known that neural responses in many brain regions are organized in characteristic spatial patterns referred to as brain maps. It is likely that these patterns in some way reflect aspects of the neural computations being performed, but to date there are no general guiding principles for relating the structure of a brain map to the properties of the associated computation. In the field of parallel computing, maps similar to brain maps arise when computations are distributed across the multiple processors of a parallel computer. In this case, the relationship between maps and computations is well understood and general principles for optimally mapping computations onto parallel computers have been developed. In this paper we discuss how these principles may help illuminate the relationship between maps and computations in the nervous system.

Brain