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cis-Acting signal for inheritance of imprinted DNA methylation patterns in the preimplantation mouse embryo.

The inheritance of gametic methylation patterns is a critical event in the imprinting of genes. In the case of the imprinted RSVIgmyc transgene, the methylation pattern in the unfertilized egg is maintained by the early mouse embryo, whereas the sperm's methylation pattern is lost in the early embryo. To investigate the cis-acting requirements for this preimplantation stage of genomic imprinting, we examined the fate of different RSVIgmyc methylation patterns, preimposed on RSVIgmyc and introduced into the mouse zygote by pronuclear injection. RSVIgmyc methylation patterns with a low percentage of methylated CpG dinucleotides, generated by using bacterial cytosine methylases with four-base recognition sequences, were lost in the early embryo. In contrast, methylation was maintained when all CpG dinucleotides were methylated with the bacterial SssI (CpG) methylase. This singular maintenance of RSVIgmyc methylation preimposed with SssI methylase appears to be specific to the early, undifferentiated embryo; differentiated NIH 3T3 fibroblasts transfected with methylated versions of RSVIgmyc maintained all methylation patterns, independent of the level of preimposed methylation. The methylation pattern of the RSVIgmyc allele in adult founder transgenic mice that was produced by pronuclear injection of an SssI-methylated construct could not be distinguished from the maternal RSVIgmyc methylation pattern. Thus, a highly methylated allele in adult mice, normally generated by transmission of RSVIgmyc through the female germ line, was also produced in founder transgenic mice by bypassing gametogenesis and introducing a highly methylated RSVIgmyc into the mouse zygote. These results suggest that RSVIgmyc methylation itself is a cis-acting signal for the preimplantation maintenance of the oocyte's methylation pattern and, therefore, a cis-acting signal for RSVIgmyc imprinting. Furthermore, our inability to identify a sequence element within RSVIgmyc that was absolutely required for its imprinting suggests that the extent of RSVIgmyc methylation, rather than a particular pattern of methylation, is the principal feature of this imprinting signal.

3T3 Cells↗

Distribution patterns of demyelination correlate with clinical profiles in chronic inflammatory demyelinating polyneuropathy.

BACKGROUND: Chronic inflammatory demyelinating polyneuropathy (CIDP) is a heterogeneous disorder having a wide clinical range, and is characterised by multifocal demyelination that can involve the distal nerve terminals, intermediate nerve segments, and nerve roots. OBJECTIVE: To investigate whether the distribution patterns of demyelination along the course of the nerve correlate with clinical profiles in patients with CIDP. METHODS: Motor nerve conduction studies were carried out on 42 consecutive patients. According to the physiological criteria for demyelination, the presence of a demyelinative lesion was determined in the distal nerve segments (distal pattern) or intermediate nerve segments (intermediate pattern), or in both (diffuse pattern). The serum concentration of tumour necrosis factor (TNF)-alpha was measured by immunoassay. RESULTS: Patients were classified as having a distal (n=10), intermediate (n=13), or diffuse (n=15) pattern, or were unclassified (n=4). Patients with the distal or diffuse pattern had common clinical features such as subacute onset, symmetric symptoms, and weakness involving proximal as well as distal muscles. Patients with the distal pattern had a good response to treatment and a monophasic remitting course, but the diffuse pattern was associated with a treatment dependent relapsing course, reflecting longer disease activity. The serum TNF-alpha concentrations increased only in the "diffuse" subgroup of patients, and this might be associated with breakdown of the blood-nerve barrier and therefore, involvement of the intermediate segments. The intermediate pattern was characterised by a chronic course, asymmetric symptoms, less severe disability, and refractoriness to treatments. CONCLUSIONS: CIDP consists of subtypes with varying predilections for lesions along the course of the nerve. The distribution patterns of conduction abnormalities may be useful in the prediction of outcome of patients with CIDP.

Adolescent↗

Patterns of intestinal motility.

The small intestine in vivo is capable of a variety of patterns of contraction. Many of these patterns can result in the propulsion of intestinal contents. In the healthy human, dog, and rat propulsion is caused by at least two different patterns. One pattern seen in the fasted animal results in the intermittent movement of material out of any given segment of bowel and then the steady movement of this material down the bowel. In the fed state, there is a more or less uniform net aboral movement of contents. Although there are two distinct patterns, the net effect, in the rat at least, is that over long periods of time propulsion is of equal velocity in the two conditions. In certain disease states, other patterns of motility can be responsible for propulsion. These patterns can propel material orally as well as aborally. In light of these contractile patterns, it would not be surprising to find that propulsion in isolated segments can be affected by several different patterns of activity. Also, it would not be surprising to find that the various subsystems controlling motility can be integrated in several different modes to produce such patterns.

Animals↗

Discharge patterns of cat pontine brain stem neurons during desynchronized sleep.

1. Discharge pattern has been characterized by autocorrelation analysis of stationary portions of extracellularly recorded discharge trains of cat pontine brain stem neurons during spontaneously occurring desynchronized sleep episodes. 2. Neurons localized to the area implicated in control of the desynchronized phase of sleep, the gigantocellular tegmental field (FTG), show the most phasic or clustered discharge pattern, as evinced by initial peaks in the autocorrelations. At the peak, the FTG population average discharge probability is 3 times that expected had the discharges been evenly distributed over time. The initial peak extends beyond a lag of 3 s, indicating runs of clustered discharge extending beyond this duration. Neurons in other reticular tegmental fields, the tegmental reticular nucleus and pontine gray, show a more sustained or tonic discharge pattern. 3. Discharge patterns of a given cell are consistent from one desynchronized sleep episode to the next; units with phasic discharge patterns remain phasic, and tonic patterns remain tonic. 4. There is a three-way correlation among FTG units recorded at sites with many giant cells, units with high discharge rate increases on transition to desynchronized sleep, and units with a markedly phasic discharge pattern. This implicates the giant cells as the source of both the distinctive discharge rate and pattern changes of neurons during desynchronized sleep. 5. Stereotyped, regular discharge patterns are not characteristic of FTG or other units, suggesting they are not pacemakers and that endogenous activation of pacemaker cells is unlikely to be a mechanism for generation of the marked discharge rate increases on transition to desynchronized sleep that are found in FTG units. The irregular, clustered discharge pattern of FTG is more compatible with generation of discharge rate increases through interaction with other cells. The markedly phasic discharge of FTG units is also consistent with a driving role in generation of the phasic electrophysiologic events of desynchronized sleep.

Animals↗

Trained slow tracking. II. Bidirectional discharge patterns of cerebellar nuclear, motor cortex, and spindle afferent neurons.

Single-unit discharge was recorded in the dentate and interposed cerebellar nuclei, motor cortex, and C7 and C8 dorsal root ganglia during trained, slow hold-ramp-hold tracking, rapid alternating movement, torque-pulse perturbation, and action tremor of the monkey's wrist. Fifty-seven dentate and 45 interposed neurons were found in two monkeys that discharged in relation to slow tracking movement. Nearly all neurons had a distinct bidirectional pattern of discharge consisting of an abrupt increase (or decrease) in firing frequency at or before the onset of movement that was variably maintained throughout the ramp and was independent of movement direction. None of the neurons showed a clear relationship to direction, position, velocity, or load during the performance of this task. Nevertheless, many of these neurons discharged in relation to rapid alternation and (for interpositus) torque pulses in patterns that were directionally reciprocal. Some interpositus neurons showed a modulation related to tremor superimposed on the bidirectional discharge related to slow ramps. Twenty-nine neurons in motor cortex of one monkey discharged during slow hold-ramp-hold tracking in two patterns. Class I neurons (14 of 29) showed gradually changing, directionally reciprocal modulations of firing frequency for movements in opposite directions. These neurons were often related to torque load and/or to wrist position but not to velocity. The discharge pattern was similar to the pattern of activity of forearm muscles. Class II neurons (15 of 29) showed an abrupt change in firing frequency that was bidirectional. They were often related to torque load and/or to velocity but not to position. Motor cortex neurons discharged in relation to rapid alternating movements, torque pulses, and tremor in similar patterns that did not distinguish the two classes. Five units in dorsal root ganglia were identified as muscle spindle afferents. During ramps, their pattern of discharge was bidirectional and resembled the bidirectional discharge patterns of neurons in motor cortex (class II) and cerebellum. For some cells the bidirectional pattern varied slightly in relation to the direction and velocity of movement and the amount of torque load, but it was not related to the large changes in wrist position (muscle length). Modulation in relation to tremor was superimposed on the bidirectional pattern related to ramps. The comparison of spindle afferent discharge with the concurrent electromyogram (EMG) of the parent muscle suggested that spindles were driven by gamma-fusimotor activity dissociated from that of homonymous alpha-skeletomotor neurons.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Detecting spatiotemporal firing patterns among simultaneously recorded single neurons.

1. A particular firing pattern among simultaneously observed neurons represents a particular sequence of activity. If any multineuron pattern repeats significantly more than expected by chance, we may be observing a repeated state of a neural assembly as it processes similar units of information. 2. We present here an algorithm that rapidly finds all single or multineuron patterns that repeat two or more times within a block of data, as well as equations for calculating the number of patterns of given length and repetition that would be expected. The complexity of patterns for which it is practical to compute expected numbers is three to six spikes (inclusive). 3. Confidence limits are based on these expected numbers of patterns, so that is possible to identify groups of patterns that are worthy of further analysis. 4. These methods are tested against simulated multineuron data that has various types of known nonstationarities, with good agreement between observed and expected values. 5. Application to real spike trains shows a large excess of observed repeating patterns, of which some, but not all, are shown to be due to bursts of high frequency firing. 6. It should be possible to apply the new method as a filter in real time in order to search for an association between repeated pattern events and externally observable events (stimulus, behavior, etc.). Any repeated pattern events which cannot be so associated may represent a new indicator of internal events in the nervous system.

Algorithms↗

Spatiotemporal firing patterns in the frontal cortex of behaving monkeys.

1. Activity of up to 10 single units was recorded in parallel from frontal areas of behaving monkeys. 2. Spatiotemporal firing patterns were revealed by a method that detects all excessively repeating patterns regardless of their complexity or single-unit composition. 3. Excess of repeating patterns was found in 30-60% of the cases examined when timing jitter of 1-3 ms was allowed. 4. An independent test refuted the hypothesis that these patterns represented chance events. 5. In a given behavioral condition there were usually many different patterns, each repeating several times, and not one (or a few) pattern repeating many times. 6. In 13 out of 20 cases, when a single unit elevated its firing rate in association with an external event beyond 40/s, most of the spikes within that period were associated with excessively repeating spatiotemporal patterns. 7. Of 157 types of patterns whose excess was most marked, 107 were composed of spikes from one single unit, 45 of the patterns contained spikes from two single units, and only one was composed of spikes from three different single units. 8. These properties suggest that the patterns were generated by reverberations in a synfire mode within self-exciting cell assemblies.

Animals↗

Association between electrocardiographic pattern and level of C-reactive protein in patients with first anterior wall acute myocardial infarction.

BACKGROUND: Studies of prognostic markers after first anterior wall acute myocardial infarction (AMI) have reported an association between persistent ST segment elevation on the electrocardiogram (ECG) and increased levels of C-reactive protein (CRP) and worse outcome. The aim of the present study was to determine the nature of the relationship between these two factors. METHODS: Twenty-three consecutive patients admitted with AMI underwent 12-lead ECG on days 1, 2, 3 and 7 and were classified into two groups according to the findings on each day's recording: pattern A - isoelectric ST segment, or pattern B - ST segment elevation with or without a negative T wave. Serum CRP levels measured on the same days were also compared between the groups. RESULTS: The number of patients classified as pattern A increased over time, from 8 on day 1 after AMI to 11 on day 2, 12 on day 3 and 14 on day 7, with a corresponding decrease in pattern B patients. Most of the patients with pattern B on day 1 showed a persistent pattern on day 7. For each day studied, the pattern A and pattern B patients showed a statistically significant difference in serum CRP levels on the second and third days after AMI, respectively. Values for the day 7 groups were: 3.1 +/- 3.4 versus 9.6 +/- 3.8 mg% (p = 0.001) (day 2) and 3.1 +/- 1.2 versus 7.9 +/- 3.6 mg% (p = 0.0005) (day 3). CONCLUSION: There was a significant association between high CRP levels on the second and third day following first AMI and ECG pattern B (ST elevation). This conclusion strengthens our earlier findings that pattern B is predictive of poor outcome in this patient population.

Adult↗

Evolution of motor patterns: aquatic feeding in salamanders and ray-finned fishes.

Patterns of muscle activity (motor patterns) have generally been found to be strongly conserved during the evolution of aquatic feeding behavior within closely related groups of fishes and salamanders. We conducted a test of the generality of motor pattern conservation with a much broader phylogenetic scope than has been done previously. Activity patterns of three cranial muscles were quantified from electromyographic (EMG) recordings made during suction feeding in a salamander (Ambystoma mexicanum) and 4 widely divergent species of ray-finned fishes (Amia calva, Notopterus chitala, Micropterus salmoides and Lepomis macrochirus). General features of the motor pattern were the same in all species, but multivariate and univariate analyses of variance revealed highly significant differences among the 5 species in the average muscle activity pattern, indicating that the motor pattern has not been precisely conserved among these 5 taxa. Five of eight EMG variables that describe the intensity and timing of muscle activity differed among species. Only the intensity of activity of the adductor mandibulae appears to be a strongly conserved feature of the suction feeding motor pattern in anamniotes. A discriminant function analysis of the 8 EMG variables successfully classified about two thirds of the feeding incidents as belonging to the correct species. In contrast to the results of previous studies of closely related taxa, we found that numerous quantitative differences exist among species, indicating that functionally significant details of suction feeding motor patterns have changed during evolution, whereas several general features of the pattern have been conserved.

Ambystoma↗

Adrenal secretion of epinephrine after stimulation of trigeminal nucleus caudalis depends on stimulus pattern.

Adrenal catecholamine secretion after stimulation of trigeminal nucleus caudalis (Vc) was compared to that evoked from more ventrolateral brain stem areas (VLM) by sampling adrenal venous blood in anesthetized cats. The effect of stimulus pattern on catecholamine secretion was assessed by presenting an equal number (300 pulses over 15 s) of electrical stimuli (75 microA, 0.2 ms) as a continuous pattern and as a burst pattern pulse train at each electrode site. Epinephrine secretion increased promptly by 1 min after burst pattern stimulation of Vc, whereas continuous pattern stimuli had no consistent effect. Burst pattern stimulation of VLM sites caused a small decrease in epinephrine secretion, whereas continuous pattern stimuli had no significant effect. Adrenal norepinephrine increased equally after Vc or VLM stimulation regardless of stimulus pattern. The adrenal catecholamine secretory responses could not be explained by the transient evoked changes in adrenal venous plasma flow or arterial pressure. The data indicate that stimulation of Vc evokes a pattern-dependent increase in epinephrine secretion, whereas the increase in norepinephrine secretion is equal after burst or continuous pattern stimuli. Further, adrenal activation by brief neural stimuli cannot be assessed adequately in the cat by measuring epinephrine secretion alone, since stimulation of many ventrolateral brain stem sites caused a significant increase in norepinephrine secretion with no corresponding increase in epinephrine secretion.

Adrenal Glands↗

The age of striatum determines the pattern and extent of dopaminergic innervation: a nigrostriatal double graft study.

In animal models of Parkinson's disease, transplanted fetal mesencephalic dopaminergic neurons can innervate the dopamine-depleted host brain, but it is unclear why large portions of the host striatum are left uninnervated. During normal development, the dopaminergic innervation first occurs in the form of a dense patchy pattern in the striatum, followed by a widespread nerve fiber network. Using intraocular double grafts we have investigated dopaminergic growth patterns initiated when ventral mesencephalic grafts innervate striatal targets. The fetal lateral ganglionic eminence was implanted into the anterior eye chamber. After maturation in oculo, fetal ventral mesencephalon was implanted and placed in contact with the first graft. In other animals the two pieces of tissue were implanted simultaneously. Tyrosine hydroxylase (TH) immunohistochemistry revealed a pattern of dense TH-positive patches throughout the total volume of the striatal grafts in simultaneously transplanted cografts, while a widespread, less dense, pattern was found when mature striatal transplants were innervated by fetal dopaminergic grafts. To investigate which type or types of growth patterns that developed after grafting to striatum in situ of an adult host, fetal ventral mesencephalic tissue was implanted into the lateral ventricle adjacent to the dopamine-lesioned striatum. After maturation of the mesencephalic graft, the fetal lateral ganglionic eminence was implanted into the reinnervated part of the host striatum. TH immunohistochemistry revealed a few nerve fibers within the striatal graft and the growth pattern was of the widespread type. In conclusion, grafted dopaminergic neurons preferably innervate mature striatum with a widespread sparse nerve fiber network, while the innervation of the immature striatum occurs in the form of dense patches. Furthermore, when the patchy pattern is formed, the total volume of the striatal target is innervated while growth of the widespread type terminates prior to reaching distal striatal parts. Thus, the growth pattern seems essential to the final volume that is innervated. Once the widespread growth pattern is initiated, the presence of immature striatum does not change the dopaminergic growth pattern.

Age Factors↗

A normalization strategy applied to HiCEP (an AFLP-based expression profiling) analysis: toward the strict alignment of valid fragments across electrophoretic patterns.

BACKGROUND: Gene expression analysis based on comparison of electrophoretic patterns is strongly dependent on the accuracy of DNA fragment sizing. The current normalization strategy based on molecular weight markers has limited accuracy because marker peaks are often masked by intense peaks nearby. Cumulative errors in fragment lengths cause problems in the alignment of same-length fragments across different electropherograms, especially for small fragments (< 100 bp). For accurate comparison of electrophoretic patterns, further inspection and normalization of electrophoretic data after fragment sizing by conventional strategies is needed. RESULTS: Here we describe a method for the normalization of a set of time-course electrophoretic data to be compared. The method uses Gaussian curves fitted to the complex peak mixtures in each electropherogram. It searches for target ranges for which patterns are dissimilar to the other patterns (called "dissimilar ranges") and for references (a kind of mean or typical pattern) in the set of resultant approximate patterns. It then constructs the optimal normalized pattern whose correlation coefficient against the reference in the range achieves the highest value among various combinations of candidates. We applied the procedure to time-course electrophoretic data produced by HiCEP, an AFLP-based expression profiling method which can detect a slight expression change in DNA fragments. We obtained dissimilar ranges whose electrophoretic patterns were obviously different from the reference and as expected, most of the fragments in the detected ranges were short (< 100 bp). The normalized electrophoretic patterns also agreed well with reference patterns. CONCLUSION: The normalization strategy presented here demonstrates the importance of pre-processing before electrophoretic signal comparison, and we anticipate its usefulness especially for temporal expression analysis by the electrophoretic method.

Algorithms↗

Spatial patterns of transcriptional activity in the chromosome of Escherichia coli.

BACKGROUND: Although genes on the chromosome are organized in a fixed order, the spatial correlations in transcription have not been systematically evaluated. We used a combination of genomic and signal processing techniques to investigate the properties of transcription in the genome of Escherichia coli K12 as a function of the position of genes on the chromosome. RESULTS: Spectral analysis of transcriptional series revealed the existence of statistically significant patterns in the spatial series of transcriptional activity. These patterns could be classified into three categories: short-range, of up to 16 kilobases (kb); medium-range, over 100-125 kb; and long-range, over 600-800 kb. We show that the significant similarities in gene activities extend beyond the length of an operon and that local patterns of coexpression are dependent on DNA supercoiling. Unlike short-range patterns, the formation of medium and long-range transcriptional patterns does not strictly depend on the level of DNA supercoiling. The long-range patterns appear to correlate with the patterns of distribution of DNA gyrase on the bacterial chromosome. CONCLUSIONS: Localization of structural components in the transcriptional signal revealed an asymmetry in the distribution of transcriptional patterns along the bacterial chromosome. The demonstration that spatial patterns of transcription could be modulated pharmacologically and genetically, along with the identification of molecular correlates of transcriptional patterns, offer for the first time strong evidence of physiologically determined higher-order organization of transcription in the bacterial chromosome.

Chromosome Mapping↗

The hypertriglyceridemia of acquired immunodeficiency syndrome is associated with an increased prevalence of low density lipoprotein subclass pattern B.

Plasma low density lipoproteins (LDL) comprise multiple discrete subclasses, differing in size, density, and chemical composition. Gradient gel electrophoresis of LDL has demonstrated three common subclass patterns based on the predominant LDL subclass: large LDL, designated subclass pattern A; small LDL particles, designated subclass pattern B; and an intermediate pattern. Genetic studies have demonstrated that these patterns are inherited, but several lines of evidence suggest that environmental factors are important in the phenotypic expression of the pattern. The LDL B pattern is associated with increased levels of plasma triglyceride, reduced high density lipoprotein (HDL), and obesity. To better define the role of environmental factors on LDL phenotypic expression, we determined LDL patterns in patients with the acquired immunodeficiency syndrome (AIDS), an infection characterized by hypertriglyceridemia and weight loss. Similar to previous studies, plasma triglyceride levels were increased, whereas plasma cholesterol, LDL cholesterol, and HDL cholesterol levels were decreased in the AIDS subjects compared to those in age-matched controls. The percentage of AIDS subjects with the LDL B phenotype was increased 2.5-fold, demonstrating an increased prevalence of the LDL B phenotype in an acquired form of hypertriglyceridemia. For each LDL phenotype in AIDS, serum triglyceride levels were higher than the same phenotypic pattern in controls, with the most marked elevations in triglycerides found in AIDS subjects with the LDL B phenotype. In contrast to what was observed in controls, HDL cholesterol levels were decreased in all AIDS subjects and were unrelated to LDL pattern. Total and LDL cholesterol levels were higher in controls with the LDL B phenotype than in those with the LDL A phenotype, but there was no difference in total and LDL cholesterol in AIDS subjects with LDL B compared to A. On multiple regression analysis in subjects with AIDS, plasma triglyceride levels, age, and HDL cholesterol all contribute to the occurrence of the LDL B phenotype, but elevations in plasma triglyceride levels are the strongest independent predictor. Body mass index was not a predictor of LDL B phenotype in AIDS. These results suggest that disturbances in triglyceride metabolism that are caused by AIDS lead to the appearance of the LDL subclass B phenotype and provide further evidence that environmental or disease states that perturb lipid metabolism can produce an increased prevalence of the LDL B phenotype.

Acquired Immunodeficiency Syndrome↗

Maintenance of motor pattern phase relationships in the ventilatory system of the crab

The central pattern generator responsible for the gill ventilation rhythm in the shore crab Carcinus maenas can produce a functional motor pattern over a large (eightfold) range of cycle frequencies. One way to continue to generate a functional motor pattern over such a large frequency range would be to maintain the relative timing (phase) of the motor pattern as cycle frequency changes. This hypothesis was tested by measuring the phase of eight events in the motor pattern from extracellular recordings at different rhythm frequencies. The motor pattern was found to maintain relatively constant phase relationships among the various motor bursts in this rhythm over a large (sevenfold) range of cycle frequencies, although two phase-maintaining subgroups could be distinguished. Underlying this phase maintenance is a corresponding change in the time delay between events in the motor pattern ranging from 470 to 1800 ms over a sevenfold (300&shy;2100 ms) change in cycle period. Intracellular recordings from ventilatory neurons indicate that there is very little change in the membrane potential oscillation in the motor neurons with changes in cycle frequency. However, recordings from nonspiking interneurons in the ventilatory central pattern generator reveal that the rate of change of the membrane potential oscillation of these neurons varies in proportion to changes in cycle frequency. The strict biomechanical requirements for efficient pumping by the gill bailer, and the fact that work is performed in all phases of the motor pattern, may require that this motor pattern maintain phase at all rhythm frequencies.

Journal Article↗

Nurse attendee purchasing patterns.

Retention of nursing professionals is crucial in responding to the increasing demand for and complexity of nursing care. Augmenting the decision-making role of nurses is one important retention-related strategy. Purchasing patterns reflect one aspect of nurses' decision-making role. National meetings provide nurses with an opportunity to investigate educational and employment options, as well as to preview technological advances in patient care products and supplies. Yet, the purchasing patterns of nurses related to the marketing of patient care supplies, or educational material at national meetings have rarely been acknowledged or researched. This study investigated the purchasing patterns of nurse attendees as revealed at a national meeting and how attendance influenced purchasing input following the meeting. The study addressed differences in purchasing patterns between specific groups of nurse attendees, as well as the relationship between meeting attendance motivators and purchasing patterns. A descriptive methodology utilizing participant observation at four national nursing meetings and mail survey in four phases was used to determine if there were: (1) identifiable purchasing patterns for nurses attending specific nursing-organization sponsored national meetings, (2) differences in purchasing patterns between nurse attendees from these meetings, (3) differences in self-reported post-meeting purchase input, and (4) relationships between meeting attendance motivators and purchasing patterns. The findings demonstrate that nurse attendee purchasing patterns can be identified and do vary among nursing groups. Nurse attendees at specialty meetings were more likely to act as specifiers, have a more dominant role in purchasing and were more likely to influence product purchases than were nurse attendees from generalist meetings. Self-reports of post-meeting purchasing input demonstrated that nurse attendees utilized information gained at national meetings in subsequent patient care product selections, product utilization and specification of new products/equipment/protocols for trial within the practice site. Positive relationships between meeting attendance motivators and purchasing patterns were most evident for those nurse attendees with greater purchasing involvement and influence.

Adult↗

Patterns of infantile hemangiomas: new clues to hemangioma pathogenesis and embryonic facial development.

OBJECTIVES: Large facial infantile hemangiomas have higher rates of complications than small localized hemangiomas, more often require treatment, and can be associated with neurological, ophthalmologic, and cardiac anomalies (PHACE syndrome). The anatomic patterns of these hemangiomas are often referred to as "segmental" despite a lack of precise anatomic definitions. Our study aims to define "segmental" hemangiomas based on clinically observed patterns. Our secondary goal is to relate the observed patterns to currently accepted developmental patterns to gain insight into hemangioma pathogenesis and craniofacial development. METHODS: Photographic data were extracted from a large cohort of patients with infantile hemangiomas. We mapped 294 hemangiomas and recorded common morphologic patterns. Anatomic descriptions of the most common patterns were described and compared with accepted concepts of craniofacial development. RESULTS: Four primary segments were identified (Seg1-Seg4). Seg2 and Seg3 correspond with the previously recognized maxillary and mandibular prominences. Seg1 and Seg4 differ from standard human embryology texts. The frontotemporal segment, Seg1, encompasses the lateral forehead, anterior temporal scalp, and lateral frontal scalp. The segment Seg4, encompassing the medial frontal scalp, nasal bridge, nasal tip, ala, and philtrum, is substantially narrower on the forehead than the previously described frontonasal prominence. CONCLUSIONS: The patterns provide new clues regarding facial development. The observed patterns resemble previously described facial developmental units on the lower face but are distinctly different on the upper face. The patterns suggest that neural crest derivatives may play a role in the development of facial hemangiomas. Finally, these patterns (Seg1-Seg4) help standardize the nomenclature of facial segmental hemangiomas to analyze more effectively hemangioma risks and behavior.

Face↗

The local organization of behavior: discrimination of and memory for simple behavioral patterns.

A procedure was developed to enable nonverbal organisms to report what they remember of the temporal organization of their recent behavior. A baseline behavior with known temporal structure was established by a concurrent variable-interval variable-interval schedule for two temporal patterns of behavior (two different classes of reinforced inter-response times). The five pigeon subjects emitted these two temporal patterns on a center key and were occasionally given a short-term memory probe for their most-recently-emitted pattern. The probes consisted of symbolic delayed matching-to-sample tests, in which a response on a green side key was reinforced if the most recent pattern belonged to the shorter reinforced class, and a response to a red side key was reinforced if the most recent pattern belonged to the longer reinforced class. All subjects could report with over ninety percent accuracy what their most recently emitted behavioral pattern was when a retention interval separating the pattern from the memory probe was only .1 seconds. The retention interval was then manipulated, and it was found that recall for a pattern was frequently above chance after a delay of as much as eight seconds. Thus, pigeons can remember their most recent interresponse time not only right after it is emitted, but for several seconds thereafter. In other conditions, the patterns themselves were manipulated. It was found that as the patterns became more similar, discrimination became poorer. These results agree with the view that reinforcement tends to organize and integrate the local structure of behavior to the extent to which that structure is remembered.

Animals↗