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Detection of suspected malignant patterns in three-dimensional magnetic resonance breast images.

In this article, a Boolean Neural Network (BNN) is used for the detection of suspected malignant regions in 3D breast magnetic resonance (MR) images. The BNN is characterized by fast learning and classification, guaranteed convergence, and simple, integer weight calculations. The BNN learning algorithm is incremental, which allows the addition and deletion of training patterns without unlearning those already learned. The incremental learning algorithm automatically reduces the training set and trains the network only with those examples estimated to be useful. The architecture is suitable for parallel hardware implementation using available Very Large Scale Integration (VLSI) technology. The BNN was trained by using a set of malignant, benign, and false-positive patterns, extracted by experts, from selected MR studies, by using an incremental learning algorithm. After training, the network was tested by means of a consistency checking test, cross validation techniques, and patterns from actual MR breast images. During the consistency test, the BNN was tested by using the same patterns used for training. The BNN classification accuracy in this case was 99.75%, proving the ability of the BNN to select useful patterns from the training set. Then, a leave one out cross-validation (LOOCV) test was done by using patterns from the training set and the classification accuracy was 90%. Next, an extended training set was created by shifting the original patterns in different directions. A cross-validation test was then performed by dividing the set of patterns into a training and a test set. Classification accuracy was compared to the nearest neighbor classifier. Results showed that the BNN achieved an average of 77% classification accuracy while requiring only 34% of the original training set. On the other hand, the nearest neighbor classifier achieved an accuracy of 57.9% while retaining the whole training set. Another test using actual MR slices different from the training set was done and results compared favorably to a radiologist's findings. Test results show the BNN's capability to detect suspected malignant regions in 3D MR images of the breast. The proposed BNN architecture can save the radiologist a great deal of time browsing MR slices searching for suspected malignancies.

Algorithms↗

Quantitative analysis using the star volume method applied to skeleton patterns extracted with a morphological filter.

In this study, a morphological filter was combined with star volume analysis and applied to digital images to determine its potential usefulness in assessing trabecular structure. Three digital "geometric" test patterns (square, rectangle, circle) were created on a CRT (cathode ray tube). Each shape was arranged into five groups by size to yield 15 final "skeletal" patterns that were subsequently assessed with star volume analysis. Also, three digital X-ray images (background, soft tissue, bone block) were processed with a morphological filter to create three sets of 11 skeletal patterns each. These patterns were also assessed with star volume analysis and the ratio of extracted skeletal elements (in pixel numbers) to total pixel numbers was expressed as the pixel percentage. Star volume analysis was then applied to these digital skeletal images to yield the volume of extracted "skeletal" trabecular elements (Vsk) and the volume of nonskeletal (marrow space) elements (Vsp). The Vsk and Vsp were compared for all the different skeletal patterns. The pixel percentages were then compared to the star volume results for the X-ray test patterns. The Vsk decreased and Vsp increased as the number of operations (n) increased for both digital X-ray images and the geometric test patterns when the X-ray images were depicted by pixel percentages. Also, all true bone test patterns were clearly different both visually and quantitatively when compared to the noise skeletons extracted from background and soft tissue. Therefore, as Vsk was increased, so was connectivity. It can be concluded that the application of morphological filters and star volume analysis may be a useful tool in quantitatively determining the characteristics and continuity of trabecular skeletal structures. Further studies involving a larger number of bone samples and using models to compare measurements of calculated versus actual volume should reveal the true potential of this method for evaluating bone structure and its relationship to bone strength and also increase the tools available for evaluating bone diseases such as osteoporosis.

Femur↗

Learning a single limb multijoint coordination pattern: the impact of a mechanical constraint on the coordination dynamics of learning and transfer.

The coordination dynamics of learning and transfer were studied in a single limb multijoint task requiring rhythmic elbow and wrist motions. Participants were required to learn a continuous 90 degrees relative phase pattern between the elbow and wrist such that an angle-angle plot of elbow and wrist motion produced a circle with a diameter of 80 degrees. Joint motion was restricted to elbow and wrist flexion-extension on the sagittal plane and the to-be-learned 90 degrees relative phase pattern was always practiced with the learning arm supine. Cycling frequency was controlled by a pacing metronome set at 0.75 Hz. Issues regarding effector-independent and effector-specific transfer were addressed with three transfer conditions: (1). learning arm prone (LP), (2). non-learning arm supine (NS), and (3). non-learning arm prone (NP). Four subjects learned the required relative phase (90 degrees ) and amplitude (80 degrees ) pattern with their dominant arm and four with their non-dominant arm. The experiment produced three main findings with regard to elbow-wrist control processes: First, seven of eight participants spontaneously produced a wrist-lagging coordination pattern (wrist motion lagged elbow motion) in learning to produce a continuous relative phase pattern of 90 degrees between the elbow and wrist. The wrist-lagging pattern may emerge as a result of the central nervous system exploiting the transfer of angular momentum from the elbow to the wrist as the elbow rotates up and down. The influence of interactive torque on elbow-wrist coordination represents an important mechanical constraint on the selection of intralimb coordination strategies during learning. The transfer conditions revealed that this mechanical constraint was effector-independent with regard to ipsilateral limb transfer (LP) and contralateral limb transfer (NS and NP). Second, consistent transfer of the learned relative phase pattern across ipsilateral and contralateral conditions demonstrates an effector-independent representation for this control variable. The effector-independent and effector-specific nature of joint amplitude transfer was dependent to some degree on learning arm, dominant or non-dominant, and the amount of practice, 1 day versus 5 days. Third, learning of the required 90 degrees relative phase pattern may be characterized as a phase transition leading to the formation of a stable attractor in the elbow-wrist coordination landscape. The above findings are discussed with respect to motor programming and coordination dynamic viewpoints on effector-independent and effector-specific aspects of motor equivalence.

Adult↗

Novel muscle patterns for reaching after cervical spinal cord injury: a case for motor redundancy.

A fundamental issue in the neuromotor control of arm movements is whether the nervous system can use distinctly different muscle activity patterns to obtain similar kinematic outcomes. Although computer simulations have demonstrated several possible mechanical and torque solutions, there is little empirical evidence that the nervous system actually employs fundamentally different muscle patterns for the same movement, such as activating a muscle one time and not the next, or switching from a flexor to an extensor. Under typical conditions, subjects choose the same muscles for any given movement, which suggests that in order to see the capacity of the nervous system to make a different choice of muscles, the nervous system must be pushed beyond the normal circumstances. The purpose of this study, then, was to examine an atypical condition, reaching of cervical spinal cord injured (SCI) subjects who have a reduced repertoire of available distal arm muscles but otherwise a normal nervous system above the level of lesion. Electromyography and kinematics of the shoulder and elbow were examined in the SCI subjects performing a center-out task and then compared to neurologically normal control subjects. The findings showed that the SCI-injured subjects produced reaches with typical global kinematic features, such as straight finger paths, bell-shaped velocities, and joint excursions similar to control subjects. The SCI subjects, however, activated only the shoulder agonist muscle for all directions, unlike the control pattern that involved a reciprocal pattern at each joint (shoulder, elbow, and wrist). Nonetheless, the SCI subjects could activate their shoulder antagonist muscles, elbow flexors, and wrist extensor (extensor carpi radialis) for isometric tasks, but did not activate them during the reaching movements. These results demonstrate that for reaching movements, the SCI subjects used a strikingly different pattern of intact muscle activities than control subjects. Hence, the findings imply that the nervous system is capable of choosing either the control pattern or the SCI pattern. We would speculate that control subjects do not select the SCI pattern because the different choice of muscles results in kinematic features (reduced fingertip speed, multiple shoulder accelerations) other than the global features that are somehow less advantageous or efficient.

Adult↗

Predicting patterns of glioma recurrence using diffusion tensor imaging.

Although multimodality therapy for high-grade gliomas is making some improvement in outcome, most patients will still die from their disease within a short time. We need tools that allow treatments to be tailored to an individual. In this study we used diffusion tensor imaging (DTI), a technique sensitive to subtle disruption of white-matter tracts due to tumour infiltration, to see if it can be used to predict patterns of glioma recurrence. In this study we imaged 26 patients with gliomas using DTI. Patients were imaged after 2 years or on symptomatic tumour recurrence. The diffusion tensor was split into its isotropic (p) and anisotropic (q) components, and these were plotted on T(2)-weighted images to show the pattern of DTI abnormality. This was compared to the pattern of recurrence. Three DTI patterns could be identified: (a) a diffuse pattern of abnormality where p exceeded q in all directions and was associated with diffuse increase in tumour size; (b) a localised pattern of abnormality where the tumour recurred in one particular direction; and (c) a pattern of minimal abnormality seen in some patients with or without evidence of recurrence. Diffusion tensor imaging is able to predict patterns of tumour recurrence and may allow better individualisation of tumour management and stratification for randomised controlled trials.

Adult↗

A central pattern generator underlies crawling in the medicinal leech.

Crawling in the medicinal leech has previously been thought to require sensory feedback because the intact behavior is strongly modulated by sensory feedback and because semi-intact preparations will only crawl if they can move freely. Here we show that an isolated leech nerve cord can produce a crawling motor pattern similar to the one seen in semi-intact preparations, which consists of an anterior-to-posterior wave of alternating excitatory circular and longitudinal motor neuron bursts in each segment. The isolated cord also reproduces the patterns of activity seen in semi-intact preparations for several other kinds of cells: the dorsal inhibitor cell 1, the ventral excitor cell 4, and the annulus erector motor neuron. Because this correspondence is so strong, there must be a central pattern generator in the isolated cord that can produce the basic motor pattern for crawling without sensory feedback. A quantitative analysis of the isolated motor pattern, however, reveals that isolated and semi-intact preparations have longer periods than the intact behavior and that there are deficiencies in the timing of motor neuron bursts in the isolated pattern. These results suggest that sensory feedback modulates the isolated central pattern generator to help produce the normal motor pattern.

Algorithms↗

Dipole source localization by the mottled sculpin. II. The role of lateral line excitation patterns.

Extracellular, single unit recording techniques were used to measure the responses of posterior lateral line nerve fibers to a 50-Hz dipole source that slowly changed its location along the length of the fish. The flow-field equations for a dipole source were used to model the pressure gradient pattern and thus, the expected excitation pattern along a linear array of lateral line receptor organs for different source locations. Finally, excitation patterns were similarly modeled along the left and right side of the fish's head for actual steps taken by sculpin in approach pathways to the 50-Hz dipole source. Spatial histograms of posterior lateral line nerve fiber responses to different locations of the dipole source could be predicted from pressure gradient patterns modeled from the flow-field equations, confirming that the modeling approach applied to behavioral results was a good predictor of excitation patterns likely to be encoded by the lateral line periphery. An examination of how modeled excitation patterns changed from one position to the next in typical approach pathways and how patterns differed between positions from which successful and unsuccessful strikes were launched suggests that approach and strike strategies can indeed be explained by the information available in excitation patterns. In particular, changes in the spatial distribution of pressure gradient directions (polarities), available only when the source is lateral (as opposed to directly in front of the fish), appear to enhance the ability of sculpin to determine source distance. Without such information, misses are more likely to occur and successful strikes are more likely to be launched from short distances only.

Acoustic Stimulation↗

Interactive processes during interlimb coordination: combining movement patterns with different frequency ratios.

The present study examined the formation of a movement pattern that was added to an ongoing coordinative regime across different limb combinations. It was hypothesized that the addition of the secondary mode would perturb the ongoing primary mode by adding rhythmic complexity to the task requirements. Furthermore, the formation of the secondary mode was predicted to be affected by the ongoing coordination pattern. In Exp. 1, a primary multifrequency mode (2:1 ratio) was performed while a secondary isofrequency mode (1:1 ratio) was initiated midway into the trials, whereas the reversed dual-pattern conditions were examined in Exp. 2. The results from both experiments showed that the multifrequency mode deteriorated across limb combination under dual-pattern as compared to single-pattern conditions. The isofrequency mode was also affected under combined pattern conditions, but its degradation was a function of the limb combination under consideration. In particular, the non-homologous limbs, which demonstrated less stable behavior than the homologous limbs under single-pattern conditions, were affected most strongly when confronted with the simultaneous production of the multifrequency mode. In addition, anti-phase movements deteriorated more than in-phase movements, supporting indirectly the contention that afferent feedback monitoring complexity differs for the two movement configurations. The findings of this study suggest that manipulation of task requirements can be used to examine pattern durability and formation in view of dynamical perturbations.

Adult↗

Patterns of invasion and histological growth as prognostic indicators in urothelial carcinoma of the upper urinary tract.

The biological significance of squamous and glandular differentiation and different patterns of invasion in upper urinary tract urothelial carcinoma is unclear. We reviewed 268 cases of consecutive upper urinary tract carcinomas with respect to the presence of squamous and/or glandular differentiation and different patterns of invasion (nodular, trabecular, and infiltrative) and correlated data with patient outcome. Squamous or glandular differentiation occurred in 47/268 (18%) tumors and its presence correlated with high tumor stage (P<0.001) and grade (P<0.001). Invasive patterns were nodular in 49/227 (22%), trabecular in 95/227 (42%), and infiltrative in 83/227 (37%) tumors. The nodular pattern prevailed in low stage (P<0.001) and low-grade (P<0.001) tumors, whereas the infiltrative pattern prevailed in high stage (P<0.001) and high-grade (P<0.001) tumors. Multivariate analysis proved that tumor stage (P<0.001) and the infiltrative pattern (P<0.001) are independent predictors of metastasis-free survival, whereas tumor grade and squamous and glandular differentiation lacked independent influence on patient outcome. In conclusion, the infiltrative pattern of invasion significantly correlated with advanced disease and poor patient outcome. In contrast, the presence of squamous and/or glandular invasion did not prove independent influence on patient outcome. The pattern of invasion should be commented upon separately in the pathology report.

Adult↗

Prediction of postoperative gas bloating after laparoscopic antireflux procedures based on 24-h pH acid reflux pattern.

BACKGROUND: Postoperative gas/bloating (G/B) is a common sequelae after laparoscopic fundoplication. Patients with "upright" reflux are thought to have more aerophagic tendencies contributing to their GERD symptoms than patients with significant "supine" patterns of reflux. The risk of postoperative G/B developing was analyzed in relation to patient preoperative patterns of upright, mixed, or supine 24-h pH scores. METHODS: In this study, 339 patients undergoing fundoplication (278 Nissen and 61 Toupet) were evaluated for preoperative G/B symptoms using a 0 to 10 severity visual analogue scale. Reflux patterns were classified as upright, supine, or mixed according to 24-h pH studies. RESULTS: As compared with preoperative values, 46% of the patients with a preoperative G/B score less than 3 and an upright or mixed reflux pattern had a significant increase in their average G/B score at 2 years (upright, from 0.9 to 4.2; mixed, from 1.1 to 4.1). However, the patients with a supine reflux pattern did not have a statistically significant change (from 2.0 to 2.2; p > 0.05). The patients with established aerophagic tendencies preoperatively (G/B score > 3) showed significant improvement in these symptoms at 2 years across all three reflux patterns (average G/B score, from 7.7 preoperatively to 4.8 at 2 years). There was no gender predisposition, nor was there any difference in the incidence of G/B between complete and partial fundoplication. CONCLUSIONS: The pattern of 24-h acid reflux can be predictive of G/B after antireflux surgery. Patients with mild preoperative G/B symptoms (score <3) and upright or mixed patterns of 24-h acid reflux appear to have an increased postoperative risk for chronic G/B as compared with patients who have supine reflux and mild preoperative G/B. Patients with moderate to severe preoperative G/B symptoms (score, 3-10) appear to have a general improvement in G/B symptoms at 2 years after fundoplication.

Adolescent↗

Intraductal low papillary histological pattern of carcinoma component shows intraductal spread in invasive carcinoma of the pancreas.

BACKGROUND/PURPOSE: We attempted to discriminate between carcinoma in situ (CIS) and the intraductal invasion/cancerization of invasive ductal carcinoma (IDC) of the pancreas, by comparing the histological patterns of the intraductal components and those of venous invasion. METHODS: Specimens from 30 patients with IDC were examined histopathologically. Intraductal components and blood vessel invasion in IDC were assessed in specimens stained with hematoxylin & eosin and elastica van Gieson (EVG). RESULTS: Intraductal components of IDC were found in 28 of the 30 cases of IDC, in 261 ducts, and in 2.3 ducts per one section of one case, on average. The intraductal components of IDC were classified into three histological patterns, as follows: low papillary (including flat), tubular (including solid and cribriform), and mixed (low papillary plus tubular). The incidences of the low papillary, tubular, and mixed patterns in the 261 ducts, were 39% (102 ducts), 56% (145 ducts), and 5% (14 ducts), respectively. The histological pattern of venous invasion was tubular in all but 1 of the 26 cases, and this 1 case showed low papillary patterns as well as a tubular pattern. CONCLUSIONS: A tubular pattern of intraductal components in IDC of the pancreas indicates intraductal invasion, while a low papillary pattern indicates CIS or carcinoma in another location to which it has spread.

Adult↗

The differing patterns of subclinical pulmonary involvement in connective tissue diseases as shown by application of factor analysis.

To explore common patterns of interstitial lung disease (ILD) in symptomless patients with connective tissue disease (CTD), we applied factorial analysis to determine the relationship among the factors. A selected cohort of 71 non-smoking patients with a confirmed diagnosis of CTD [24 with primary Sjögren's syndrome (pSS), 21 with systemic sclerosis (SS), 20 with rheumatoid arthritis (RA) and six with polymyositis/ dermatomyositis (PM/DM)] were identified. The diagnostic techniques included pulmonary function tests, bronchoalveolar lavage (BAL), chest radiographs and high-resolution computed tomography (HRCT). Disease extent and severity were assessed by a radiological and HRCT grading system. Three factors, accounting for 67% of the total variance, were extracted. The first factor (disease duration, diffusing lung capacity, neutrophils and CD8+ T cells on BAL, radiographic score and HRCT reticular score), with the highest percentage of variance (36.5%), defines a fibrotic lung pattern. The second factor (17.9% of variance) identifies an inflammatory lung pattern (macrophages, lymphocytes and eosinophils on BAL and HRCT ground-glass score). The third factor (12.6% of variance) represents a ventilatory function pattern (forced vital capacity, total lung capacity and forced respiratory volume in 1 s). The negative correlation between the fibrotic lung pattern and ventilatory function pattern, but not with the inflammatory lung pattern, suggests the presence of a significant derangement of the alveolar structures. In conclusion, application of factor analysis reveals various lung disease patterns in patients with CTD that might have different prognostic implications.

Adult↗

Dietary patterns and risk of colon cancer and adenoma in a cohort of men (United States).

BACKGROUND: Examining the effects of dietary patterns on cancer risk may provide insights beyond the assessment of individual foods or nutrients. DESIGN: In the health professionals follow-up cohort, associations between the 'prudent' and the 'western' dietary pattern and risk of colon cancer and adenomas were examined in 561 colon cancer cases and 1207 distal colon adenoma cases. RESULTS: Higher prudent pattern scores were only weakly and non-significantly associated with decreased risk of colon cancer or distal colon adenoma (highest versus lowest quintile: colon cancer: multivariate adjusted relative risk (RR) = 0.84 (95% confidence interval (CI) = 0.64-1.10); p(trend) = 0.37; distal adenoma: multivariate odds ratio (OR) = 0.88 (95% CI = 0.73-1.08); p(trend) = 0.12). Our findings suggest a moderately increased risk of colon cancer and distal adenoma with higher western pattern scores (colon cancer: RR = 1.27 (95% CI = 0.96-1.69), p(trend) = 0.05; distal adenoma: OR = 1.28 (95% CI = 1.05-1.56), p(trend) = 0.01). Adding body mass index, which is positively related to western pattern and thus may be considered an intermediate endpoint between western pattern and colon cancer, attenuated associations somewhat but not substantially. CONCLUSION: Our data do not provide evidence for an appreciable inverse association between higher prudent pattern scores and risk of colon cancer or distal colon adenomas, but do support a moderate positive association between higher western pattern scores and risk of colon cancer or distal colon adenomas.

Adenoma↗

Portal venous flow pattern as a useful tool for predicting esophageal varix bleeding in cirrhotic patients.

This study aimed to evaluate whether (1) the portal venous flow pattern determined by color Doppler sonography could be related to the clinical severity of liver cirrhosis and (2) whether the flow patterns differ between patients with bleeding and nonbleeding esophageal varices. One hundred twenty-nine cirrhotic patients and 60 noncirrhotic healthy controls were enrolled after endoscopic survey for the presence of esophageal varices. Each patient received color Doppler echography to define the pattern of blood flow direction as hepatopetal or nonhepatopetal (hepatofugal, turbulence, and bidirection) in type. The patients with esophageal varices were further categorized into two groups: with recent bleeding (BEV; n = 99) and without recent bleeding (NBEV; n = 30). More patients in the BEV group (72.7%) had a nonhepatopetal Doppler flow pattern than in the control group (1.7%) and NBEV group (13.3%) (P < 0.001). Among the 129 cirrhotic patients, the nonhepatopetal flow pattern of the portal vein was higher in 96% of Child-Pugh grade C patients than in 41.8% of grade A patients and 57.6% of grade B patients (P < 0.05). Moreover, for those cirrhotic patients with Child-Pugh grades A and B, the nonhepatopetal Doppler flow pattern was more commonly found in the BEV group than in the NBEV group (63.0 vs. 13.8%; odds ratio, 10.64; 95% CI, 0.03-0.299; P < 0.001). Portal venous blood flow pattern is related to severity of cirrhosis. The presence of a nonhepatopetal flow pattern implicates an increased risk of esophageal varices bleeding, especially for those cirrhotic patients with Child-Pugh grades A and B.

Adult↗

Use of eating-pattern messages to evaluate changes in eating behaviors in a worksite cholesterol education program.

OBJECTIVE: To determine whether eating-pattern messages can effectively be used in a worksite cholesterol education program to change eating behaviors. SUBJECTS: 91 randomly selected participants with initial serum cholesterol levels of 5.2 mmol/L attended the program. INTERVENTION: Eating-pattern messages were the focus of a successful 8-week worksite cholesterol education program conducted with city employees of Phoenix, Ariz. Participants completed self-administered questionnaires before and after the intervention that asked them to compare their current eating patterns with those addressed in the program. The majority (n = 84) of the participants attended five or more of eight available sessions, led by registered dietitians, which focused on the skills needed to decrease dietary fat. STATISTICAL ANALYSES PERFORMED: Parametric and nonparametric statistical tests were used to evaluate the direction and magnitude of changes in eating patterns. RESULTS: Participants made statistically significant changes in 11 of 15 eating patterns linked to messages delivered during the intervention. Changes in eating behaviors were related to improvements in blood lipid profiles. Results from a multiple regression analysis indicated that intervention-related changes in total cholesterol were significantly associated with combined eating-pattern message scores, and total cholesterol decreased 0.33 mmol/L for each unit decrease in the combined eating-pattern message score. APPLICATIONS/CONCLUSIONS: These findings indicate that eating-pattern messages can be used successfully to evaluate changes in fat-related eating behaviors.

Arizona↗

Effect of alteration in loading conditions on both normal and abnormal patterns of left ventricular filling in healthy individuals.

Doppler analysis of mitral flow provides a means of analyzing left ventricular (LV) diastolic function. While experimental studies have suggested that changes in left atrial pressure may affect the normal pattern of early diastolic filling, the effect of such changes on abnormal patterns of filling is unknown. Accordingly, the Doppler pattern of LV filling was analyzed in 20 subjects with LV hypertrophy (mean age 59 +/- 13 years, +/- standard deviation), in 25 healthy normal subjects (29 +/- 6 years) and in 11 elderly subjects (68 +/- 5 years). All underwent Doppler examination of LV inflow at rest and immediately after postural changes. In all 3 groups, head-down positioning increased early diastolic flow velocity (E) (p less than 0.001), and raised the E to late diastolic flow velocity (A) ratio (p less than 0.01). However, an abnormal E/A ratio never approached a normal resting value. Likewise, although E and the E/A ratio decreased significantly in normal subjects with head-up positioning, it did not become abnormal. The magnitude of change in E, A and E/A ratio did not differ among the 3 groups in response to postural changes. Thus, alterations of LV loading conditions alter the pattern of LV filling, whether normal or abnormal at baseline. The magnitude of change appears to be independent of the resting flow pattern. Although loading conditions may affect the Doppler pattern of filling, simple changes in venous return do not "normalize" an abnormal pattern, nor do they "abnormalize" a normal pattern.

Adult↗

Neuronal firing patterns in the feline hippocampus during sleep and wakefulness.

The study addressed the problem of information transmission in mammalian brain as reflected in the emergence or disappearance of temporal patterns in extracellularly monitored single action potentials from the dorsal hippocampus of unrestrained cats during slow wave sleep (SWS), rapid eye movement sleep (REM), and motionless quiet wakefulness (QW). The spike trains were analyzed with a nonparametric technique. Chi-square statistics were used to measure deviation of firing patterns from the theoretical model which is based on the assumption that the intervals are random and/or independent from each other. The plots of the chi-square values for a given set of patterns represented the neuronal 'signatures' characteristic of a behavioral state. During SWS most neurons followed the theoretical model, i.e. their 'signatures' were flat and statistically non-significant. However, during REM sleep and QW their firing modes showed specific deviations from the theoretical model: some patterns occurred more often while others less often than expected, thus generating large and statistically significant 'signatures'. During REM sleep some neurons shared similar tendencies in their departures from the theoretical model. However, during QW the same neurons developed their individual 'signatures' which were significantly different from each other. Hence, the QW episodes were characterized by a greater differentiation of neuronal firing patterns. The mean firing rate and the shape of the time interval histogram were not necessarily correlated with the emergence of specific temporal patterns in spike trains. The results suggest that information transmission from one neuron to another depends on the emergence of repetitive and specific temporal patterns. The strong tendency of most neurons to lapse during SWS into a firing mode that closely follows the theoretical model constitutes the basis for a working hypothesis which states that the essence of SWS recovery in cognitive systems is the disappearance of temporal patterns, and that the 'noisy' interactions between neurons plays an important role in the recuperative processes.

Animals↗

Spatial patterns of visual cortical fast EEG during conditioned reflex in a rhesus monkey.

A preliminary assay was made of the existence of time-space coherence patterns of fast EEG activity in the visual cortex of a Rhesus monkey. The primary intent of the present study was to evaluate the similarities and differences in relation to the olfactory bulb, where such coherences have been described and have been demonstrated to be associated with behaviour. Segments 1.5 s in duration were recorded simultaneously without averaging from 16 to 35 subdural electrodes fixed over the left occipital lobe in an array 3.6 cm X 2.8 cm. Each segment was taken during the delivery of a visual conditioned stimulus (CS) and the performance of a conditioned response (CR) by a well-trained Rhesus monkey. The EEGs appeared chaotic with irregular bursts lasting 75-200 ms, resembling those in the olfactory EEG but with lower peak frequencies. Fourier spectra showed broad distributions of power resembling '1/f noise' with multiple peaks in the range of 20-40 Hz. Time intervals were selected where coherent activity seemed to be present at a number of electrodes. A dominant component waveform that was common to all channels was extracted by principal components analysis (PCA) of each segment. The distribution of the power of this component across the electrodes (the factor loadings) was used to describe the spatial pattern of the coherent cortical activity. Statistical analyses suggested that different patterns could be associated to the CS and the CR, as has been found in the olfactory system. These patterns remained stable over a 6 week recording interval. The patterns can be better discriminated, when the factor loadings of each channel are normalized to zero mean and unit variance, to discard a basic pattern of power distribution, which may reflect anatomical and electrode positioning factors that are related to behavioral information processing by the cortex. The wide spatial distribution of the common patterns found suggests that EEG patterns that manifest differing states of the visual cortex may also be accessible with scalp electrodes.

Animals↗