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An image analysis system: an objective and accurate alternative for reading the agar diffusion test.

A computerized image analysis system (IAS) has been used to develop a new method for reading the agar diffusion test automatically. In four experiments a total of 88 porcine plasma and 95 urine samples were screened for oxytetracycline by the agar diffusion test. The inhibition zones were measured by hand and by the IAS directly from the bioassay plate and by the IAS from the photo-negative taken from the plate. Both methods were positively correlated with the hand method for plasma (0.9716, 0.9669) and urine (0.9878, 0.9731) in the range tested for 0.1 to 2.0 micrograms/ml. Moreover, the coefficient of variation and the day-to-day-variation amounted to 1.72% and 1.47% respectively, for the method by hand and 1.10, 1.54% and 0.27, 0.38% respectively, for the IAS methods. It is concluded that the IAS method is an objective and accurate alternative for reading the agar diffusion test.

Agar↗

Reproducibility of data obtained by a newly developed anterior eye segment analysis system, EAS-1000.

The reproducibility of data obtained from the recently developed anterior eye segment analysis system (EAS-1000) was evaluated. 40 normal eyes and 62 cataractous eyes were examined at Kanazawa Medical University Hospital or Yayoi Hospital. The radius of the corneal curvature, the corneal thickness, anterior chamber depth, whole lens thickness, anterior chamber angle and the scattering light intensity were all observed on a slit section of the lens, and the intrapupillary area of the cataractous shadow was measured from a retroillumination image. The measurements were made twice at an interval of 14.2 days. There were no significant differences between the data of the 1st and 2nd examination in either place.

Adolescent↗

Applying linear systems analysis to dynamic behavior.

In this paper we present an abbreviated discussion of the linear systems analysis in the time domain. We then consider the qualitative character of the behavioral dynamics predicted using the linear form of the analysis. The analysis is then extended to a second-order form. We illustrate some relevant new features introduced by the second-order form with a special case example.

Journal Article↗

A microcomputer-based data acquisition and analysis system for CO2 rebreathing studies.

A real-time microcomputer-based data acquisition and analysis system has been developed to automate the measurement of the ventilatory response to CO2 by the rebreathing method. Previous systems acquire the data on-line and then analyze and display the results off-line. The system described here performs all processing on-line and displays experimental results in real-time. The results of 5 min of data acquisition are available for display only 1.5 sec after completion of the experiment. Immediate interpretation of the results of each experiment enable a series of related studies to be performed on the same patient in a short time period. The microcomputer is Digital Equipment Corporation's LSI-11, a low cost 16 bit machine with the basic instruction set of a PDP-11/40. The system has 16 kbytes of memory, a CRT for data display, and a paper tape reader for program loading. Due to the time constraints of real-time processing and the memory constraints of a small system, the software is written entirely in assembler language. The software includes routines for numeric and character input, line and graphical output, linear curve fitting, start of rise detection and floating point computations.

Carbon Dioxide↗

[Systems analysis in medical technology].

Main characteristics of clinical laboratory instruments for biochemical investigations are determined as are the required number of instruments and allocation of the available resources needed at the stage of development. The problem was approached by means of systemic analysis methods based on applying matrix prediction and solving the optimization problem prescribed by the set of inequalities. Calculated values represent actual needs of clinical laboratories, so it became possible to include development of these instruments into the Institute's plan.

Laboratories↗

[The development of an computerized analysis system for the women pelvic cavity impedance rheogram].

This article introduces the components and functions of an computered analysis system for the women pelvic cavity impedance rheogram. It can sample the pelvic cavity impedance rheogram signal of the body double-side and the reference ECG signal. With help of manual intervence, it also can automatically recognize characteristic points of the pelvic cavity impedance rheogram and measure the parameters. It can correct the recognized characteristic points simultaneously and print the pelvic cavity impedance rheogram of the body double-side and 15 characteristic data parameters. After clinical applying, the analysis results of mors 100 patients make clear that: this system has remarkably clinical significance for diagnosis of the women pelvic cavity extravasated blood and evaluation of treating effect, so it has much better clinical applied expectation.

Equipment Design↗

[Systems analysis of activities of the intensive care and resuscitation department at a multidisciplinary hospital. I. Development of structure and function].

Using the suggested information mathematical model of reanimation activity, realized in an administrative computer program, the authors carry out a total system analysis of the activity of the intensive care and reanimation unit of a multi-discipline hospital in the town of Arkhangelsk. They discuss the problems of present-day equipment and modernization, formation of the patient populations, improvement of the resuscitation methods, and the policy of reanimation bed use. They recommend that along with the traditional activities, such department should take part in the prevention of grave states in inpatients of all departments of the hospital.

Hospital Administration↗

TIBIAS--a microcomputer-based analysis system for isoelectric focusing and electrophoretic patterns.

A program is described for a computer-aided analysis system for isoelectric focusing (IEF) patterns. This system is primarily aimed at comparing and statistically analyzing large numbers of one-dimensional electrofocusing patterns in the search for specific tumor markers in pancreatic ductal secretions. It is designed to collect raw densitometric data, allow interactive processing, matching and statistical tests, and prepare high-quality plots of data at various stages.

Computers↗

Reliability and validity of the WATSMART three-dimensional optoelectric motion analysis system.

Reliability and validity of the WATSMART (Waterloo Spatial Motion Analysis Recording Technique) system was evaluated under static and dynamic conditions. In experiment 1, infrared light-emitting diodes (IREDs) were placed at the axis and along the arms of a clinical goniometer. Twelve angles in 5-degree increments were each recorded 10 times at each of three spatial locations. Reliability was assessed using intraclass correlation coefficients (ICCs) and analysis-of-variance procedures to determine within-trial variability. The ICCs for all spatial locations exceeded .99. The 95% confidence interval for each angle was less than 0.5 degree in all cases. Criterion-referenced instrument validity was assessed with regression analysis. Slopes of the regression of reconstructed angle on reference angle were close to unity for each spatial location. A systematic error, however, that increased as the goniometer was rotated 45 degrees away from the cameras was evident. In experiment 2, a robotic arm was fitted with four IREDs and made to repeat a defined movement trajectory 10 times at each of three spatial locations. The ICCs for portions of each trajectory ranged from .20 to .99. The results show that reliable and valid results can be obtained from this motion analysis system if adequate precautions are taken to reduce unwanted light reflections. Reliability and validity decreased somewhat as the object was rotated further away from the plane in which the cameras were mounted.

Humans↗

Finding the way: a model for educational system analysis.

Administrators new to an academic setting experience a steep learning curve in finding their way around the organization. Leadership strategies that have proven effective in a previous setting or in another role may not be appropriate to or effective in the new setting. Disruptive effects of such leadership transitions can be minimized if newly employed administrators take a systematic approach to learning about the organization. The educational systems analysis model (ESAM) described here provides direction for new academic administrators in rapid analysis of a nursing education program. ESAM is comprised of both external and internal elements that influence system operation and the role of the administrator within the system. External elements include environmental factors that influence the program as well as the community of interest. Internal elements include the mission and goals, culture, relationships, structure, programs and services, resources, and outcomes of the program. Each of the internal elements is considered from both content and process perspectives. Relationships among the elements in the model are dynamic and reciprocal.

Administrative Personnel↗

The Roter Interaction Analysis System (RIAS) in oncological consultations: psychometric properties.

One of the most frequently used systems to analyse doctor-patient communication is the Roter Interaction Analysis System (RIAS). However, it has mostly been applied and evaluated in primary care settings. Two studies are presented in which the psychometric properties of the RIAS are investigated in an oncological setting. In the first study (N = 25) the feasibility, inter-rater reliability and content validity of the RIAS was investigated. In the second study, we evaluated the discriminant validity of the RIAS. Results of the first study showed that coding of tapes was more time consuming than indicated by the Roter manual. The inter-rater reliability proved to be high for both physician communication (0.68-1) and patient communication (0.60-1). The content validity proved to be acceptable: all utterances could be classified. However, coding dilemmas regarding affective communication occurred. The RIAS provided no option to classify communication of a third person present. Some communication categories were never or rarely used. Results of the second study indicate that the RIAS was able to discriminate between communicative behaviors in oncological consultations (N = 60) and three different GP-samples (random-GP sample N = 329, hypertension sample N = 103, gynaecology sample N = 65). To conclude, the psychometric properties of the RIAS are satisfactory in an oncological setting.

Adult↗

Quality control of proliferation marker (MIB-1) in image analysis systems utilizing cell culture-based control materials.

Standard controls for quality control of cell growth (proliferation) assays in image analysis systems are not currently available. The authors have developed a system of controls, based on cultured and harvested human cell lines, that can mimic tissue sections. These controls help ensure quality control for the entire cell proliferation analysis process, from the initial cutting of the paraffin block through fixation, immunohistochemical staining, and interactive image analysis. The use of cell line controls is advantageous because of the greater cell population homogeneity and the volume of uniform slides that are obtainable, as opposed to the use of a heterogeneous tissue sample. This system provides an excellent means of evaluating the day-to-day performance of cell proliferation analysis and may also be adapted for use as a method of multi-institutional proficiency testing.

Biomarkers, Tumor↗

StatPal II pH and Blood Gas Analysis System evaluated.

We evaluated a new portable instrument, the PPG StatPal II pH and Blood Gas Analysis System, designed for "point-of-care" measurements of blood gases and pH. Inaccuracy (% of target value) and imprecision (CV%) were assessed by blood tonometry and comparison with a Corning 178. Within-day results for PCO2 inaccuracy and imprecision ranged from 98.2% to 102.9% and 3.3% to 3.9%, respectively; for PO2, these were 95.5% to 102.3% and 2.3% to 3.0%, respectively. Between-day results for PCO2 inaccuracy and imprecision ranged from 99.2% to 99.3% and from 2.9% to 3.2%, respectively; for PO2, the ranges were 96.2% to 98.2% and 2.6% to 3.0%, respectively. Two PCO2 outliers (in 645 samples = 0.3%) were observed. In general, tonometry recovery, measurement stability, and pH bias results for the StatPal II and Corning 178 were comparable. We conclude that the StatPal II performs within acceptable ranges of inaccuracy and imprecision.

Blood↗

Validation of the EINTHOVEN model-based computerized electrocardiogram rhythm analysis system with three classes of clinical arrhythmias.

Rhythm analysis by commercial systems does not meet clinical needs well, because (1) differential diagnosis of complex rhythms is not performed, (2) common rhythms are often misdiagnosed, and (3) transitions between rhythms are not described. We have developed a model-based diagnostic software system named EINTHOVEN that is designed to address the above limitations. A demonstration is available on the World Wide Web at http:@einthoven.uokhsc.edu. The system has been validated using simple rhythms from introductory electrocardiogram (ECG) textbooks. We present here the results of evaluation with more complex rhythm strips taken from clinical records and intermediate-level ECG textbooks. Rhythm strips were described by the onset and offset of each electrical event (P wave, QRS complex, and T wave) and by a morphology classification for each event. The rhythms included a variety of supraventricular and ventricular rhythms. The analysis was considered correct if it named all correct diagnoses in a rhythm strip, incorrect if it completed the analysis and failed to name the correct diagnoses, and indeterminate if it failed to complete the analysis. The system was designed not to complete an analysis if it could not explain an entire rhythm by at least 1 pathophysiological model. The test rhythms were not used to develop the system. Forty-six of 56 test rhythms were diagnosed correctly, and 8 were not analyzed completely. The 2 incorrect diagnoses were atrial tachycardia with variable conduction (diagnosed as intermittent complete heart block) and atrial fibrillation (diagnosed as irregular junctional tachycardia). All 56 rhythms were diagnosed correctly after minor technical improvements to the system. The processing time of the system was 7.6-fold (range 1.5-to 16.9-fold) faster than the elapsed time of the individual records. These preliminary results suggest (1) that computer-based interpretation of complex rhythms is possible, (2) that further software development is necessary to reach a clinical level of accuracy, and (3) that there are no theoretical obstacles to achieving this goal.

Arrhythmias, Cardiac↗

Sensitivity testing of veterinary pathogens with a semi-automatic image analysis system compared with tablet diffusion and agar dilution tests.

Recently a commercial computer-controlled image analysis system (IAS) was introduced to measure automatically the diameters of inhibition zones in the agar diffusion test. However, there is little information on the precision of this method. In the present study clinical isolates of Salmonella spp. (N = 104), Escherichia coli (N = 100), Pasteurella spp. (N = 99), Actinobacillus pleuropneumoniae (N = 85), porcine streptococci (N = 100), and Staphylococcus aureus (N = 95) were tested in the agar diffusion test, using nineteen different antibiotics in tablets. All inhibition zone diameters were first measured by a laboratory technician and then by the IAS. Although the zone diameters of all bacteria-antibiotic combinations measured by the IAS and those measured by the laboratory technician showed a significant positive correlation, the size of the inhibition zone diameters measured by the technician and the IAS differed significantly in 59% of the combinations. However, these differences were very small and may have no clinical relevance. The IAS was also used to calculate minimum inhibitory concentrations (MIC values) from the zone diameters. In 82% of the bacteria-antibiotic combinations MIC values calculated by the IAS showed a significant positive correlation with MIC values obtained with the reference agar dilution test. However, in 92% of the bacteria-antibiotic combinations, the calculated MIC values differed significantly from the reference values. In some cases these differences were so large that they could be of clinical relevance. The IAS was unable to measure the diameter of inhibition zones of porcine streptococci properly, due to poor contrast. We concluded that when tablets are used as antibiotic carriers the IAS accurately measures the diameter of inhibition zones for bacteria species that give good contrast between the agar and bacterial growth. MIC values determined with the IAS were only indicative of those determined with the reference agar dilution test.

Agar↗

An automated fluorescent excitation analysis system for medical applications.

The use of stable tracers assayed by x-ray fluorescent excitation analysis has proven advantageous over other stable or radioisotopic techniques in a number of clinical and investigative situations. An automated fluorescent excitation analysis system for medical application has developed. Its design parameters and performance are described.

Blood Volume Determination↗

A computer-aided image analysis system for area measurement of tooth root surfaces.

The characteristics of a computer-aided Image Analysis System (IAS) to conduct linear and area measurements on tooth root surfaces were investigated. The borders of the features to be measured were extracted from a digitized video image by histogram-based thresholding and binarization. The lengths and square areas were expressed in the number of pixels. The reference-length and area of one pixel were obtained through measurement of the diameter of a metal ball of known diameter in the same digital image. The validity of the IAS was tested using radiographs of teeth containing round metal restorations of known diameter and area. The accuracy of the length measurements ranged from -2.0 to 2.1%, whereas the accuracy of area measurement was between -5.3 and 0.8%. The precision of the IAS to identify the borders of a tooth root surface and to reproducibly calculate its area, expressed in a coefficient of variation, ranges from 0.49 to 4.11%. The results indicate that imaging techniques can be applied to obtain very accurate measurements of tooth root surfaces.

Dental Enamel↗