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Biomedical subjects

D Zecević

Publications and source records attributed to D Zecević.

At least 19 recordsLinked to original sources

Optical signals from neurons with internally applied voltage-sensitive dyes.

We carried out experiments to monitor optically the generation and spread of action potentials and subthreshold potentials in the processes of individual neurons in ganglia of the snail, Helix aspersa. The neurons were selectively stained by intracellular pressure injection of voltage-sensitive dyes. Optical signals were detected by a system for fast, multiple-site optical monitoring, utilizing a silicon photodiode array. After testing 30 voltage-sensitive dyes using absorption, we concluded that this mode was probably not sensitive enough to allow monitoring neuronal signals from distal processes. Satisfactory signals were obtained in fluorescence measurements using a newly synthesized styryl dye, JPW1114, specifically designed for intracellular application. There was an improvement in sensitivity (as defined by the signal-to-noise ratio) by a factor of about 50 over previously reported absorption and fluorescence signals from neuronal processes stained by either intra- or extracellular application of dyes. Recordings with good signal-to-noise ratio and adequate spatial and temporal resolution were obtained simultaneously from the cell body and long axonal branches. From this data, the site of action potential initiation was determined. Also, the propagation velocity of the action potential was calculated for different axonal segments; the results suggest that different regions have different velocities ranging from 0.53 m/sec to 0.07 m/sec. The present sensitivity was adequate to allow the recording of a 10 mV hyperpolarizing electrotonic response along axonal branches and to observe directly the decline of this passive response with distance from the site of stimulation. Relatively modest improvements in sensitivity will allow systematic analyses of the spread and summation of synaptic potentials in individual neurons.

Action Potentials

[Ischemic heart disease in young women. Its importance and possibilities of prevention].

Ischemic heart disease in young women is a rare disease, but nowadays it is more frequently detected. The investigation involved 83 women up to the age of 19 with ischemic heart disease. The most frequent risk factors were as follows: hypertension, hyperlipoproteinaemia, smoking, stress and obesity. The association of three factors was most often observed. Electrocardiogram at rest pointed to the changes as follows: anteroseptal region, the whole anterior wall, postero-inferior region and subendocardial localization. Out of 11 exercise tests 36 (81.81%) of them were positive. Coronary arteriography was performed in 72 (86.71%), with positive changes in 61 (81.72%) patients. Occlusive changes were most frequently found on anterior descendent artery. Since a great number of risk factors in women may be easily corrected by an adequate diet and healthier way of life, their detection and implementation of measures of primary and secondary prevention have been attached a great importance.

Adolescent

Myocardial perfusion imaging using 99mTc-MIBI in patients with dilated cardiomyopathy--methodology and its clinical use.

The aim of the study was to demonstrate the methodology of investigation of myocardial perfusion and viability using 99mTc-MIBI in patients with dilated cardiomyopathy and to estimate its clinical use. Myocardial perfusion and viability were investigated by using the planar and SPECT scintigraphy and by estimating the wall motion of the myocardium. The foci of decreased myocardial viability were found in 7 patients. One patient had perfusion defect only at stress. Analyzing the patients data, by using the gated studies, we found various degrees of wall motion myocardial abnormalities.

Cardiomyopathy, Dilated

Hundreds of neurons in the Aplysia abdominal ganglion are active during the gill-withdrawal reflex.

A combination of optical and electrode recording methods was used to obtain an overview of the neuron activity in the Aplysia abdominal ganglion in response to a light touch to the siphon skin. Spike activity was detected in up to 150 different neurons. Habituation and sensitization of the gill-withdrawal reflex was accompanied by large changes in the number of activated neurons. It is likely that these recordings are incomplete; the actual number of activated neurons is estimated to be about 300 in the acutely sensitized preparation. While we presume that not all 300 of these neurons are involved in the gill-withdrawal reflex, the number of neurons is so large that it may be difficult to determine the role of each activated neuron with presently available experimental tools.

Abdomen

Simultaneous optical recording of activity from many neurons during feeding in Navanax.

Optical methods for monitoring changes in membrane potential have been used to measure action potential activity in the buccal ganglion of an opisthobranch mollusc, Navanax inermis, while the animal was feeding. During feeding activity was detected in 10-15% of the approximately 200 neurons present in the ganglion. Control experiments carried out to determine the completeness of the optical recording showed that activity in at least 70% of the neurons could be detected. Thus, in certain invertebrate ganglia, it is possible to make a reasonably complete recording of the neuron activity responsible for generating relatively complex behaviors.

Animals

Suicidal strangulation with a double-knotted noose.

The paper describes an unquestionable case of suicide by strangulation. The case is of special interest because in addition to two single knots there were two double knots in the noose. As a rule strangulation with a double-knotted noose is seen only in cases of murder. The data attained at autopsy and the findings of the detailed police investigation are discussed.

Adult

Temperature acclimation: effects on membrane physiology of an identified snail neuron.

The neuronal basis for thermal acclimation was examined by comparing the short- and long-term effects of temperature change on the physiological properties of an identified neuron in the isolated ganglion of Hexis aspersa. Using intracellular electrophysiological techniques, we found that the frequency of spontaneous action potentials and excitability of neurons from warm-acclimated animals was depressed by abruptly cooling from 20 to 5 degrees C. After a 2-wk period of acclimation to 5 degrees C, the levels of spontaneous activity and excitability were comparable to those of warm-acclimated neurons at 20 degrees C. Conversely, abrupt warming of neurons from cold-acclimated animals greatly increased the frequency of spontaneous activity, but after acclimation to 20 degrees C the frequency decreased. Although the duration of the action potential and the cell's electrogenic Na-K pump were temperature sensitive, thermal acclimation had no obvious effects on these parameters. Membrane permeability to Na and PNa/PK decreased with cooling, whereas PRb/PK and PCs/PK increased. Warming had the opposite effect on the relative alkali cation permeability (PX/PK). With acclimation PX/PK underwent compensatory changes.

Action Potentials