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Biomedical subjects

L Kovacevic

Publications and source records attributed to L Kovacevic.

2 recordsLinked to original sources

Bios data analyzer.

The Bios Data Analyzer (BDA) is a set of computer programs (CD-ROM, in Sabelli et al., Bios. A Study of Creation, 2005) for new time series analyses that detects and measures creative phenomena, namely diversification, novelty, complexes, nonrandom complexity. We define a process as creative when its time series displays these properties. They are found in heartbeat interval series, the exemplar of bios .just as turbulence is the exemplar of chaos, in many other empirical series (galactic distributions, meteorological, economic and physiological series), in biotic series generated mathematically by the bipolar feedback, and in stochastic noise, but not in chaotic attractors. Differencing, consecutive recurrence and partial autocorrelation indicate nonrandom causation, thereby distinguishing chaos and bios from random and random walk. Embedding plots distinguish causal creative processes (e.g. bios) that include both simple and complex components of variation from stochastic processes (e.g. Brownian noise) that include only complex components, and from chaotic processes that decay from order to randomness as the number of dimensions is increased. Varying bin and dimensionality show that entropy measures symmetry and variety, and that complexity is associated with asymmetry. Trigonometric transformations measure coexisting opposites in time series and demonstrate bipolar, partial, and uncorrelated opposites in empirical processes and bios, supporting the hypothesis that bios is generated by bipolar feedback, a concept which is at variance with standard concepts of polar and complementary opposites.

Creativity↗

Effect of high NaCl diet on spontaneous hypertension in a genetic rat model with reduced nephron number.

OBJECTIVE: An inherited reduction in nephron number has been implicated in the development of salt-sensitive hypertension and end stage renal disease. The Munich Wistar Frömter (MWF) rat represents a genetic model with a 30-50% reduction of nephrons compared with normal rats. MWF rats develop spontaneous hypertension and increased urinary albumin excretion (UAE). We addressed the question whether the inherited defect in this model leads to salt-sensitive hypertension. METHODS: At the age of 6 weeks, we started male and female MWF/Fub rats and salt-resistant Lewis (Lew) reference rats on either a normal NaCl (0.2%) or a high NaCl (8%) diet (n = 8, each group). Systolic blood pressure (SBP) and UAE were measured at 14 weeks. RESULTS: Under a normal diet, MWF/Fub rats demonstrated significantly elevated SBP compared to Lew rats both in male (165 +/- 2 versus 133 +/- 3 mmHg, P < 0.0001) and female (156 +/- 3 versus 134 +/- 3 mmHg, P < 0.0001) rats. After high NaCl treatment, SBP was significantly higher in both male and female MWF/Fub rats (+55 mmHg and +36 mmHg, P < 0.0001, respectively) compared with MWF/ Fub under a normal diet UAE was also significantly higher in male and female MWF/Fub rats after high NaCl excess (P < 0.0005, respectively). In contrast, both SBP and UAE remained unchanged in response to high NaCl in Lew rats. CONCLUSIONS: Our findings demonstrate that both the hypertension and UAE are sensitive to high NaCl loading in female and male MWF/Fub rats. Thus, an inborn nephron deficit may lead to salt-sensitive hypertension and renal dysfunction.

Albuminuria↗