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Biomedical subjects

L Blanchet

Publications and source records attributed to L Blanchet.

At least 19 recordsLinked to original sources

Multivariate curve resolution of rapid-scan FTIR difference spectra of quinone photoreduction in bacterial photosynthetic membranes.

Photosynthetic reaction centres and membranes are systems of particular interest and are often taken as models to investigate the molecular mechanisms of selected bioenergetic reactions. In this work, a multivariate curve resolution by alternating least squares procedure is detailed for resolution of time-resolved difference FTIR spectra probing the evolution of quinone reduction in photosynthetic membranes from Rhodobacter sphaeroides under photoexcitation. For this purpose, different data sets were acquired in the same time range and spectroscopic domain under slightly different experimental conditions. To enable resolution and provide meaningful results the different data sets were arranged in an augmented matrix. This strategy enabled recovery of three different species despite rank-deficiency conditions. It also results in better definition (identity and evolution) of the contributions. From the resolved spectra, the species have been attributed to: 1. the formation of ubiquinol, more precisely the disappearance of Q/appearance of QH(2); 2. conformational change of the protein in the surrounding biological medium; 3. oxidation of diaminodurene, a redox mediator. Because, moreover, results obtained from augmented data sets strategies enable quantitative and qualitative interpretation of concentration profiles, other effects, for example the consequence of repeated light excitation of the same sample, choice of illumination power, or the number of spectra accumulated could be compared and discussed.

Algorithms↗

[Loneliness among young people: collation of writings].

Contrary to the popular belief that loneliness is typically associated with adults, and especially with older persons, this state can occur early in life. In fact, an increasing number of studies indicate that an important proportion of adolescents experience an intense episode of loneliness. This literature review describes loneliness among younger persons. We discuss the ampleness of the problem, the definition of the phenomenon, the feeling associated with loneliness, precipitating and predisposating factors and, finally, coping strategies to deal with this experience.

Adaptation, Psychological↗

Effect of two models of portal hypertension on splanchnic organ blood flow in the rat.

Splanchnic organ blood flow and cardiac output were measured by the microsphere method in fasted rats with prehepatic portal hypertension due to portal vein stenosis, in rats with intrahepatic portal hypertension due to bile duct ligation, and in unoperated normal rats. Portal venous pressure was higher in both groups of portal hypertensive rats than in normal rats. Cardiac output was significantly higher in portal hypertensive rats than in normal rats. In rats with portal vein stenosis, splanchnic blood flow was higher than in controls. This increase was caused by increased perfusion of all organs drained by the portal vein, and by increased hepatic arterial blood flow. In rats with bile duct ligation, splanchnic blood flow was not significantly higher than in normal rats: haemoperfusion of all organs contributing to the portal circulation decreased, whereas hepatic arterial blood flow increased. As cardiac output rose similarly, the differences observed between the two types of portal hypertension depend mainly on the difference in distribution of flow within the splanchnic bed.

Animals↗

Effect of propranolol on hepatic blood flow in normal and portal hypertensive rats.

1. The effects of propranolol on heart rate, arterial pressure, portal venous pressure and fractional hepatic blood flow were studied in rats with hepatic artery ligature or with portal vein stenosis, and in sham-operated rats. The effect of propranolol on cardiac output was also studied in normal rats. 2. In rats with hepatic artery ligature or with portal vein stenosis, and in sham-operated rats, propranolol decreased heart rate and portal venous pressure significantly and did not alter arterial pressure. Propranolol decreased fractional hepatic blood flow significantly in rats with hepatic artery ligature, but did not change hepatic blood flow in rats with portal vein stenosis or in sham-operated rats. 3. We conclude therefore that: (a) propranolol decreases portal venous pressure in rats; (b) this decrease in portal venous pressure results in a reduction in portal blood flow which is related, in part, to a reduction in cardiac output; (c) propranolol does not alter hepatic blood flow in normal rats or in rats with portal hypertension.

Animals↗

Changes in splanchnic blood flow in portal hypertensive rats.

This study was undertaken to assess splanchnic blood flow in rats with portal hypertension induced by portal vein stenosis. Splanchnic blood flow, estimated by the microsphere method, was significantly higher in portal hypertensive rats than in sham-operated rats: 26.5 +/- 3.9 (mean +/- SD) and 17.5 +/- 3.3 ml/min, respectively (P less than 0.001). Hepatic blood flow, estimated by the clearance method, was significantly lower in portal hypertensive rats than in sham-operated rats: 12.7 +/- 1.1 and 17.3 +/- 2.8 ml/min, respectively (P less than 0.001). It is concluded that splanchnic blood flow is increased in rats with portal hypertension and that hepatic blood flow is different from splanchnic blood flow in these portal hypertensive rats. It is hypothesized that splanchnic blood flow may also be increased in patients with portal hypertension.

Animals↗

Measurement of hepatic blood flow in the rat using fractional clearance of indocyanine green and colloidal radiogold.

Two new methods are described to measure hepatic blood flow in the anaesthetized rat. These methods are based on the fractional clearance and extraction of indocyanine green, which is removed by hepatocytes, and of colloidal radiogold, which is removed by Kupffer cells. Hepatic blood flow was found to be 2.11 +/- 0.35 ml . min-1 . g liver-1 (mean +/- SD) and 2.01 +/- 0.31 ml . min-1 . g liver-1, respectively, with these two substances (P greater than 0.80).

Animals↗