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Biomedical subjects

K Schenker

Publications and source records attributed to K Schenker.

9 recordsLinked to original sources

5-Methyl-6-phenyl-1,3,5,6-tetrahydro-3,6-methano-1,5-benzodiazocine-2,4-dione (BA 41899): representative of a novel class of purely calcium-sensitizing agents.

BA 41899 (5-methyl-6-phenyl-1,3,5,6-tetrahydro-3,6-methano-1,5- benzodiazocine-2,4-dione, 6) is a structurally novel 1,5-benzodiazocine derivative and represents the prototype of a hitherto unknown class of positive inotropic Ca(2+)-sensitizing agents. It is completely devoid of phosphodiesterase (PDE) III inhibitory activity or any other known inotropic mechanism. BA 41899 (6) exhibits a pharmacological in vitro profile comprising Ca(2+)-sensitizing, positive inotropic, and negative chronotropic effects. CGP 48506 ((+)-6), the (+)-enantiomer of BA 41899 (6), enantiospecifically carries Ca2+ sensitization by up to a full pCa unit and a corresponding positive inotropic effect. Conversely, the negative chronotropic action resides in the corresponding (-)-enantiomer, CGP 48508 ((-)-6). All the effects are exerted in the low micromolar range. The positive inotropic action of CGP 48506 ((+)-6) is associated with a decelerating effect on contraction and, more prominently, relaxation dynamics in isolated guinea pig atria. In contrast to Ca(2+)-sensitizing PDE inhibitors, CGP 48506 ((+)-6) does not increase maximum Ca(2+)-activated force in myocardial skinned fibers.

Animals

Water transport in concrete.

Chloride contamination is a major source of concrete deterioration. Previous studies of chloride transport use weight-vs.-time analysis on immersed samples to deduct related concrete water exchange properties, based on the assumptions of strictly capillary flow and a well defined transport front. The calculations yield substantially higher penetration depths than are found empirically. MRI was used to tomographically follow the water uptake and check the validity of these model assumptions. To eliminate background signal from enclosed water, we worked with deuterated water in combination with deuterium MRI. This approach provides evidence for a reduced water exchange depth and for its dependence on prestorage conditions, and suggests refinements to the previously used concrete model.

Construction Materials

Myelination of the optic radiation in Leber congenital amaurosis.

We have studied the myelination of the visual pathway by magnetic resonance imaging in seven children (aged 5 months to 16 years) with Leber congenital amaurosis. The corpus geniculatum laterale and the retrogeniculate optic radiation had a normal appearance on MRI in all patients. Therefore we conclude that normal myelination of the optic radiation, as it can be grossly assessed by MRI, can take place even with absent or greatly reduced visual sensory input.

Adolescent

Metabolic transient studies by NMR.

The time course of phosphocreatine (PC) hydrolysis in humans was measured by 31P-NMR spectroscopy (31P-NMRS) with a time resolution of 10.8 s in the gastrocnemius muscle and a relationship between muscle O2 consumption (VO2) and [PC] was derived from a bioenergetic model. This allowed a direct estimate of the half-time of the intracellular VO2 kinetics (t1/2 VO2) of the contracting human gastrocnemius in aerobic conditions. t1/2 VO2 was found to be approximately 16 s and independent of the work load. This value corresponds to the shortest t1/2 VO2 determined at the mouth of the subject in the absence of lactate accumulation in the rest to work transient. t1/2 VO2 may now be assessed in man at low muscle temperatures. To this aim a procedure was developed allowing corrections of the 31P-NMR spectra based on the muscle temperature profiles obtained by a simultaneously acquired proton image.

Adenosine Triphosphate

Phosphocreatine hydrolysis by 31P-NMR at the onset of constant-load exercise in humans.

The kinetics of phosphocreatine (PC) breakdown in human plantar flexors at the onset of constant-load aerobic exercise was determined by high-resolution 31P-nuclear magnetic resonance spectroscopy (NMRS). The half time of the process (t1/2PC) was obtained by fitting curves (n = 13) from five subjects at various aerobic work loads for which muscle pH was not different from that at rest. Steady-state PC concentration ([PC]) was not < 70% of the resting value and was linearly related to the work load (w) ([PC] = -3.01 +/- 0.08 w + 1 (r = 0.48, 2P < 0.1)). The average t1/2PC was 16.2 s and was independent of work load. Because the half time of the muscle PC kinetics reflects the half time of the O2 uptake (MO2) kinetics (t1/2MO2), the latter is equal to that found earlier in the isolated perfused dog gastrocnemius. Whereas in the dog the above t1/2MO2 compares well with the homologous half time of the O2 uptake at the alveolar level, in humans such equivalence is found only at extremely low work loads, when the transient contribution by anaerobic glycolysis is negligible.

Adult

[Shock].

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Shock

[The drug problem].

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Adult