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T Kenner

Publications and source records attributed to T Kenner.

135 records · Page 8Linked to original sources

The measurement of blood density and its meaning.

Density is defined as mass per unit volume. The classical technique to measure the density of fluids consists of a determination of mass and volume. Blood density is proportional to hematocrit or, more exactly, to the total protein concentration of blood; only to a minor extent is blood density influenced by other plasma solutes. Since the introduction of the mechanical oscillator technique for the continuous recording of fluid density a sizeable amount of experience has accumulated. This review summarizes recent work performed with this technique. It appears that the scientific interest in a variable like blood density depends on the availability of a suitable and simple method. Until the oscillator technique was available the measurement of density was too complicated or too inaccurate for routine laboratory use. A further new technique permits us to determine fluid densities by measuring sound velocity transmission. The density dilution method can be used for the determination of distribution volumes, of flow through organs, and of the cardiac output. The influence of temperature and of certain artifacts like acceleration forces in the density measuring device have to be considered any may be used for additional diagnostic purposes like determination of erythrocyte sedimentation velocity. The new technique opens a reasonable simple way to study fluid shift between interstitial space and capillaries. The arterio-venous density gradient in an organ depends on the lymph production. The injection of a hypertonic solution leads to an osmotic fluid shift from the extravascular space towards the blood. This fluid shift can be recognized by a reduction of the blood density. A simple model for the description of this reaction is presented.

Arteries↗

Calculation of pulsatile flow and particle paths in an aneurysm-model.

The velocity field and the wall shear stress have been calculated numerically by the finite element method to the time-dependent Navier-Stokes equations for pulsatile flow in a model of an aneurysm. The results show a complex flow field with two eddies growing and disappearing during the cardiac cycle. Downstream at the outlet vessel high wall shear stress occurs, which may lead to a downstream-growing of the aneurysm. With the knowledge of a sufficiently accurate flow field, the calculation of several particle paths has been carried out. Starting points and starting time are varied. The paths demonstrate the time-dependent development, shift and disappearance of vortices during the pulsatile cycle and provide hints on zones of stasis. These are significant factors in thrombogenesis.

Aneurysm↗

[The Graz SIDS Risk Questionnaire: I. Development and validation].

Based on the results from semistructured interviews with parents of fifty SIDS victims and of fifty matched controls we developed a SIDS risk questionnaire, the so-called SRFB Graz. In a retrospective study this questionnaire was applied to 65 SIDS victims and 195 comparable controls. By statistical analysis a cut point was computed, which discriminates SIDS cases from controls with a sensitivity of 86% and a specificity of 95%.

Austria↗

[Early diagnosis of central respiratory disorders in infants to avoid postoperative complications].

Infants with a higher incidence of frequent and prolonged apneas during sleep (sleep apnea syndrome) as a consequence of a delayed maturation of respiratory control, have an increased risk for respiratory problems after anesthesia. In 12 babies (one to five months old) showing visible apneas with cyanosis up to 12 hours after herniotomies, the respiratory pattern was examined by impedance pneumography during spontaneous sleep. The mean apnea duration (M.A. value) amounted to 8,6 +/- 5,96 sec/min, whereas the M.A. value of a comparable control group was significantly lower (2,97 +/- 2,13 sec/min) Aminophylline prophylaxis of risk infants diminished significantly the frequency of postoperative respiratory complications.

Aminophylline↗

Variations of pial arteriolar diameter, arterial blood pressure and arterial blood density in the cat.

Feline pial arteriolar diameters (CVD, cerebral vessel diameter), mean arterial blood pressure and blood density were recorded continuously in order to examine the relation between rhythmic diameter variations and oscillations of blood pressure and density. Under constant arterial pressure, blood density and CVD oscillations of 2-6/min were recorded using a photometric technique. Furthermore, pressure and density variations were induced by bleeding and reinfusion of blood, to observe their influence on CVD. The latter over a period of time become synchronized to parallel variations of pressure and density during hemorrhagic hypotension. This observance was noted after an initial lag phase.

Animals↗