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Biomedical subjects

H Adolf

Publications and source records attributed to H Adolf.

8 recordsLinked to original sources

Quantitative magnetic resonance imaging of capillary water permeability and regional blood volume with an intravascular MR contrast agent.

A novel method is presented to simultaneously measure the permeability surface area product of water (PS), also known as capillary diffusion capacity, and the regional blood volume (RBV). It is based on magnetic resonance imaging of the longitudinal relaxation times of tissue and blood at different concentrations of an intravascular MR contrast agent. PS and RBV were measured in vivo in different regions of the brain and the skeletal muscle of the rat. The average PS values (n = 5) obtained in cerebral cortex, corpus callosum, hippocampus, thalamus, jaw muscle, and tongue muscle were 3.31 +/- 0.20, 1.81 +/- 0.25, 3.37 +/- 0.36, 3.68 +/- 0.44, 10.6 +/- 1.1, and 14.1 +/- 2.51 ml x min(-1) x g(-1), respectively. The corresponding average RBV values were 1.63 +/- 0.18, 1.22 +/- 0.25, 3.30 +/- 0.37, 3.03 +/- 0.36, 1.66 +/- 0.30, and 1.38 +/- 0.33 ml x 100 g(-1). These results are in good agreement with previously reported literature values obtained by means of autoradiography.

Animals↗

Perfluoro-15-crown-5-ether labelled macrophages in adoptive transfer experimental allergic encephalomyelitis.

In this serial in vivo study, macrophages labelled with perfluoro-15-crown-5-ether (15C5) were monitored in rats after inducing adoptive transfer experimental allergic encephalomyelitis (AT-EAE). AT-EAE is an animal model of multiple sclerosis and is characterized by inflammatory infiltrates in the central nervous system (CNS) and breakdown of the blood-brain-barrier. A particular feature of AT-EAE are macrophage infiltrates. Purpose of this study was to monitor the invasive and evasive phase of the macrophages in AT-EAE by using 3-dimensional 19F magnetic resonance imaging (3D 19F-MRI). In the early stage of the disease, a much stronger 19F-signal intensity was observed in AT-EAE-rats than in healthy control rats in the tissue adjacent to CNS regions severely affected by inflammatory infiltrates, and thereafter the 19F-signal intensity was decreasing over the time. However, no 19F-signal could be observed in the CNS itself neither in AT-EAE-rats nor in control rats. According to these findings it is assumed that we monitored the evasion of the macrophages from the region of inflammation.

Animals↗

Compensation of diffusion effects in T2 measurements.

Measurements of the transverse relaxation time T2 are usually conducted with the Carr Purcell Meiboom Gill (CPMG) pulse sequence, which causes T2-weighted magnetization. Diffusion effects are a common source of error in measurements of this kind, because the incoherent motion of spins in external magnetic field gradients distorts T2 weighting of the transverse magnetization. As a result, inaccurate T2-values are obtained. In this work, we present a method which completely compensates for the effect of diffusion.

Diffusion↗

Calculation of signal intensities in hybrid sequences for fast NMR imaging.

A number of techniques that recently have been used for fast NMR-imaging are based on a hybrid sequence of echo planar imaging (EPI) and FLASH imaging: after each NMR excitation several k-space lines are measured. The complete k-space is covered by performance of several excitations. It has been observed that there is usually an optimal hybrid sequence that maximizes the signal-to-noise ratio. In this work, a method is presented that allows a determination of the optimal sequence as a function of the relaxation times T1 and T2*.

Echo-Planar Imaging↗

In vivo measurement of partial oxygen pressure in large vessels and in the reticuloendothelial system using fast 19F-MRI.

Quantitative in vivo 19F-MRI was performed in a rat model to monitor partial oxygen pressure (pO2) using a perfluorocarbon (PFC) emulsion as contrast agent. On Days 1, 4, and 8 postinjection of the PFC emulsion, transaxial T1 and pO2 maps were acquired of the abdomen of rats that were consecutively ventilated with pure oxygen, air, and a mixture of 10% oxygen and 90% nitrogen. The images had a resolution of 0.75 mm x 0.75 mm x 2 mm and a total acquisition time of 24 min. In these images it was possible to distinguish between different vessels and hepatic and splenic tissue in the selected imaging plane. Serial 19F-MRI measurements on the different days postinjection of the PFC allowed to determine separately the pO2 of arterial and venous blood and the intracellular pO2 in macrophages of the liver and spleen.

Animals↗

Fast T2-mapping with snapshot flash imaging.

It has been shown recently that quantitative T2-maps may be measured by acquisition of a series of at least eight T2-weighted SNAPSHOT FLASH images. These measurements require a relaxation delay of 10-15 s after each T2-weighted image for the complete relaxation of the spin system. This results in long measuring times. The method presented in this paper allows a considerable reduction of the measuring time by combining the T2-sequence with a fast T1-measurement. Quantitative T1- and T2-maps may be acquired simultaneously in less than 30 s. The method was tested in a phantom experiment. In an in vivo application, relaxation times of different tissues in the abdomen of a rat were measured.

Abdomen↗