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K Seelos

Publications and source records attributed to K Seelos.

25 records · Page 2Linked to original sources

[Rheumatoid arthritis of the wrist. Dynamic Gd-DTPA enhanced MRT].

21 patients with rheumatoid arthritis of the wrist diagnosed according to the criteria of the American Rheumatism Association were examined by dynamic MRT before and after the i.v. injection of Gd-DTPA (0.1 mmol/kg). The results were correlated with the clinical and radiological findings. The increased signal intensity of the pannus was 1.17 +/- 0.45%/sec and this differed significantly (p < 0.001) from bone marrow (0.16 +/- 0.11%/sec) and from muscle (0.25 +/- 0.16%/sec). Blood sedimentation rate correlated with the gradient of synovial proliferation (p < 0.05). There were no further statistically significant correlations between the clinical, radiological and MRT findings and the change in signal intensity from synovial proliferation as shown by dynamic MRT.

Adult↗

[Turbo(fast) spin echo at 0.5 T: effect of echo distance and echo number on image contrast].

Signal intensities, signal-to-noise ratios (S/N), and contrast-to-noise ratios (C/N) in dependence on the echo distance and echo number of the new turbo (fast) spin-echo technique are analysed by phantom, volunteer and patient measurements. With increasing echo number (3 to 15 echoes), signal intensities increase (25 to 50%), S/N varies between different tissues, and C/N of fat to water decreases (70%). A high echo number, although it shortens the imaging time, is thus not always the best choice since the fat/water contrast is lost. However, a high fat/water contrast is advantageous for several MR applications.

Arthritis, Rheumatoid↗

[Magnetic resonance tomography with fast spin-echo sequences--the results in the ENT area].

UNLABELLED: The use of T2-weighted spin-echo sequences is mandatory for identifying tumours in the ENT region and for differential diagnosis of pathological findings. A highly promising alternative to time-consuming conventional SE sequences is now available in the fast-spin-echo sequences (FSE). FSE was compared with the conventional SE (CSE) basing on 100 assessments of examinations of 20 patients. RESULTS: Conventional SE = TR/TE = 1800/90 ms with one average (NEX), FSE = TR/TE = 3200/120 ms with 4 averages (NEX). Measurement time CSE 6:59 min, FSE 3:12 min. Analysis was performed in analogy to on ROC analysis by 5 radiologists as a blind study. The anatomic differentiation and contrast performance were compared as well as the differentiation and definition of lesion and lymphatic node and a subjective overall assessment. Differentiation of pathological findings was the same with both sequences. FSE was superior to CSE in the visualisation of normal tissue, lymph nodes and also in the subjective overall assessment. The following criteria were employed in the subjective overall valuation: sum total of impressions gathered from contrast behaviour or performance, susceptibility to artifacts, and signal-to-noise ratio. Due to the definitely improved parameters of image quality and the markedly reduced scanning time--which is reduced to 50%--FSE will replace the conventional spin-echo sequence in routine diagnostics.

Artifacts↗

[Magnetic resonance tomography using the fast STIR technique: optimization and a comparison with other sequences in a 0.5-Tesla system].

One disadvantage of the STIR sequence in MRI is its long acquisition time. A TR shortening for acceleration requires shortening of the inversion time depending upon the field strength. We optimized this "fast-STIR" technique at 0.5 T using calculations, phantom, volunteer, and patient measurements. This optimization procedure is transferable to other field strengths. The resulting sequence takes 4.5 minutes, fat is visualised signal-free. In the second part of our study we compared quantitatively and qualitatively the signal intensities, contrast, and sensitivity towards artifacts of this sequence with that of conventional SE and GRE sequences in 21 patients with neoplastic, inflammatory and traumatic disorders of the musculoskeletal system. The fast-STIR sequence showed similar or better lesion contrast as SE in 100% and as GRE in 88%. Decreased spatial resolution and higher sensitivity towards pulsatile artifacts of the fast-STIR sequence were only minor drawbacks.

Achilles Tendon↗

Effect of cilazapril on regional left ventricular wall thickness and chamber dimension following acute myocardial infarction: in vivo assessment using MRI.

The primary goal of the current study was to assess in situ, using magnetic resonance imaging, the effect of a new angiotensin-converting enzyme inhibitor, cilazapril, in reducing left ventricular remodeling after acute myocardial infarction. Three groups of animals were investigated: (1) sham-operated rats (n = 19); (2) infarcted rats receiving no treatment (n = 23); and (3) infarcted rats receiving cilazapril (100 mg/L drinking water, n = 20). Treatment with cilazapril began on the third day postocclusion and continued for 3 to 4 months. Myocardial infarction was produced by ligation of the left coronary artery, and electrocardiographic (ECG)-gated short-axis images were acquired 3 to 4 months later. Sham-operated animals were subjected to the same procedure but the left coronary artery was not ligated. From the image acquired in the middle of the left ventricle (equatorial slice), left ventricular wall thicknesses, chamber diameters, and surface area measurements of the cavities were determined. At autopsy examination, infarct size and tissue water content were determined. The results demonstrate that magnetic resonance imaging has the potential to assess in situ the alterations of left ventricular dimensions and mass after acute myocardial infarction and can be used to document the influence of therapeutic interventions. Cilazapril provided protection against the deleterious remodeling changes such as ventricular dilation and wall thinning consequent to acute myocardial infarction.

Angiotensin-Converting Enzyme Inhibitors↗

[Value of magnetic resonance tomography in the diagnosis of diseases of the thoracic aorta].

MRI with imaging in the frontal and axial planes can replace, in most cases, CT as well as angiography. By limiting oneself to these planes, the examination can be carried out on patients with acute symptoms. If the findings on MRI are indefinite due to movement or flow artifacts, angiography can be carried out immediately. This may not be possible after CT, due to limitation of contrast volumes. With the exception of patients being ventilated after multiple trauma, MRI should nowadays be the primary form of examination, particularly in high risk patients.

Aortic Dissection↗

[Gd-DTPA contrast enhancement in the nuclear magnetic resonance tomographic diagnosis of thoracic space-occupying lesions].

The optimal technique for examining mediastinal masses is the use of T1 weighted spin-echo sequences (TR 500 msec/TE 17 msec) in transverse and coronal slice orientation pre and post contrast application. This setup provides an excellent morphological depiction of anatomy and pathology as well as T2 comparable information about tumor structure without the disadvantage of a reduction of the signal-to-noise ratio.

Adenocarcinoma↗