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M Rudin

Publications and source records attributed to M Rudin.

77 records · Page 5Linked to original sources

MR microscopy on rats in vivo at 4.7 T using surface coils.

MR microscopy on intact rats using a single surface coil is reported. The use of the same coil for excitation and detection is experimentally very simple and results in a smaller field-of-view than the conventional setup using homogeneous excitation (whole-body coil or a large surface coil) and a small receiver surface coil. Images at 4.7 T with 60 X 60-microns pixels and an 800-microns slice thickness have been obtained from the eye and ankle joint of a living rat with good anatomical definition. This corresponds to a four- to eightfold reduction in voxel size as compared to high-resolution images obtained with a 30-mm resonator probe. Many of the basic MRI experiments (spin-echo, FLASH, chemical-shift selective MRI) may be carried out in a straightforward way with this one-coil setup. Sequences relying on a homogeneous flip angle distribution require a whole-body excitation coil.

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Determination of rat heart morphology and function in vivo in two models of cardiac hypertrophy by means of magnetic resonance imaging.

Quantitative magnetic resonance imaging (MRI) was applied to assess structural and functional parameters of the rat heart in vivo. Using ECG and respiratory triggering, MR images were obtained at different time points during the cardiac cycle. This allowed accurate determinations of the left ventricular (LV) mass, wall thickness, LV end-systolic and end-diastolic volumes, stroke volume, and ejection fraction. LV mass determined by MRI showed and excellent linear correlation with post mortem gravimetric determination of LV weight. MRI was then used to examine the pathophysiological changes in two models of LV hypertrophy. In one group of animals the aortic arch was banded to an outer diameter of 1.0 mm to elicit a pressure overload on the LV. A second group was subjected to a volume overload due to graded disruption of the aortic valve. Although both models exhibited a similar degree of LV hypertrophy as shown by the LV weight/body weight ratio, important functional and structural differences were revealed by MRI. Aortic stenosis resulted in an increase in wall thickness, whereas stroke volume and ejection fraction did not differ compared to control animals. In contrast, aortic valve insufficiency did not affect LV wall thickness, however, LV chamber volume as well as stroke volume were markedly increased. Ejection fraction was significantly reduced in these animals. In conclusion, MRI allows the reliable in vivo determination of important structural and functional parameters of hearts in small rodents.

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Reduction of neural damage in irreversible cerebral ischemia by calcium antagonists.

Because of the complexity and cost of clinical investigations and the virtual lack of pharmacological leads, drugs for the treatment of strokes have to be tested extensively in animal models closely mimicking the human disorder. With the recent introduction of in vivo NMR imaging (MRI) and spectroscopy (MRS), it is now possible to evaluate the consequences of strokes and to monitor the effects of therapeutic interventions in animals with the same methodology as in humans. The appearance and evolution of brain infarcts in spontaneously hypertensive rats (SHR), after occlusion of the middle cerebral artery (MCA), were detected with MRI. In coronal sections through the rat brain, regions with increased MRI signal started to become discernible after 6 h and turned out to be largely necrotic already after 24 h, as revealed by histology. The location (fronto-parietal cortex, caudate-putamen) and total infarct size, as determined from MR images or histology, were highly reproducible. Posttreatment with the dihydropyridine calcium antagonist isradipine (PN 200-110), at a daily dose of 3 X 0.3 mg/kg sc, reduced the total infarct size by 30-40%, determined by quantitative MRI and confirmed by histology. Biochemical markers of necrosis, such as the increased brain wet wt, the levels of sodium, potassium, dopamine, and noradrenaline, were changed toward normal values. The functional consequences of these morphological effects of isradipine were reflected by the parallel improvement of a neurological score. Follow-up observations made by MRI and histology indicated that the morphological differences between treated and control animals were still present to the same extent after 2 wk and, therefore, seem to be permanent. In order to elucidate the putative mechanisms involved, the influence of calcium antagonists on cerebral blood flow (CBF) and high energy phosphates (HEPs) was investigated. CBF was measured quantitatively with [14C] iodoantipyrine in MCA-occluded SHRs. Although isradipine had no effect on CBF in the contralateral hemisphere, at a dose reducing infarct size, it increased the reduced blood flow in the lesioned hemisphere toward normal values. HEPs (PCr and ATP) as well as inorganic phosphate (Pi) and intracellular pH were measured noninvasively in the rat brain by 31P MRS using a surface coil. Under normal conditions, calcium antagonists had no effect on these parameters.(ABSTRACT TRUNCATED AT 400 WORDS)

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Calcium antagonists reduce the extent of infarction in rat middle cerebral artery occlusion model as determined by quantitative magnetic resonance imaging.

The appearance and evolution of brain infarcts over 3 days following proximal occlusion of the left middle cerebral artery (MCA) in SHR rats were measured non-invasively by magnetic resonance imaging (MRI). Infarcts were clearly visible in coronal, T2 weighted brain sections, 24, 48 and 72 h after MCA occlusion in the left hemisphere, as areas of increased NMR signals. The infarcts were quantified by pixel counting in each section, the sum of 4 sections representing an accurate estimate of the total infarct size. The location and extent of infarction, determined by MRI, were found to be highly reproducible and correlated well with post-mortem histological and biochemical data. A neurological score, made every 24 h, paralleled the evolution of the infarct size, which culminated after 48 h. Pre- or post-treatment of MCA occluded rats with the dihydropyridine calcium antagonist PN 200-110 resulted in a substantial reduction of infarct size, determined by MRI 24, 48 and 72 h after infarction, compared to vehicle treated controls. These findings were corroborated by corresponding improvements of the neurological scores as well as histological and biochemical data. Post-treatment with nimodipine showed qualitatively similar effects. These results support the notion that calcium antagonists, through vascular and/or metabolic mechanisms, are effective in treating acute stroke. Since they were obtained in a chronic, relevant model of stroke with a method directly applicable also to humans, they should encourage further clinical studies with calcium antagonists.

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