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J Smolorz

Publications and source records attributed to J Smolorz.

7 recordsLinked to original sources

Bone marrow investigation with technetium-99m microcolloid and magnetic resonance imaging in patients with malignant myelolympho-proliferative diseases.

In 63 patients with primary extramedullary malignant lymphoma or plasmacytoma, a study was performed in order to evaluate bone marrow involvement. All patients underwent a 99mTc microcolloid bone marrow whole body imaging (scintigraphy), using a gamma camera interfaced with a computer, followed by nuclear magnetic resonance bone marrow imaging (MRI), (1.5 Tesla). MR images were made of the lumbosacral region, the pelvic region, both femoral and other parts of the skeleton, according to focal lesions in the scintigraphy. A posterior iliac crest bone marrow biopsy was used as a standard reference. In the present study, both scintigraphy and MRI showed a dissiminated or focal involvement or a combination of both. In 53 of the 63 patients (84%) the results were in accordance. Pathological MR signals or pathological findings in scintigraphy did not always correspond to tumorous bone marrow involvement, and were shown to reflect reactive changes in the central part of the skeleton in combination with a periphery radionuclide extention interpreted as a periphery compensatory hematopoietic proliferation. The negative predictive value of scintigraphy and MRI was 92% and 100%, respectively. When combining the results of both examinations, the positive predictive value increased from 49% to 58%, if the bone marrow biopsy is accepted as gold standard. The results indicate that bone marrow investigation performed simultaneously using scintigraphy and MRI is superior both to the use of either of the methods alone and to the traditional iliac crest bone marrow biopsy.

Adolescent↗

[Magnetic resonance tomography in pediatric cardiology].

Magnetic resonance imaging (MR) is a relatively new non-invasive imaging method that has not been used as a routine procedure in pediatric cardiology. To evaluate MR in pediatric cardiology we performed 110 examinations in 91 children during the period from December, 1984, to November, 1987. The children were divided into the following groups: 1) Diseases of the great vessels (54 examinations in 39 children); 2) Cardiac diseases (42 examinations in 39 children); 3) Diseases of the pericardium (four examinations in three children); 4) Ten children without cardiovascular diseases (imaging of the heart in conjunction with examination of other organs). The ages of the children ranged from five weeks to 19 years in the following distribution: 13% infants, 20% children 2-5 years, 30% children 6-14 years, 37% adolescents from 15 to 19 years. On the basis of our experiences we conclude that MR can be used as an additional diagnostic tool in pediatric cardiology, especially for imaging of areas that are not well visualized by echocardiography, i.e., the great vessels and their branches and in addition, the right ventricle, in older children.

Adolescent↗

Nuclear magnetic resonance imaging of the heart.

NMR imaging is a noninvasive technique that has been shown to provide high-quality images of the heart. Due to the signal characteristics of flowing blood, inherent contrast between blood pool and myocardium is achieved without the use of contrast media. This paper briefly describes technical aspects of NMR imaging of the heart, normal cardiovascular anatomy, applications of the technique in patients with ischemic heart disease, and the potential of NMR imaging for functional studies in various forms of heart disease.

Coronary Disease↗

Cardiac function by magnetic resonance imaging.

Gated magnetic resonance imaging of the heart displays cardiac structures with excellent resolution. This ability should be useful for assessment of cardiac physiology where acquisition of systolic and diastolic images is required. In this study, left ventricular ejection fraction was determined in 50 patients from oblique long axis views of the left ventricle using the area length formula. Angulated views were obtained by electronic gradient angulation. For comparison, all patients had monoplane angiocardiography in the RAO position. Forty-five patients were also studied by radionuclide ventriculography. Ejection fractions determined by MRI and angiocardiography were closely correlated (r = 0.90). Correlation between MRI and radionuclide ventriculography was also acceptable (r = 0.79). In addition to global left ventricular function, MR images provide information about regional wall motion. In order to acquire a three-dimensional set of images at various phases of the cardiac cycle, shorter imaging times are mandatory. A new imaging technique with potential for functional studies uses low flip angles, short repetition times and gradient refocused echoes. Up to 40 images can be obtained within one cardiac cycle. When displayed in a looped fashion, visual assessment of cardiac motion, intracardiac blood flow, and systolic wall thickening is possible. Potential advantages of functional studies by MRI are the concomitant acquisition of anatomical information and the three dimensional frame of reference.

Angiocardiography↗

[Diagnosis of cor triatriatum dextrum with imaging procedures].

Cor triatriatum dextrum is a rare malformation of the right atrium usually without typical signs or symptoms. Today the intra vitam diagnosis of C.t.d. is done by echocardiography, MR and angiocardiography. Once the diagnosis is established, surgical correction of this anomaly is possible in symptomatic patients.

Angiocardiography↗

Functional analysis of magnetic resonance studies of the heart.

To calculate left ventricle volumes and ejection fraction, magnetic resonance images (MRI) were acquired in an oblique position in end-diastole and end-systole. The ejection fraction values were compared with results of gated blood pool studies with 99mTc-labelled erythrocytes (correlation coefficient 0.8). Determination of regional wall motion was also possible. A method for acquiring sequences of 16 images per heartbeat was developed. It allows the detection of disturbances of wall motion by using Fourier analysis.

Diastole↗