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Biomedical subjects

C L Partain

Publications and source records attributed to C L Partain.

100 records · Page 6Linked to original sources

In vivo fluorine-19 MR imaging: relaxation enhancement with Gd-DTPA.

The lack of a naturally occurring background signal from fluorine in magnetic resonance (MR) imaging makes fluorinated compounds potentially attractive candidates for tissue-specific MR contrast agents. Problems associated with the in vivo use of fluorinated compounds are toxicity, which limits the amount of agent that can be used; multiple resonance lines; and an excessively long T1, which leads to long sequence TRs and consequently long imaging times. Many fluorinated agents also possess complex MR spectra that result in chemical shift artifacts if not corrected. The authors demonstrate the use of an extracellular fluorinated agent with a single MR peak for selective imaging of a brain abscess in an animal model and show that the image signal per unit of acquisition time can be enhanced through the use of a T1 relaxation agent, gadolinium diethylenetriamine-pentaacetic acid (DTPA). Trifluoromethylsulfonate was administered at a fluorine-19 dose of 4 mmol/kg, and fluorine images of the induced abscess were acquired before and after the injection of a standard dose of Gd-DTPA (0.1 mmol/kg); non-section-selected projection images were used. Typical imaging times were less than 5 minutes. The signal enhancement factor achieved was approximately four (4.0 +/- 0.8) with use of a 500/12 (TR msec/TE msec) spin-echo sequence.

Animals↗

Paramagnetic NMR contrast agents. Development and evaluation.

Paramagnetic ions could be theoretically used as NMR contrast agents because of their effect upon T1. However, the toxicity of these ions prevents their application. By the formation of appropriate chemical complexes with these ions, the toxicity of these agents can be substantially reduced while maintaining the paramagnetic effect. Two potential NMR contrast agents, one for oral use and one for intravenous administration, were developed and evaluated both in vitro and in vivo. The effect upon T1 in vitro of these paramagnetic compounds was determined using a JEOL FX-90Q NMR spectrometer. These agents were evaluated in vivo in dogs with a Technicare 0.3 tesla superconducting magnet system and in rabbits with the Aberdeen 0.04 tesla resistive NMR imager. Using calculated T1 NMR images, a nontoxic dose of gadolinium oxalate provided visualization of the gastrointestinal tract. Intravenous administration of chromium EDTA provided enhancement of the kidneys, ureters, and bladder, thereby potentially allowing for the evaluation of renal function with magnetic resonance imaging. Stable paramagnetic complexes can serve as effective, nontoxic, oral and intravenous NMR contrast agents.

Administration, Oral↗

MR imaging of the adrenals: correlation with computed tomography.

The purpose of this study was to evaluate the role of magnetic resonance (MR) imaging in adrenal disease based on correlative imaging with CT. Fifty lesions in 36 patients with a variety of adrenal diseases were evaluated, at 0.5 T using spin echo (SE) multislice short repetition time (TR) and SE multislice multiecho long TR sequences. It is concluded that MR is capable of identifying most adrenal abnormalities previously detected by CT. The results suggest that MR has a greater specificity for mass lesions and might be useful to differentiate nonfunctioning adenomas from functioning adenomas, metastasis, pheochromocytomas, cysts, and intraadrenal hemorrhage. Magnetic resonance imaging also has the potential to detect aldosteronomas by increased signal intensity in addition to contour distortion using long TR/echo time sequences. The ability to perform multiplanar imaging and the presence of superior contrast as compared with CT are useful for the assessment of origin and extension of large lesions and the detection of pheochromocytomas in complex cases. Considering MR's limitations, we believe that at present its major role in evaluation of adrenal disease should be complementary to CT.

Adenoma↗

MR imaging of recent spinal trauma.

Proper therapeutic management of acute spinal trauma depends considerably on the assessment of the condition of the underlying spinal cord and the relative stability of the surrounding bony architecture. A series of 14 patients who were examined by magnetic resonance (MR) imaging following spinal trauma is presented. Comparison of information gained by MR with that obtained by conventional CT indicates that MR is useful in assessing spinal cord compression, traumatic disk pathology, and post-traumatic intramedullary abnormalities. Computed tomography is more accurate in detecting posterior neural arch fractures and in assessing the number of displaced fragments.

Adolescent↗

Magnetic resonance imaging of the spinal cord in spinal dysraphisms.

Magnetic resonance imaging (MRI) was performed 49 times in 42 patients with spinal dysraphism. Scoliosis and a changing neurological picture were the primary indications. Spinal cord anomalies included hydromyelia, diastematomyelia, lipoma, thickened filum terminali, and spinal cord atrophy. All but one patient exhibited Arnold-Chiari malformation. Twenty-two of the 42 patients had computed tomography (CT) scans, myelograms, or operations that corroborated the 41 MRI findings. Three false-positive MRI findings of hydromyelia and no false-negative studies were observed. MRI is a noninvasive investigative technique that provides more information than myelography or CT in defining spinal cord anatomy in spinal dysraphism.

Arnold-Chiari Malformation↗

NMR: state of the art in medical imaging.

The future of NMR imaging in medicine seems bright. Absence of known biologic hazard, lack of moving parts, and ability to measure multiple tissue parameters should make it the study of choice in many clinical situations, while its ability to create detailed tomographic images in any plane, with both anatomic detail and tissue specificity, should revolutionize diagnostic radiology. The additional information gained about metabolic processes in vivo may well change our entire understanding of health and disease.

Magnetic Resonance Spectroscopy↗

Facility report. Department of Medical Imaging and Radiological Sciences at Vanderbilt University.

This department is presented as an academic prototype to meet the health care and research challenges of the next decade. Composed of four separate divisions (diagnostic radiology, radiation oncology, nuclear medicine, radiologic sciences) with appropriate sections, it is organized according to the concept of an integrated basic science-service facility.

Hospital Bed Capacity, 500 and over↗

Dyke Award. Evaluation of contrast-enhanced MR imaging in a brain-abscess model.

An alpha-streptococcus brain abscess was produced in five dogs and studied with magnetic resonance (MR) imaging (0.5 T) and computed tomography (CT). Non-contrast- and contrast-enhanced CT scans were obtained using gadolinium diethylenetriamine-pentaacetic acid (Gd DTPA) for MR imaging and meglumine iothalamate for CT scanning. Each animal was evaluated in the early and later cerebritis stages of abscess evolution. On MR, the area of cerebritis enhanced after administration of Gd DTPA in a manner similar to that observed with contrast-enhanced CT. However, contrast enhancement was greater on the MR examination. Early lesions in two animals were detected only with contrast-enhanced MR imaging. This experience suggests that intravenously administered agents such as Gd DTPA should increase the diagnostic potential of MR imaging in neurologic diseases, especially those altering the blood-brain barrier.

Animals↗