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R C Dawson

Publications and source records attributed to R C Dawson.

8 recordsLinked to original sources

Treatment of experimental aneurysms using collagen-coated microcoils.

Endovascular treatment of certain surgically difficult aneurysms is currently performed using fibered microcoils or electrolytically detachable microcoils to obliterate these lesions by forming an intra-aneurysmal thrombus. Unfortunately, this treatment option results in a significant incidence of incomplete obliteration of treated aneurysms. A thrombus can recanalize, resulting in further aneurysm growth and subsequent rupture. Nineteen aneurysms were surgically created in 10 pigs using jugular venous pouches. The aneurysms were allowed to mature for periods of 7 days to as long as 11 weeks prior to embolization. Fourteen remained patent for embolization. The aneurysms were then embolized (9 with collagen-coated microcoils, 5 with dacron-fibered platinum microcoils). Follow-up angiograms were obtained prior to sacrifice at 1, 3, 6, 9, and 12 weeks postembolization, and the embolized aneurysms and parent vessels were harvested for histopathological studies. The current study was designed to evaluate the potential efficacy of collagen-coated microcoils in providing an enduring therapy for aneurysms by comparing this new embolic device with the standard dacron-fibered platinum microcoils in a swine common carotid artery side wall aneurysm model. The aneurysms treated with collagen microcoils were completely obliterated with a collagen-rich fibrous scar with no histological evidence of residual thrombus or recanalization. Additionally, after treatment of experimental aneurysms with collagen microcoils, re-endothelialization across the former aneurysm neck was seen. In contrast, aneurysms embolized with dacron-fibered microcoils contained persistent thrombus surrounded by a relatively immature scar with residual aneurysmal lumen and lack of endothelium.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Interventional neuroradiology in the community hospital.

The active participation of the neuroradiologist in the therapy of neurosurgical patients is a concept with which many neurosurgeons as well as many radiologists are uneasy. Interventionally oriented radiologists have much to offer the neurosurgeon who accepts the radiologist as a partner in the management of patients with difficult problems. Technological advances in imaging, in guidewire and catheter design, and experience gained by radiologists and neurosurgeons have led to a number of therapeutic advances. We present several illustrative examples.

Aneurysm

Treatment of arteriovenous malformations of the brain with combined embolization and stereotactic radiosurgery: results after 1 and 2 years.

Seven patients with large arteriovenous malformations (AVMs) of the brain were selected for combined therapy with particulate embolization, followed by radiosurgery of the residual nidus. The goal of embolization was to reduce the patient nidus to a size that facilitated successful stereotactic radiosurgery. Angiograms obtained 1 and 2 years after radiosurgery were evaluated for changes in nidus size, flow rate, and feeding and draining vessels. One year after stereotactic radiosurgery, one AVM was angiographically undetectable. Three other AVMs demonstrated a volume reduction of greater than 50%, in addition to decreased shunt speed and altered angioarchitecture at 1-year follow-up. At 2-year follow-ups, two of seven AVMs were cured, and an additional two of seven had a greater than 98% reduction in nidus volume. Although one patient experienced a transient deficit from embolotherapy, none of our patients suffered a new neurologic deficit or a hemorrhage during the follow-up period. Our data support the efficacy of combined embolotherapy and radiosurgery for definitive therapy of selected large AVMs of the brain.

Adult

Retinal Wada test.

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Amobarbital