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Biomedical subjects

L Leff

Publications and source records attributed to L Leff.

6 recordsLinked to original sources

Antagonism of warfarin-induced hypoprothrombinemia with use of low-dose subcutaneous vitamin K1.

Historically, oral or intravenous doses of vitamin K1 for supratherapeutic anticoagulation have ranged from 10 mg to 50 mg. Intravenous administration of vitamin K1 carries a rare but serious risk. No data specifically confirm the use of low-dose subcutaneous vitamin K1 for warfarin induced hypoprothrombinemia. The aim of this study was twofold: 1) to test the general utility of recommendations put forth by the Third Conference of Antithrombotic Therapy, and 2) to test the reliability of the subcutaneous route for this treatment. Six patients with excessive international normalized ratios (INRs) and no intervention were compared with 12 patients with excessive INRs who were given low doses of subcutaneous vitamin K1. The rate of decline of the INR to 3 was statistically significantly greater in favor of the treatment group. The amount of time required to achieve an INR of 3 differed between the two groups by almost 1 complete day (23 hours) in favor of the treatment group. The average dose of subcutaneous vitamin K1 required to return a patient to an INR of 3 or less was 4.9 mg. A few participants required an additional dose of the same magnitude or less to return to an INR within the therapeutic range. This study provides sufficient evidence that subcutaneous vitamin K1 is an effective alternative to intravenous administration of vitamin K1 for warfarin-induced hypoprothrombinemia and permits administration in accordance with the current published recommendations for intravenous vitamin K1 administration in this scenario.

Aged↗

Aneurysm clip testing meter.

The force that a vascular clip exerts when it is applied to a vessel is a critical factor in its safe and proper use. Permanent occlusion effected in the obliteration of aneurysms requires clip closure forces great enough to resist sliping, yet low enough not to damage the neck of the aneurysm. The authors consider the need for a device that can readily measure clip closing forces just prior to pre-surgical sterilization (immediately prior to implantation), and an instrument that meets that need is presented.

Aneurysm↗

Biomechanics of vascular occlusion in neurosurgery.

Principle factors involved in effective vascular occlusion were identified and incorporated into a computer program designed to calculate the minimal occlusion force (MOF) in accordance with a modified version of Laplace's law. In vivo, the carotid arteries of 14 guinea pigs were occluded for one hour at an experimentally determined MOF or MOF + 50. A good correlation was found between the computed MOF and the experimentally determined MOF. Scanning electron microscopic (SEM) examination of the endothelium of the occluded vessels revealed extensive damage with forces greater than the MOF.

Animals↗

Temporary microvascular clips.

Selected commercially designated temporary clips (Acland, Biemer, Kleinert-Kutz, Variangle, and Yasargil) were applied for 1 hour to rat common carotid arteries. Scanning electron and light microscopic studies revealed varying degrees of endothelial damage. The authors believe that further improvements are needed in the design of temporary clips.

Animals↗

Minimum vascular occlusive force.

A mathematical analysis of the minimum occlusion force necessary to occlude small vessels based on the parametric influence of blood pressure, vessel diameter, clamp width, and vessel shape after clamping was performed. The results were confirmed by in vivo experimentation with 60 rat aortas (of 1.8 to 2.4 mm caliber) using a variable-force clamp gauge developed in our laboratory. Experimental and theoretical results differed by only 3 gm. Scanning electron microscopy revealed that the initial changes in the endothelium occurred in smaller radii of curvature. Increased pressure resulted in gross morphological changes across the vessel. The minimum occlusion force (as determined by the variable-force clamp gauge) produced only minimal endothelial damage.

Animals↗