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E Nishimura

Publications and source records attributed to E Nishimura.

40 records · Page 3Linked to original sources

A porcine model of chronic peripheral arterial occlusion.

PURPOSE: To create a simple and reproducible model of chromic thrombosis for the evaluation of thrombolytic agents and devices. MATERIALS AND METHODS: A stenosis was created in the superficial femoral artery of domestic swine, and autologous blood clot was deposited above the stenosis. Follow-up last for up to 3 months. Degree of clot organization was determined at histologic examination. Two thrombolytic agents, urokinase and collagenase, were used to test this model. RESULTS: There was a 27% delayed recanalization rate with this model. At histologic examination, early thrombus organization was seen at the vessel periphery after 10 days. One-month-old thrombus was substantial but variable in amount. Three-month-old thrombus was completely organized. Neither urokinase nor collagenase proved effective against chronic clot in the doses and time course of this study. CONCLUSION: This simple method yields a chronic porcine clot in a reliable number of domestic swine in 1 month.

Animals↗

Percutaneous creation of acute type-B aortic dissection: an experimental model for endoluminal therapy.

PURPOSE: To evaluate the feasibility of a percutaneously created type-B aortic dissection as an experimental model for percutaneous therapy. This model was used to evaluate the hemodynamic effects of single-balloon fenestration of the intimal flap. MATERIALS AND METHODS: Acute type-B dissections were created in descending aortae of 15 swine via a femoral (n = 6) or carotid (n = 9) approach. The initial subintimal tear was made with use of a Colapinto needle. The dissections were extended to a predefined position in the aorta. The proximal and distal tears were balloon dilated. The mural flap was balloon fenestrated in six animals, just above the celiac artery. Aortograms were obtained to establish the presence and extent of the dissection. Manometry was performed in both lumina to evaluate the hemodynamics of the dissected aorta and the effects of balloon fenestration in this model. Pathologic specimens were also examined. RESULTS: Creation of dissection was successful in 11 of 15 animals, with six developing true lumen narrowing (group A). The other five animals (group B) had flow in both lumina without evidence of true lumen narrowing. After the creation of a single-balloon fenestration in the group A swine, the arteriograms revealed no evidence of blood admixture between the true and false lumina, and there was no change in the intravascular pressures. Examination of the explanted aortae showed a more extensive circumferential dissection in group A animals as compared with group B. CONCLUSION: The percutaneously created acute type-B aortic dissection is a feasible model for experimentation. The hemodynamics of the aorta did not change after single-balloon fenestration in this model.

Aortic Dissection↗

Evaluation of right-ventricular function by Doppler echocardiography in patients with chronic respiratory failure.

In patients with chronic respiratory failure, right-ventricular function was non-invasively evaluated by Doppler echocardiography. A total of 31 patients (16 men, 15 women; mean age 65.8 +/- 7.12 years) with pulmonary tuberculosis sequelae who had received home oxygen therapy during the preceding 6 or more months, were studied. Right-ventricular inflow and outflow waveforms were recorded, and right-ventricular function was evaluated using a new Doppler index combining systolic and diastolic function. On continuous wave Doppler echocardiography, estimated systolic pulmonary arterial pressure was calculated from the gradient between the right atrium and right ventricle. There was no correlation between the new Doppler index and systolic pulmonary arterial pressure, and some patients showed high index values despite low systolic pulmonary arterial pressure. The new Doppler index facilitated evaluation of ventricular function irrespective of right-ventricular afterload.

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