• Title/Summary/Keyword: Continous Infusion

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Safety and Effect of Oriental Medicine and Continuous Intravenous Urokinase combined Therapy in Acute Ischemic Stroke(open clinical trial) (급성 허혈성 뇌졸중에 있어 한방치료와 지속적 유로키나제 정주요법과의 병행요법의 효과와 안전성)

  • Kim, Tae-Youn;Jo, Young;Lee, Jun-Hee;Lew, Jae-Hwan;Lee, Beom-Jun
    • The Journal of Internal Korean Medicine
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    • v.22 no.4
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    • pp.633-638
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    • 2001
  • Objective : Stroke is the most frequent cause of death in Korea. Because it remains severe disablities disturbing normal life, it is important to carry out intervention preventing from progression of condition in patients with acute ischemic stroke within therapeutic time window. Thus early thrombolysis is beneficial for patients with acute ischemic stroke. However its therapeutic efficacy is not known in combination with oriental medical therapy. In this study, we investigated the safety and the clinical effect of continous intravenous urokinase therapy and oriental medical therapy. Methods : Twenty eight patients with acute onset of ischemic stroke no later than three days received continous infusion of urokinase and oriental medical therapy. We estimated the subjects's neurological deficit and functional status with National institute of Neurologic Disorders and Stroke Scale(NIHSS) and Europian Stroke Scale (ESS) prior to therapy, on day 3, 7, 14 after the starting urokinase therapy and on day at discharge. Results: After day 7, the scores of NIHSS and ESS were improved significantly. There are no differences in therapeutic effects of the interval between onset of stroke and initiation of therapy. Complication were noted in four(14%) patients, but these are not fatal complication and make no neurological deficiency. Conclusion : The results of these investment suggest that continuous intravenous urokinase with oriental medical therapy could be a safe and effective intervention to prevent from progression in acute ischemic stroke. But this findings should be confirmed in multicenter double blind controlled trial.

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The Effect of Lidocaine Dose and Pretreated Diazepam on Cardiovascular System and Plasma Concentration of Lidocaine in Dogs Ansthetized with Halothane-Nitrous Oxide (Diazepam 전투여와 Lidocaine 투여용량이 혈중농도 및 심혈역학적 변화에 미치는 영향)

  • Lee, Kyeong-Sook;Kim, Sae-Yeon;Park, Dae-Pal;Kim, Jin-Mo;Chung, Chung-Gil
    • Journal of Yeungnam Medical Science
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    • v.10 no.2
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    • pp.451-474
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    • 1993
  • Lidocaline if frequently administered as a component of an anesthetic : for local or regional nerve blocks, to mitigate the autonomic response to laryngoscopy and tracheal intubation, to suppress the cough reflex, and for antiarrythmic therapy. Diazepam dectease the potential central nervous system (CNS) toxicity of local anesthetic agents but may modify the sitmulant action of lidocaine in addition to their own cardiovascular depressant. The potential cardiovascular toxicity of local anesthetics may be enhanced by the concomitant administration of diazepam. This study was designed to investigate the effects of lidocaine dose and pretreated diazepam to cardiovascular system and plasma concentration of lidocaine. Lidocaine in 100 mcg/kg/min, 200 mcg/kg/min, and 300 mcg/kg/min was given by sequential infusion to dogs anesthetized with halothane-nitrous oxide (Group I). And in group II, after diazepam pretreatment, lidocaine was infused by same way when lidocaine was administered in 100 mcg/kg/min, the low plasma levels ($3.97{\pm}0.22-4.48{\pm}0.36$ mcg/ml) caused a little reduction in cardiovascular hemodynamics. As administered in 200 mcg/kg/min, 300 mcg/kg/min, the higher plasma levels ($7.50{\pm}0.66-11.83{\pm}0.59$ mcg/ml) reduced mean arterial pressure (MAP), cardiac index (CI), stroke index (SI), left ventricular stroke work index (LVSWI), and right ventricular stroke work index (PVSWI) and increased pulmonary artery wedge pressure (PAWP), central venous pressure (CVP), systemic vascular resistance index (SVRI), but was associated with little changes of heart rate (HR), mean pulmonary artery pressure (MPAP), and pulmonary vascular resistance index (PVRI). When lidocaine with pretreated diazepam was administered in 100 mcg/kg/min, the low plasma level, the lower level than when only lidocaine administered, reduced MAP, but was not changed other cardiovascular hemodynamics. While lidocaine was infused in 200 mcg/kg/min, 300 mcg/kg/min in dogs pretreated diazepam, the higher plasma level ($7.64{\pm}0.79-13.79{\pm}0.82$ mcg/ml) was maintained and was associated with reduced CI, SI, LVSWI and incresed PAWP, CVP, SVRI but was a little changes of HR, MPAP, PVRI. After $CaCl_2$ administeration, CI, SI, SVRI, LVSWI was recovered but PAWP, CVP was rather increased than recovered. The foregoing results demonstrate that pretreated diazepam imposes no additional burden on cardiovascular system when a infusion of large dose of lidocaine is given to dogs anesthetized with halothanenitrous oxide. But caution may be advised if the addition of lidocaine is indicated in subjects who have impared autonomic nervous system and who are in hypercarbic, hypoxic, or acidotic states.

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