• Title/Summary/Keyword: 연속 온혈 심정지액

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Clinical Experiences of Continuous Tepid Blood Cardioplegia; Valvular Heart Surgery (미온혈 심정지액의 임상적 고찰)

  • 이종국;박승일;조재민;원준호;박묘식
    • Journal of Chest Surgery
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    • v.32 no.2
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    • pp.130-137
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    • 1999
  • Background: In cardiac surgery, hypothermia is associated with a number of major disadvantage, including its detrimental effects on enzymatic function, energy generation and cellular integrity. Warm cardioplegia with normothermic cardiopulmonary bypass cause three times more incidence of permanent neurologic deficits than the cold crystalloid cardioplegia with hypothermic cardiopulmonary bypass. Interruptions or inadequate distribution of warm cardioplegia may induce anaerobic metabolism and warm ischemic injury. To avoid these problems, tepid blood cardioplegia was recently introduced. Material and Method: To evaluate whether continuous tepid blood cardioplegia is beneficial in clinical practice during valvular surgery, we studied two groups of patients matched by numbers and clinical characteristics. Warm group(37$^{\circ}C$) consisted of 18 patients who underwent valvular surgery with continuous warm blood cardioplegia. Tepid group(32$^{\circ}C$) consisted of 17 patients who underwent valvular surgery with continuous tepid blood cardioplegia. Result: Heartbeat in 100% of the patients receiving continuous warm blood cardioplegia and 88.2% of the patients receiving continuous tepid blood cardioplegia converted to normal sinus rhythm spontaneously after removal of the aortic cross clamp. There were no differences between these two groups in CPB time, ACC time, the amount of crystalloid cardioplegia used and peak level of potassium. During the operation, the total amount of urine output was more in the warm group than the tepid group(2372${\pm}$243 ml versus 1535${\pm}$130 ml, p<0.01). There were no differences between the two groups in troponin T level measured 1hr and 12hrs after the operation. Conclusion: Continuous tepid blood cardioplegia is as safe and effective as continuous warm blood cardioplegia undergoing cardiac valve surgery in myocardial protection.

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Clinical Experiences of Continuous Warm Blood Cardioplegia ; Valvular Heart Surgery (연속 온혈 심정지액의 임상경험 - 심장 판막 수술 환자 대상 -)

  • 이종국;박승일;조재민;원준호
    • Journal of Chest Surgery
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    • v.31 no.4
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    • pp.353-361
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    • 1998
  • Hypothermia is widely acknowledged as fundamental component of myocardial protection during cardiac operations. Although it prolongs the period of ischemic arrest by reducing oxygen demands, hypothermia is associated with a number of major disadvantages, including its detrimental effects on enzymatic function, energy generation, and cellular integrity. The ideal way to rotect the heart is to electromechanically arrest it and perfus it with blood that is aerobic arrest. However alternative technique has been developed, based on the principles of electromechanical arrest and normothermic aerobic perfusion using continuous warm blood cardioplegia. To determine if continuous warm blood cardioplegia was beneficial in clinical practice during valvular surgery, we studied two groups of patients matched by numbers and clinical characteristics. Group included is 31 patients undergoing valvular surgery who received intermittent cold crystalloid cardioplegia. Group II included 30 patients undergoing valvular surgery who received continuous warm blood cardioplegia. Our results suggest that the heartbeat in 100% of patients treated with continuous warm blood cardioplegia converted to normal sinus rhythm spontaneously after the removal of the aortic cross-clamp, compared to only 31% of the cold cardioplegia group. After operation, pericardial closure rate was 90% area in the warm group, compared to 35% area in the cold group. 12 hours after the operation, the total amount of urine output in the warm group was greater than that in the cold group(2863${\pm}$127 ml versus 2257${\pm}$127 ml; p<0.05). After the operation, left diaphragmatic elevation developed in 55% of the cold group but in 0% of the warm group. CK-MB level in the warm group was significantly lower than cold group(2.28${\pm}$0.62 versus 9.96${\pm}$2.12; p<0.01) 1 hour after operation and CK-MB level in the warm group was significantly lower than cold group(1.80${\pm}$1.01 versus 6.00${\pm}$1.74; p<0.05) 12hours after operation. Continuous warm blood cardioplegia is at least as safe and effective as hypothermic technique in patients undergoing cardiac valvular surgery. Conceptually, this represents a new approach to the problem of maintaining myocardial preservation during cardiac operations.

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Use of Intermittent Antegrade Warm Blood Cardioplegia in CABG (관상동맥 우회로조성술에서 간헐적 전방 온혈 심정지액의 이용)

  • 김정택;백완기;김영삼;윤용한;김혜숙;이춘수;임현경;김현태;김광호
    • Journal of Chest Surgery
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    • v.36 no.11
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    • pp.828-833
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    • 2003
  • Background: It has been reported that the recently developed intermittent antegrade warm blood cardioplegia (IAWBC) has better myocardial protective effects during coronary artery bypass surgery than cold blood cardioplegia or continuos retrograde cold blood cardioplegia. The aim of this study is to evaluate the safety and usefulness of IAWBC by comparing it retrospectively with intermittent retrograde cold blood cardioplegia (lRCBC). Material and Method: From April 2001 to Feb. 2003, fifty seven patients who underwent isolated coronary surgery were divided into two groups (IAWBC vs. IRCBC). The two group had similar demographic and angiographic characteristics. There were no statistical differences in age, sex, Canadian Cardiovascular Society Functional Classification for angina, ejection fraction, and number of grafts. Result: Aortic cross clamping time and total pump time in IAWBC (99$\pm$23 and vs. 126$\pm$32 min) were shorter than those of IRCBC (118$\pm$32 min. and 185$\pm$48 min.)(p<0.05). The reperfusion time (13$\pm$7 min) in IAWBC was shorter than that of IRCBC (62$\pm$109 min.)(p<0.05). CKMB at 12 hours and 24 hours (16$\pm$15 and 9$\pm$13) in IAWBC was lower than that of IRCBC (33$\pm$47 and 17$\pm$26)(p<0.05). The awakening time in IAWBC (2$\pm$1 hour) was shorter than that of IRCBC (4$\pm$3)(p<0.05). The number of spontaneous heart beat recovery in IAWBC (85%) was more than that of IRCBC (35%)(p<0.05). The cardiac index after discontinuing cardio-pulmonary bypass was significantly elevated in the IAWBC group. The prevalence of perioperative myocardial infarction in IAWBC (4%) was lower than that of IRCBC group (20%)(p<0.05). Conclusion: Intermittent antegrade warm blood cardioplegia is a safe, reliable, and effective technique for myocardial protection. It can also provide simpler and economic way than the retrograde cold cardioplegia by shortening of cardiopulmonary bypass time and avoiding retrograde cannulation for coronary sinus.

A Clinical Study on Myocardial Metabolism in Warm Versus Cold Continuous Blood Cardioplegia (냉혈 및 온혈 심정지액의 연속관류시 심근대사에 대한 임상연구)

  • 백완기
    • Journal of Chest Surgery
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    • v.27 no.6
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    • pp.427-434
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    • 1994
  • A clinical study was designed to evaluate myocardial metabolism during continuous cold blood cardioplegia [Group A, n=10] in comparison with continuous warm blood cardioplegia [Group B, n=10], in a prospective randomized manner. Myocardial metabolism was assessed in two ways: either by collecting blood from coronary sinus before and after cardiopulmonary bypass or by collecting blood from cardioplegic affluent and effluent simultaneously at the beginning and at the end of cardioplegia. The former samples were assayed for gas analysis, lactic acid and cardiac enzyme [CK, LDH, SGOT] and the latter for gas analysis and lactic acid as a maker of anaerobic metabolism. The results were as follows. 1] Myocardial metabolism was shown to be continued in the state of cardioplegia at lower temperature as evidenced by high oxygen extraction of cardioplegic solution in Group A. 2] Anaerobic metabolism occurring at lower temperature in spite of continuous cold blood cardioplegia can be significantly reduced by continuous perfusion of normothermic blood cardioplegics as evidenced by significant reduction of lactate production in Group B [p〈0.05]. 3] Better myocardial protection can be achieved by employing continuous warm blood cardioplegia as evidenced by less cardiac enzyme release in Group B after cardiopulmonary bypass.

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