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  1. Chiu CL, Teh BT, Wang CY
    Br J Anaesth, 2003 Nov;91(5):742-4.
    PMID: 14570801
    A 27-yr-old lady with a past history of prolonged ventilation presented with worsening respiratory distress caused by tracheal stenosis. She required urgent tracheal resection and reconstruction. Because of the risk of an acute respiratory obstruction, spinal anaesthesia was used to establish cardiopulmonary bypass by cannulating the femoral artery and femoral vein. Adequate gas exchange was possible with full flow rate. Thoracotomy was then carried out to mobilize the left main bronchus. After successfully securing an airway by intubation of the left main bronchus, cardiopulmonary bypass was discontinued and tracheal resection and anastomosis was done under conventional one lung anaesthesia.
    Matched MeSH terms: Cardiopulmonary Bypass/methods*
  2. Sivalingam S, Krishnasamy S, Yakub MA
    Asian Cardiovasc Thorac Ann, 2015 Jun;23(5):612-4.
    PMID: 24962807 DOI: 10.1177/0218492314540667
    A 9-year-old boy was referred with a perimembranous ventricular septal defect. At birth, he had undergone a right thoracotomy with ligation of a tracheoesophageal fistula, cervical esophagostomy, and feeding gastrostomy. At 2 years of age, he had gastric tube reconstruction with a pull-through retrosternally, anterior to the heart, and an end-to-end esophagogastric anastomosis. Via a right anterolateral thoracotomy through the previous scar, the entire gastric tube was mobilized away from the sternum to facilitate a median sternotomy. With the patient supine, a median sternotomy was performed without difficulty, and the ventricular septal defect was closed under cardiopulmonary bypass.
    Matched MeSH terms: Cardiopulmonary Bypass/methods*
  3. Ng KT, Alston RP, Just G, McKenzie C
    Perfusion, 2018 03;33(2):148-155.
    PMID: 28985693 DOI: 10.1177/0267659117735883
    INTRODUCTION: Bispectral index (BIS) and monitoring of end-tidal concentration may be associated with a reduction in the incidence of awareness during volatile-based general anaesthesia. An analogue of end-tidal concentration during cardiopulmonary bypass (CPB) is measuring exhausted isoflurane concentration from the oxygenator as an estimate to blood and, so, brain concentration. The aim of this study was to determine the relationships between oxygenator exhaust and blood concentrations of isoflurane and the BIS score during CPB when administering isoflurane into the sweep gas supply to the oxygenator.

    METHODS: Seventeen patients undergoing elective cardiac surgery using CPB and isoflurane with BIS monitoring were recruited in a single-centre university hospital. Isoflurane gas was delivered via a calibrated vaporiser at the beginning of anaesthetic induction. Radial arterial blood samples were collected after the initiation of CPB and before aortic cross-clamping, which were analysed for isoflurane by gas chromatography and mass spectrometry. The BIS score and the concentration of exhausted isoflurane from the oxygenator membrane, as measured by an anaesthetic gas analyser, were recorded at the time of blood sampling.

    RESULTS: The mean duration of anaesthetic induction to arterial blood sampling was 90 min (95%CI: 80,100). On CPB, the median BIS was 39 (range, 7-43) and the mean oxygenator exhaust isoflurane concentration was 1.24 ± 0.21%. No significant correlation was demonstrated between BIS with arterial isoflurane concentration (r=-0.19, p=0.47) or oxygenator exhaust isoflurane concentration (r=0.07, p=0.80). Mixed-venous blood temperature was moderately correlated to BIS (r=0.50, p=0.04). Oxygenator exhaust isoflurane concentration was moderately, positively correlated with its arterial concentration (r=0.64, p<0.01).

    DISCUSSION: In conclusion, in patients undergoing heart surgery with CPB, the findings of this study indicate that, whilst oxygenator exhaust concentrations were significantly associated with arterial concentrations of isoflurane, neither had any association with the BIS scores, whereas body temperature has moderate positive correlation.

    Matched MeSH terms: Cardiopulmonary Bypass/methods*
  4. Ooi JS, Ramzisham AR, Zamrin MD
    Asian Cardiovasc Thorac Ann, 2009 Aug;17(4):368-72.
    PMID: 19713332 DOI: 10.1177/0218492309338101
    The aim of this study was to compare 6% hydroxyethyl starch 130/0.4 with 4% succinylated gelatin for priming the cardiopulmonary bypass circuit and as volume replacement in patients undergoing coronary artery bypass, in terms of postoperative bleeding, blood transfusion requirements, renal function, and outcome after surgery. Forty-five patients received 6% hydroxyethyl starch 130/0.4 (Voluven) and another 45 were given 4% succinylated gelatin (Gelofusine) as the priming solution for the cardiopulmonary bypass circuit as well as for volume replacement. Postoperative bleeding was quantified from the hourly chest drainage in the first 4 h and at 24 h postoperatively. The baseline characteristics of both groups were similar. In the hydroxyethyl starch group, the total amount of colloid used was 1.9 +/- 1.0 L, while the gelatin group had 2.0 +/- 0.7 L. There was no significant difference in hourly chest drainage between groups. Blood transfusion requirements, estimated glomerular filtration rate, extubation time, intensive care unit and hospital stay were similar in both groups. It was concluded that 6% hydroxyethyl starch 130/0.4 is a safe alternative colloid for priming the cardiopulmonary bypass circuit and volume replacement in patients undergoing coronary artery bypass surgery.
    Matched MeSH terms: Cardiopulmonary Bypass/methods
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