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Biomedical subjects

J W Gothard

Publications and source records attributed to J W Gothard.

16 recordsLinked to original sources

Modified ultrafiltration improves global left ventricular systolic function after open-heart surgery in infants and children.

OBJECTIVES: Modified ultrafiltration increases blood pressure and cardiac index following open-heart surgery in children, but it is unclear if this is secondary to an improvement in global left ventricular function. A previous report has suggested that left ventricular systolic function as assessed in a single chord is improved by ultrafiltration (Davies MJ, Nguyen K, Gaynor JW, Elliott MJ. Modified ultrafiltration improves left ventricular systolic function in infants after cardiopulmonary bypass. J Thorac Cardiovasc Surg 1998;115:361--370). The prominent vascular actions of modified ultrafiltration necessitate left ventricular assessment using load-independent indices of systolic and diastolic function. METHODS: In 22 consecutive infants and children undergoing open-heart surgery, left ventricular function was assessed following bypass and then 10 min later. Sixteen children (median weight 8.1 kg) underwent modified ultrafiltration during this period, the remainder (median weight 7.3 kg) were controls for spontaneous recovery without ultrafiltration. Real-time pressure-volume loops, with transient inferior caval vein snaring were generated from conductance and microtip pressure catheters inserted through the LV apex. From these, load-independent (slope of the end-systolic pressure-volume [Ees] and end-diastolic pressure-volume [Eed] relationships) and load-dependent (Pmax, maximum LV pressure; Ped, end-diastolic LV pressure; maximum [dP/dtmax] and minimum [dP/dtmax] time derivatives of LV pressure; tau, time constant of isovolumic relaxation) indices of left ventricular function were measured. RESULTS: Haemoconcentration was achieved in all modified ultrafiltration patients, median increase in haematocrit 34% (interquartile range 21%, 42%), final haematocrit 0.40 (0.35, 0.41). Ees increased 58% (9, 159, P = 0.005). The changes in Eed, Pmax, Ped, dP/dtmax, dP/dtmin, and tau were not significantly different from the control group. CONCLUSION: Modified ultrafiltration improves global left ventricular systolic function in infants and children following open-heart surgery.

Cardiac Surgical Procedures↗

Left ventricular dysfunction after open repair of simple congenital heart defects in infants and children: quantitation with the use of a conductance catheter immediately after bypass.

OBJECTIVE: Quantification of myocardial injury after the simplest pediatric operations by load-independent indices of left ventricular function, using conductance and Mikro-Tip pressure catheters (Millar Instruments, Inc., Houston, Tex.) inserted through the left ventricular apex. METHODS: Sixteen infants and children with intact ventricular septum undergoing cardiac operations had left ventricular function measured, immediately before and after bypass. Real-time pressure-volume loops were generated by conductance and Mikro-Tip pressure catheters placed in the long-axis via the left ventricular apex, and preload was varied by transient snaring of the inferior vena cava. RESULTS: Good quality pressure-volume loops were generated in 13 patients (atrial septal defects, n = 11; double-chambered right ventricle, n = 1; supravalvular aortic stenosis, n = 1; age 0.25 to 14.4 years, weight 3.1 to 46.4 kg). Their mean bypass time was 41 +/- 14 minutes and mean aortic crossclamp time 27 +/- 11 minutes. End-systolic elastance decreased by 40.7% from 0.34 +/- 0.17 to 0.21 +/- 0.15 mm Hg-1.ml-1.kg-1 (p < 0.001). There were no significant changes in the slope of the stroke work-end-diastolic volume relationship, end-diastolic elastance, time constant of isovolumic relaxation, and normalized values of the maxima and minima of the first derivative of developed left ventricular pressure. CONCLUSION: Load-independent indices of left ventricular function can be derived from left ventricular pressure-volume loops generated by conductance and Mikro-Tip pressure catheters during the perioperative period in infants and children undergoing cardiac operations. Incomplete myocardial protection was demonstrated by a deterioration in systolic function after even short bypass and crossclamp times.

Adolescent↗

Postoperative lung injury and oxidative damage in patients undergoing pulmonary resection.

Postpneumonectomy pulmonary oedema (PPO) complicates a significant number of thoracic surgical procedures involving lung resection and in its extreme form is indistinguishable from the acute respiratory distress syndrome. This study investigated the possibility that ischaemia-reperfusion (I-R) injury contributes to PPO via the production of damaging reactive oxygen species. In a prospective, observational, comparative study, patients undergoing pneumonectomy, lobectomy, or wedge resection or open lung biopsy were investigated for perioperative changes in lung function indicative of lung injury and changes in plasma indices of oxidative damage. Significant percentage perioperative falls in plasma protein thiol levels (-17.9+/-7.0% for pneumonectomy, -24.3+/-5.5% for two-lobe lobectomy and -10.2+/-2.2% for one-lobe lobectomy, p<0.05) and rises in plasma protein carbonyl levels (26.2+/-10.5% for pneumonectomy, p<0.05, 9.8+/-7.0% for two-lobe lobectomy and 5.0+/-2.7% for one-lobe lobectomy) were identified, but not in patients undergoing biopsy or wedge resection. Plasma myeloperoxidase levels rose in all groups, but not significantly. The carbon monoxide transfer coefficient (K(CO)) fell significantly in patients undergoing lobectomy (p<0.05) but not in those undergoing wedge resection, lung biopsy or pneumonectomy. Changes in markers of oxidative protein damage occurred in patients undergoing lung resection, although the gas transfer coefficient fell significantly only following lobectomy. Oxidative damage occurs during pulmonary resection, although associated effects on gas exchange are seen only after lobectomy.

Adult↗

Blood lactate and mixed venous-arterial PCO2 gradient as indices of poor peripheral perfusion following cardiopulmonary bypass surgery.

Conventional indices of tissue perfusion after surgery involving cardiopulmonary bypass (CPB) may not accurately reflect disordered cell metabolism. Venous hypercarbia leading to an increased veno-arterial difference in CO2 tensions (V-aCO2 gradient) has been shown to reflect critical reductions in systemic and pulmonary blood flow that occur during cardiorespiratory arrest and septic shock. We therefore measured plasma lactate levels and V-aCO2 gradients in 10 patients (mean age 57.2 years) following CPB and compared them with conventional indices of tissue perfusion. Plasma lactate levels, cardiac index (CI) and oxygen uptake (VO2) all increased significantly (p less than 0.05 vs baseline levels) up to 3 h following surgery. Oxygen delivery (DO2) did not change. Plasma lactate levels correlated significantly with CI (r = 0.47, p less than 0.01). V-aCO2 fell significantly with time (p less than 0.01 vs baseline). There was an inverse relationship between V-aCO2 and cardiac index and V-aCO2 and lactate (r = -0.37, p less than 0.05; r = -0.3, p less than 0.05 respectively). We conclude that blood lactate, CI and VO2 increase progressively following CPB. An increase in lactate was associated with a decrease in V-aCO2. An increase in V-aCO2 was not therefore associated with evidence of inadequate tissue perfusion as indicated by an increased blood lactate concentration.

Acidosis, Lactic↗

Applications of respiratory mass spectrometry to intensive care.

A monitoring and research system based on a respiratory mass spectrometer controlled by a microprocessor has been installed in a paediatric intensive care unit. It provides an opportunity to study up to twelve patients simultaneously at distances up to 30 m from the instrument, can operate for prolonged periods without intervention, and includes a routine for regular calibration checks. There is an automatic sensitivity control which compensates for minor variations in probe patency or in water vapour pressure. Information derived from the system can be displayed centrally or at the bedside and data can be conserved for up to 24 hours; past events can be recalled and displayed for either the previous hour or previous 24 hours. The system can be used to measure respired gas tensions, metabolic gas exchange, lung volume, pulmonary blood flow and pulmonary tissue volume. The clinical value and limitations of the system are discussed.

Carbon Dioxide↗

Pulmonary blood flow and tissue volume. Assessment of a non-invasive technique of measurement.

Pulmonary blood flow and tissue have been measured by a rebreathing technique in which the disappearance of soluble and insoluble gases from an inhaled mixture is followed continuously using a respiratory mass spectrometer. Although measurements made with diethyl ether are more reproducible than those made with freon-22, they are inaccurate because ether (the more soluble gas) is taken up by the tissues surrounding the respiratory dead space. Experiments carried out on four normal subjects demonstrate that measurements of both pulmonary blood flow and tissue volume are influenced by the volume of gas in the lungs during the manoeuvre. Possible reasons for this are discussed and an exponential relationship between the two variables and lung volume is suggested.

Adult↗

Cardiac pacemaker insertion: a study of the anaesthetic and postoperative complications.

One hundred and three patients undergoing pacing procedures have been studied, the majority requiring the insertion of an epicardial system under general anaesthesia. The main findings were of an elderly group of patients with a high incidence of associated disease, who suffered predominantly from pulmonary and renal complications. Methods of reducing these complications, particularly in relation to general anaesthesia are discussed.

Adolescent↗

The Lack anaesthetic system. An assessment during spontaneous ventilation.

The Lack anaesthetic system is a coaxial modification of the Magill circuit. The resistance of the system was found to be unacceptably high. When air was administered through the system to spontaneously breathing trained volunteers, marked evidence of rebreathing was present when fresh gas flow equalled minute volume. It is suggested that a fresh gas glow equal to one and a half-times minute volume would be required to prevent rebreathing of alveolar gas.

Anesthesia, Inhalation↗