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T Biggs

Publications and source records attributed to T Biggs.

13 recordsLinked to original sources

Evidence for an influence of mechanical restitution on beat-to-beat variations in haemodynamics during chronic atrial fibrillation in patients.

OBJECTIVE: We tested the hypothesis that beat-to-beat changes in haemodynamics during atrial fibrillation include an effect of each preceding R-R interval through the interval-strength relationship (mechanical restitution). BACKGROUND: The variation in stroke volume and pulse pressure characteristic of atrial fibrillation is usually ascribed to time dependent ventricular filling. METHODS: We measured the maximum rate of rise of left ventricular pressure (LVdP/dtmax), and aortic blood velocity and its integral in patients with atrial fibrillation undergoing cardiac catheterisation. The contractile response of isometric human myocardial trabeculae to sequences of atrial fibrillation was also studied, using the recorded ECGs as stimuli. The trabeculae were obtained from the resected right ventricular outflow tracts of patients with Fallot's tetralogy undergoing operative correction. RESULTS: Beat-to-beat variations in contractile function during atrial fibrillation in the patients were recorded as LVdP/dtmax and left ventricular ejection (ascending aortic) velocity integral (proportional to stroke volume). Both these indices correlated well with the response to the same ECG (R wave) sequences in the isometric model measured as the maximum rate of rise of force, dF/dtmax, r = 0.72 to 0.81, p, 0.0001. When short pre-preceding intervals were excluded (minimizing the effect of post-extrasystolic potentiation), these variables showed a positive curvilinear relationship to preceding interval typical of mechanical restitution. CONCLUSIONS: Mechanical restitution, which causes beat-to-beat changes in inotropic state, accounts in part for the changes in stroke volume in atrial fibrillation.

Aged↗

Influence of the geometry of the left main coronary artery bifurcation on the distribution of sudanophilia in the daughter vessels.

The proximal portions of the left anterior descending (LAD) and left circumflex (LCx) coronary arteries are among the sites most predisposed to atherosclerotic disease. This predisposition might be a consequence of their location immediately distal to the left main (LM) coronary artery bifurcation, which may increase the susceptibility of these segments by promoting an adverse fluid dynamic environment within them. The detailed geometry of the bifurcation influences this environment and would therefore affect the susceptibility of the proximal daughter vessels to disease. This hypothesis was tested by examination of the relationship between the geometry of the LM bifurcation and the distribution of sudanophilia in the proximal portions of the LAD and LCx. The geometric parameters at the LM bifurcation, including all three angles and LM length, were obtained from multiangle photographs of 17 vascular casts by use of objective computer-based algorithms. A robust index, the relative proximal involvement (RPI), was developed to measure the localization of disease to the proximal portions of the daughter vessels. The RPI of the LAD segment correlated best with an interaction term that included the planarity of the LM bifurcation and the LCx-LAD branch angle (P = .013). In addition to supporting the concept of geometric risk factors, these observations also suggest that interactions between the hemodynamic influences of multiple geometric variables may play a role in the mediation of tissue susceptibility by geometric factors.

Adolescent↗

Magnitude and time course of acute hypoxic pulmonary vasoconstriction in man.

Acute hypoxic pulmonary vasoconstriction has an established role in the preservation of ventilation-perfusion balance. To further characterize this homeostatic response in man we have attempted to measure both the time course and magnitude of blood flow diversion from single hypoxic lobes. Lobar hypoxia (mean PO2 38 +/- 1.5(SEM)mmHg, mean PCO2 39.9 +/- 0.9 mmHg) was induced by inflating catheter-tip balloons in left upper lobe bronchi during fibreoptic bronchoscopy under local anaesthesia in 8 normal subjects. An index of lobar blood flow was obtained by acquiring dynamic scintigraphic lung images during a continuous intravenous infusion of the short-lived radioisotope krypton-81m dissolved in 5% glucose solution. In 3 subjects blood flow to the occluded lobes was monitored while the lobes were maintained under hyperoxic conditions (mean PO2 127.8 +/- 31.5 mmHg, mean PCO2 40.2 +/- 1.3 mmHg). Under hypoxic conditions the blood flow to the occluded lobes fell to 53% of baseline after 5 min with a mean time constant of 151 +/- 24.8 sec. Under hyperoxic conditions there was no significant change from baseline blood flow. We conclude that this technique has allowed us to monitor both the dynamic and steady state responses of the pulmonary circulation to lobar hypoxia in man.

Adult↗

Regional matching of ventilation and perfusion during lobar bronchial occlusion in man.

1. Ventilation-perfusion balance in the presence of airway obstruction will depend on the efficiency of hypoxic pulmonary vasoconstriction beyond obstructed airways and the matching of redistributed blood flow and ventilation to the rest of the lung. This study investigated the relative importance of these mechanisms in man during experimental bronchial occlusion. 2. The bronchus to the left lower lobe was temporarily occluded with a balloon-tipped catheter during fibreoptic bronchoscopy in eight supine normal volunteers. Respiratory gas tensions were measured within the occluded lobe with a respiratory mass spectrometer. The distribution of ventilation and perfusion was assessed under control conditions and after 5 min of bronchial occlusion by computer analysis of the regional distribution of radioactivity during inhalation of 81mKr gas and following injection of 99mTc-labelled macroaggregated albumin respectively. 3. Respiratory gas partial pressures within the occluded lobes rapidly stabilized at mixed venous gas tensions: PO2 43.4 +/- 2.2 (SEM) mmHg, PCO2 40.2 +/- 1.8 mmHg. During occlusions the arterial oxygen saturation fell from a baseline of 96.3 +/- 0.46% to a nadir of 92.1 +/- 0.43%. Bronchial occlusion produced underventilation in the left lung relative to perfusion, both in the region of the occluded lower lobe and at the lung apex. Relative overventilation occurred in the right lung. 4. It is concluded that arterial hypoxaemia during lobal bronchial occlusion is caused primarily by shunting of mixed venous blood, though the shunt fraction is reduced by approximately 50% by hypoxic pulmonary vasoconstriction. In lung adjacent to obstructed regions reduced compliance may impair ventilation more than perfusion to contribute to hypoxaemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Changes in regional pulmonary blood flow during lobar bronchial occlusion in man.

1. Acute hypoxic pulmonary vasoconstriction is important in the restoration of ventilation-perfusion balance in the presence of regional alveolar hypoventilation. However, the magnitude and time course of this response in man has not been adequately characterized in regions smaller than an entire lung. We have studied the effectiveness of hypoxic vasoconstriction in diverting blood from hypoxic lobes in normal supine subjects, and have documented the redistribution of pulmonary blood flow under these conditions. 2. Lobar hypoxia was induced for 80-300 s by placing occluding balloon-tipped catheters in lobar bronchi during fibreoptic bronchoscopy in 10 normal subjects. Respiratory gas partial pressures within occluded lobes were measured with a mass spectrometer. The percentage reduction in blood flow to the hypoxic lobes was assessed after injection of 99mTc-labelled albumin by gamma-scintigraphy, and compared with a control scan performed 1 week later. A computer program was used to analyse changes in regional pulmonary perfusion. 3. During lobar bronchial occlusion respiratory gas partial pressures rapidly approached reported values for mixed venous partial pressures. After a mean time of occlusion of 3.5 min lobar blood flow was reduced by 47 +/- 5%. During occlusions pulmonary blood flow was not evenly redistributed, but was preferentially redistributed to more cranial lung regions. 4. We conclude that acute hypoxic pulmonary vasoconstriction in occluded lobes is more effective at rapidly diverting pulmonary blood flow away from hypoxic lung regions than has previously been reported in man during unilateral hypoxia of an entire lung.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Collateral ventilation and gas exchange in emphysema.

Resistance to collateral flow of gas is high in the normal human lung but may be lower in emphysema. However, the contribution of collateral ventilation to gas exchange in emphysema remains unclear. This study evaluates the role and magnitude of collateral ventilation between bronchopulmonary segments in six patients with clinical, functional, and computed tomographic evidence of emphysema, compared with our previous findings in 12 normal subjects. To assess collateral flow, a balloon-tipped catheter with a lumen that opened distal to the balloon was inflated in segmental bronchi during fiberoptic bronchoscopy. Respiratory gas tensions were sampled by mass spectrometer from beyond the occlusion via the catheter lumen. Subjects breathed air until occlusion was established and then switched to 79% helium/21% oxygen. The rate of rise of helium concentration was measured within occluded segments and used as an index of collateral ventilation. The mean (+/- SEM) rate of rise of helium concentration was ten times greater in emphysema patients (9.5 +/- 2.7%/min) compared with normal subjects (0.8 +/- 0.3%/min) (p = 0.009). The mean PO2 within occluded segments was similar in normal subjects and emphysema patients: 45.4 +/- 1.8 mm Hg and 44.8 +/- 3.6 mm Hg, respectively. Mean PCO2 within occluded segments was lower in patients (40.1 +/- 1.9 mm Hg) than in normal subjects (46.4 +/- 1.3 mm Hg), probably due to higher regional ventilation-perfusion ratios in emphysema patients rather than collateral ventilation. In emphysema patients there was a positive correlation between rate of rise of helium concentration and final PO2 within an occluded segment (r = 0.73; p = 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The limitations of posterior view ventilation scanning in the diagnosis of pulmonary embolism.

In the diagnosis of pulmonary embolism some centres using 133Xe for comparison with multiple view 99Tcm perfusion images perform only single-breath posterior view ventilation scans. The purpose of this study was to test the reliability of the posterior view ventilation scan in the detection of lobar and segmental defects in ventilation. Occluding balloon catheters were placed in lobar and segmental bronchi during fibreoptic bronchoscopy to produce defects of known anatomical location and size in normal volunteers. Subjects breathed 81Krm/air during the occlusions and images were acquired in the posterior, posterior/oblique and lateral projections. The posterior view images were classified by three experienced nuclear medicine physicians as normal or abnormal. If abnormal, the observers were asked to state which lobe or segment was involved. Segmental defects were missed in 28% of scan readings. Segmental defects were detected but incorrectly sited in 50% of readings and correctly sited in only 22% of readings. The posterior view scan with a defect involving the entire lingula was judged to be normal by all observers. Defects involving the right and left lower lobes were underestimated. We conclude that ventilation scanning techniques that assess the distribution of ventilation in the posterior view alone are unreliable in the detection of segmental and lobar defects, and are likely to increase the false positive rate in the diagnosis of pulmonary embolism.

Administration, Inhalation↗

Collateral ventilation and gas exchange during airway occlusion in the normal human lung.

The effectiveness of collateral ventilation in maintaining alveolar gas tensions in obstructed lung segments was investigated using fiberoptic bronchoscopy to place an occluding catheter-tip balloon in selected lobar and segmental bronchi in supine normal human subjects. Gas tensions from beyond the occlusion were measured with a respiratory mass spectrometer. Collateral ventilation is known to be minimal between lobes; therefore, values measured in obstructed lobes provide a control. No significant difference was found between the partial pressures of oxygen or carbon dioxide measured in obstructed lobes and in obstructed segments. In both cases respiratory gas tensions approached reported values for mixed venous levels. The time taken to attain a steady state of gas composition in the obstructed lung was rapid (approximately 50 s), and it was no different for lobes and segments. In addition, collateral ventilation was assessed by measuring the amount of helium reaching occluded lobes and segments when subjects breathed a mixture of 21% oxygen and 79% helium. The rate of rise in helium concentration was less than 1%/min in both lobes and segments, a figure that may be explained by delivery of helium in recirculated blood rather than by collateral ventilation. We conclude that intersegmental collateral ventilation has a negligible role in the maintenance of alveolar gas tensions in supine normal humans during tidal breathing.

Adult↗

The underestimation of segmental defect size in radionuclide lung scanning.

Criteria used to place ventilation-perfusion lung scans into categories with different probabilities for pulmonary embolism depend largely on the size and anatomical distribution of defects recognized. These criteria assume that actual segmental defects appear segmental on the lung scan. This study examined the accuracy with which four experienced observers were able to estimate the size of defects of known anatomical location and size, using images of segmental defects in ventilation produced with a bronchoscopic technique and 81mKr. Of the 24 segmental defects produced in this study, 17% were interpreted as being < 25% of a segment; 23% were interpreted as being 25%-50% of a segment; 17% were interpreted as 50%-75% of a segment; 40% were interpreted as being 75%-100% of a segment and 4% were interpreted as being > 100% of a segment. Intra- and interobserver agreement as assessed by the Kappa statistic varied with the number of size categories used but was generally poor. Underestimation of defect size observed in this study may explain why many patients with pulmonary embolism do not have high probability scans. We conclude that the subjective impression of the size of a defect on a lung scan is an unreliable indication of a defect's true segmental or subsegmental nature and that scoring systems based on these criteria should be viewed with caution.

Bronchoscopy↗

The anatomy of radioisotope lung scanning.

An appreciation of the appearances of segmental and lobar defects on a lung scan is important for the diagnosis of pulmonary embolism. The appearances of segmental and lobar ventilation defects of known anatomical location have been examined on 81mKr ventilation scans in normal human subjects, utilizing fibreoptic bronchoscopy to place temporary occlusions under direct vision at the orifices of lobar and segmental bronchi. Scans were obtained in the posterior, posterior-oblique and lateral projections. Anterior views were included if the defects could not be adequately visualized on the other views. The completeness of the occlusion and the site and size of each defect could be confirmed by ventilating the segment itself with 81mKr via the balloon catheter while the occlusion was maintained. Segmental defects located anterior to the hilum of the lung tended to be optimally visualized on the lateral view and defects located posterior to the hilum tended to be optimally visualized on the posterior-oblique view. The size of segmental defects could be underestimated on the lung scan, especially those involving the anterior and lateral basal segments of both lower lobes. Defects involving the medial basal segment of the right lower lobe were undetectable on any view. By implication, the same conclusions apply to 99mTc perfusion scans.

Adult↗

Stealth steroids.

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Adrenal Cortex Hormones↗

Cross-reactivity of organs in allograft rejection. Comparison of effect of thyroid allografts on established islet allografts.

The effect of allotransplantation of thyroid or islet allografts into rats with established islet allografts was studied to determine the cross-reactivity of the thyroid and islets in allograft rejection. Islets obtained from cultured neonatal rat (F344) pancreas explants were transplanted bilaterally underneath the kidney capsule of Wistar-Furth rats. After 21 days these allografts did not exhibit signs of rejection. Thyroid (half lobe) from either F344 or Brown Norway rats was transplanted underneath the capsule of the remaining kidney. Transplant of the thyroid from F344 rats resulted in immediate rejection of the islet transplant, whereas transplant of the thyroid from Brown Norway rats was without effect on the islet allograft. This indicates that the thyroid contains immunocompetent cells (cells that present antigen or induce recognition of antigen) that are capable of initiating rejection of established islet allografts. The cytotoxic T-lymphocytes that result are specific for the organ bearing the immunocompetent cells at time of transplantation.

Animals↗