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Biomedical subjects

Akira Koike

Publications and source records attributed to Akira Koike.

18 recordsLinked to original sources

Critical level of cerebral oxygenation during exercise in patients with left ventricular dysfunction.

BACKGROUND: In a recent study the indexes of cerebral oxygenation decreased during maximal exercise in nearly half of all patients with left ventricular dysfunction. Whether these levels decrease severely enough to influence mental status or level of consciousness was evaluated in the present study. METHODS AND RESULTS: Forty-two patients with idiopathic dilated cardiomyopathy (IDC) and 29 healthy subjects underwent a symptom-limited maximal exercise test. The cerebral oxyhemoglobin (O(2)Hb) and tissue oxygenation index (TOI) were continuously monitored using near-infrared spectroscopy. The changes in O(2)Hb and TOI were also measured in 7 subjects: 2 who experienced episodes of reduced consciousness caused by sudden decreases in blood pressure during exercise recovery and 5 who exhibited sustained ventricular tachycardia during an electrophysiological study. The change in cerebral O(2)Hb during exercise in patients with IDC averaged 0.38+/-3.39 micromol/L, significantly lower than in the normal subjects (4.30+/-4.47 micromol/L, p<0.0001). The cerebral O(2)Hb decreased during exercise in 18 of 42 patients with IDC. The change in cerebral TOI in the IDC patients during exercise was significantly less than that in the normal subjects (-2.0+/-4.7 vs 2.1+/-5.8%, p=0.002). The mean decreases in cerebral O(2)Hb and TOI were -5.34 micromol/L and -9.7%, respectively, in the patients with reduced consciousness during exercise recovery, and -2.52 micromol/L and -16.5%, respectively, in those with ventricular tachycardia. CONCLUSION: The indexes of cerebral oxygenation may drop severely enough during maximal exercise in some patients with severe IDC that consciousness is affected.

Aged↗

Does antiphospholipid antibody syndrome affect bioprosthetic heart valve? Midterm echocardiographic report.

Cardiovascular involvements in antiphospholipid antibody syndrome have been recognized as a major complication of this disease. Furthermore, some papers report bioprosthetic heart valve also seems to be affected. A 32-year-old female with aortic regurgitation presented to our hospital. Further examination revealed high titer of anticardiolipin beta 2 glycoprotein 1 antibody, and she was diagnosed as having primary antiphospholipid antibody syndrome since the patient failed to match the criteria of systemic lupus erythematosus. Cardiopulmonary bypass was uneventfully conducted under systemic heparinization of usual dosage. Administration of warfarin sodium was started on the third postoperative day, and international normalized ratio was controlled from 2.0 to 2.5. On echocardiographic examination at 1 month, mean systolic gradient was 17 mmHg. Although transesophageal echocardiography at 2 years after surgery revealed no sign of valvular destruction or sclerosis, transaortic gradient had increased to 26 mmHg. Bioprosthetic stenosis was suspected probably due to pannus formation and the patient may have to undergo another valve replacement in the near future.

Adult↗

Preload-adjusted 2 wave-intensity peaks reflect simultaneous assessment of left ventricular contractility and relaxation.

BACKGROUND: The magnitudes of the first (WI1) and the second wave-intensity peak (WI2) during the ejection period can be used as indices of left ventricular (LV) contractility and relaxation, respectively. However, use of WI to characterize LV dp/dt and the end-diastolic volume (V ed) relationship may be more problematic, as WI may be affected by changes in preload. METHODS AND RESULTS: The LV pressure-volume data sets, consisting of 23 recordings obtained by the conductance method from 12 heart disease patients, were studied. End-systolic elastance (E es) and volume-axis-intercept (V0) were calculated with varying preload. Time constant of LV relaxation (tau), V ed, and WI were calculated from steady-state averaged data. The E es showed a weak correlation with WI1 (r = 0.46, p < 0.05) but a better correlation with preload-adjusted WI1 [WI1/V ed; r=0.86, WI1/V(ed)2; r = 0.92, WI1/(V ed - V0)2; r = 0.89, all p < 0.01]. Similarly, tau did not correlate with WI2 but did correlate with preload-adjusted WI2 [WI2/V ed; r = -0.73, WI2/V(ed) 2; r = -0.63, WI2/(V ed - V0)2; r = -0.78, all p < 0.01]. CONCLUSIONS: These data demonstrate the importance of preload-adjustment when using the WI index for simultaneous assessment of LV contractility and relaxation.

Diastole↗

Pilsicainide-induced coronary vasospasm in a patient with Brugada-type electrocardiogram.

A 65-year-old man with Brugada-type electrocardiogram (ECG) was admitted to our hospital for chest pain, palpitation and faintness. In the cardiac electrophysiological study, no ventricular tachyarrthymia was induced either at baseline or after pilsicainide (50 mg) infusion. Intravenous administration of pilsicainide exaggerated ST-segment elevation in V(1-4) and converted it to the coved type in V(1), accompanied by severe chest pain. Coronary angiography revealed the vasospasm of the right coronary artery was induced by pilsicainide, not by ergonovine. This is the first case report of coronary vasospasm induced by a pure sodium channel blocker in a patient with Brugada-type ECG.

Aged↗

High diastolic blood pressure during exercise is associated with hypercholesterolemia in patients with coronary artery disease.

Evaluating blood pressure response during exercise rather than during rest might better detect a subtle impairment in relaxation of the resistance vessel in hypercholesterolemia. We examined the relation between serum cholesterol and blood pressure response during exercise in patients with coronary artery disease. One hundred and forty-eight consecutive patients with coronary artery disease were monitored during symptom-limited incremental exercise testing with a cycle ergometer. Cuff blood pressure was measured every minute during exercise testing with an automatic indirect manometer. Although there were no significant differences in systolic or diastolic blood pressure at rest between the patients with hypercholesterolemia (total cholesterol > or = 220 mg/dL, n = 39) and those without it (n = 109), the former reached a higher diastolic blood pressure at peak exercise (94.8+/-16.0 versus 87.8+/-12.9 mmHg, P = 0.007). The increase in diastolic blood pressure at peak exercise versus the resting value in the patients with hypercholesterolemia was 20.6+/-11.3 mmHg, and this was significantly higher than the increase in patients without hypercholesterolemia (14.8+/-11.8 mmHg, P = 0.009). However, there were no differences in the peak exercise systolic blood pressure and the magnitude of the increase in systolic blood pressure between the two groups. Among the patients with coronary artery disease in our study, we found that those with hypercholesterolemia had significantly higher diastolic blood pressure during exercise than those without hypercholesterolemia, strongly suggesting that patients with hyperlipidemia are at a higher risk of developing hypertensive complications.

Aged↗

Cerebral oxygenation during exercise and exercise recovery in patients with idiopathic dilated cardiomyopathy.

We compared cerebral oxygenation during exercise and during exercise recovery between 22 healthy subjects and 35 patients with idiopathic dilated cardiomyopathy (IDC). Although cerebral oxyhemoglobin increased during exercise in most of the healthy subjects, oxyhemoglobin decreased during exercise in 15 of 35 patients with IDC. Cerebral oxygenation during exercise and exercise recovery was related to left ventricular function in the patients with IDC.

Cardiomyopathy, Dilated↗

Convenient training method for aortic cannulation: glove- and-peel method.

Aortic cannulation is a difficult technique for young cardiovascular surgeons. A convenient training method for this procedure is introduced in this paper. After two gloves are worn on a hand, they are removed together, then a piece of mandarin-orange peel is inserted between the gloves. The inner glove is filled with water and the mouth of the inflated gloves is securely tied with a strong ligature. Then this "glove balloon" is set inside a container to stabilize it. Purse-string stitches are placed on the orange peel. After the center of the purse string is incised with a number 11 blade, a cannula is introduced. This "glove-and-peel method" will help young cardiovascular surgeons to become accustomed to aortic cannulation.

Aorta↗

Early aerobic training increases end-tidal CO2 pressure during exercise in patients after acute myocardial infarction.

BACKGROUND: End-tidal CO2 partial pressure (PETCO2) has been suggested as a noninvasive index reflecting cardiac output under constant ventilation. The aim of this study was to examine whether PETCO2 does reflect cardiac output, even during exercise, in patients with acute myocardial infarction (AMI) undergoing exercise training early after onset. Method and Results Patients aged 47-73 years were randomly assigned to either a training group (n=18) or a control group (n=18) 1 week after the onset of AMI. Those in the training group performed exercise training under supervision at the anaerobic threshold level for 2 weeks, while patients in the control group followed a conventional walking regimen. In the training group, but not in the control group, PETCO2 at the respiratory compensation point increased significantly from 39.1+/-3.5 to 41.1+/-3.7 mmHg (p<0.01). Similarly, the cardiac index at peak exercise increased only in the training group (from 6.04+/-0.98 to 7.31+/-0.97 L/min per m2, p<0.01). These 2 measurements correlated well both before and after the study period. Peak oxygen uptake and anaerobic threshold were increased only in the training group. Conclusions Aerobic exercise training early after the onset of AMI significantly increased PETCO2 during exercise, which may reflect an improvement in cardiac output during exercise in response to physical training via a decreased ventilation-perfusion mismatch.

Adult↗

Cerebral oxygenation during exercise in cardiac patients.

BACKGROUND: Until recently, compensatory mechanisms have been believed to regulate adequately cerebral blood flow in humans. However, this has been called into question by a series of new investigations suggesting that patients with left ventricular dysfunction suffer from cerebral hypoperfusion. We compared cerebral oxygenation during incremental exercise between patients with valvular heart disease and normal subjects. METHODS: Thirty-three patients with valvular disease and 33 normal subjects performed a symptom-limited incremental exercise test using a cycle ergometer. Oxyhemoglobin at the forehead was continuously monitored during exercise using near-infrared spectroscopy. Respiratory gas measurements were performed on a breath-by-breath basis. RESULTS: The increase in oxyhemoglobin during exercise was significantly lower in the patients with valvular disease than in normal subjects. The change in oxyhemoglobin during exercise (DeltaO(2)Hb) at the forehead was negatively correlated with the slope of the increase in minute ventilation to the increase in carbon dioxide output (DeltaE/DeltaCO(2)), and positively correlated with the peak oxygen uptake (O(2)), gas exchange threshold (GET), and slope of the increase in O(2) to the increase in the work rate (DeltaO(2)/DeltaWR). Among the patients with valvular disease, 15 patients showed a decrease in oxyhemoglobin at the forehead during exercise. When compared with the patients with increased oxyhemoglobin, those with decreased levels exhibited a higher DeltaE/DeltaCO(2) and a lower peak O(2), GET, and DeltaO(2)/DeltaWR. CONCLUSIONS: The present findings strongly suggest that cerebral oxygenation during exercise is dependent on the cardiovascular and pulmonary systems. The study also indicated the presence of cerebral hypoperfusion during exercise in cardiac patients whose cardiac output fails to increase normally.

Adult↗

Relationship between double product break point, lactate threshold, and ventilatory threshold in cardiac patients.

A double product break point (DPBP) occurs simultaneously with both ventilatory threshold (VT) and lactate threshold (LT) in normal subjects. We sought to determine whether a DPBP also occurs in cardiac patients and to investigate correlations between DPBP, VT and LT (study 1). We also evaluated a non-invasive DPBP measurement system that determined blood pressure automatically by the cuff method (study 2). Study 1 comprised 15 patients [8 men and 7 women, mean (SD) age 47.7 (11.1) years] who performed cardiopulmonary exercise tests on a cycle ergometer. The double product was defined as the product of heart rate and direct systolic blood pressure. Arterial blood samples were obtained for measurement of lactate, pyruvate, pH, and norepinephrine levels. VT was determined by gas analysis, and LT was determined as the lactate/pyruvate ratio. DPBPs were detected in all 15 patients. Double product slopes above the DPBP were significantly greater than those below the DPBP (286.2 vs 98.5/W, P<0.001). The lactate/pyruvate ratio increased, arterial pH decreased, and plasma norepinephrine concentration increased above the DPBP. DPBP had strong positive correlations with VT ( r=0.93) and LT ( r=0.95). Study 2 comprised 65 cardiac patients. The DPBP was detected in 89.2% of patients and correlated closely with VT. We conclude that DPBP occurs near VT and LT in cardiac patients during incremental exercise, that the noninvasive DPBP measurement method is comparable to the invasive method, and that DPBP may be as useful an index of exercise intensity in patients with cardiac disease as VT or LT.

Adult↗

Relation between oscillatory ventilation at rest before cardiopulmonary exercise testing and prognosis in patients with left ventricular dysfunction.

BACKGROUND: Although nocturnal Cheyne-Stokes respiration alternating between hyperpnea and hypopnea has been considered a sign of severe heart failure, the clinical status of cardiac patients who exhibit oscillatory ventilation during wakefulness has not been clarified. This study was carried out to determine the relation between oscillatory ventilation during wakefulness and exercise capacity in patients with chronic heart disease. We also evaluated retrospectively whether the presence of oscillatory ventilation influences the long-term prognosis in these patients. METHODS: A total of 164 patients with left ventricular dysfunction performed a symptom-limited incremental exercise test. Respiratory gas exchange was measured on a breath-by-breath basis throughout the test. Oscillatory ventilation was defined when clear ventilatory oscillation of at least two consecutive cycles was identified at rest before exercise testing and the difference between the peak and nadir of oscillating ventilation was > 30% of the mean value of ventilation. RESULTS: Oscillatory ventilation was noted in 45 of 164 cardiac patients (27%), and the magnitude (mean +/- SD) of oscillation in these patients was 45.5 +/- 16.9%. Patients with oscillatory ventilation had significantly lower left ventricular ejection fraction than those without it (40.7 +/- 12.7% vs 44.9 +/- 11.6%, p < 0.05). However, parameters of exercise capacity such as the peak oxygen uptake (O(2)), the slope of the increase in O(2) relative to the increase in work rate (DeltaO(2)/DeltaWR), and the ratio of the increase in ventilation to the increase in carbon dioxide output (DeltaE/DeltaCO(2)) were not significantly different between the two groups. The mortality rate during 1,797 +/- 599 days of follow-up did not differ between the groups (p = 0.65). CONCLUSIONS: Oscillatory ventilation present at rest before cardiopulmonary exercise testing is not significantly related to the peak O(2), DeltaO(2)/DeltaWR, DeltaE/DeltaCO(2), or prognosis in patients with left ventricular dysfunction.

Adult↗

[Clinical application of exercise testing in heart failure].

Patients with heart failure frequently complain of fatigue and/or dyspnea during daily life. These exertional symptoms can be evaluated by the cardiopulmonary exercise testing. Peak oxygen uptake, anaerobic threshold(AT), the ratio of the increase in minute ventilation to the increase in carbon dioxide output(VE-VCO2 slope), the slope of the increase in oxygen uptake relative to the increase in work rate (delta VO2/delta WR), and the time constant of oxygen uptake (tau on) are reported to be useful to assess the severity and prognosis of heart failure patient. The information obtained from cardiopulmonary exercise testing can be used to select therapeutic option to improve both functional capacity and prognosis, and to identify patients with the greatest need for cardiac transplantation.

Anaerobic Threshold↗

[Relationship between exercise capacity and brain natriuretic peptide in patients after cardiac surgery].

OBJECTIVES: Physical training in cardiac patients can increase exercise capacity and reduce plasma brain natriuretic peptide(BNP) concentration, but these effects may depend on the etiology of cardiac disease. The change in exercise capacity and BNP during the training period were investigated in patients with different cardiac diseases. METHODS: Ninety-one patients after coronary artery bypass grafting(CABG) and 78 patients after valve replacement (VR) underwent a symptom-limited incremental cardiopulmonary exercise test before (1 month) and 6 months after physical training. Anaerobic threshold and peak oxygen uptake(peak-Vo2) were measured during the cardiopulmonary exercise test. Before each cardiopulmonary exercise test, a blood sample was obtained in the resting condition for measuring BNP. RESULTS: Anaerobic threshold and peak-Vo2 were increased significantly from 1 month to 6 months in both groups. BNP in the CABG group indicated a tendency to decrease (194.6 +/- 155.3-->144.2 +/- 232.2 pg/ml, p < 0.1) from 1 month to 6 months. BNP in VR group was significantly decreased (159. 9 +/- 115.5-->112.8 +/- 131.7 pg/ml, p < 0.05) during the training period. The CABG group showed a significant negative correlation between peak-Vo2 and BNP at 1 month(r = -0.28, p < 0.01) and at 6 months(r = -0.39, p = 0.001). The VR group showed a significant negative correlation between peak-Vo2 and BNP at 6 months(r = -0.32, p < 0.01), but not at 1 month. CONCLUSIONS: Six months of physical training in patients after cardiac surgery may improve exercise capacity and reduce BNP. BNP concentration in the VR group before physical training did not reflect functional capacity.

Aged↗

Prognostic power of ventilatory responses during submaximal exercise in patients with chronic heart disease.

BACKGROUND: Although parameters obtained during submaximal exercise are known to be useful for predicting mortality in cardiac patients, it has been a matter of debate whether the submaximal parameters are superior to peak oxygen uptake (VO(2)). For this purpose, we aimed to determine the best index among exercise variables in predicting long-term mortality in patients with chronic heart disease. METHODS: The study population consisted of 385 consecutive patients with chronic heart disease who performed a symptom-limited incremental exercise test on a cycle ergometer. Breath-by-breath respiratory gas analysis was used to estimate the peak VO(2), the ratio of the increase in VO(2) to the increase in work rate (WR) [VO(2)/Delta WR], and the ratio of the increase in minute ventilation E to the increase in carbon dioxide output (VCO(2)) [Delta VE/Delta VCO(2)]. RESULTS: After 1,899 +/- 495 days of follow-up (mean +/- SD), 33 cardiovascular-related deaths occurred. Nonsurvivors achieved lower peak VO(2), lower VO(2)/Delta VWR, and higher Delta VE/Delta VCO(2) compared to the survivors. In the univariate Cox proportional hazards analysis, peak VO(2), VO(2)/Delta VWR, and Delta VE/Delta VCO(2) were found to be significant prognostic indexes of survival. However, multivariate analysis revealed O(2)/Delta VWR as an independent predictor of mortality and Delta VE/delta VCO(2) as a slightly weaker predictor. In this analysis, the prognostic power of peak O(2) was insignificant. CONCLUSION: Submaximal respiratory gas indexes are very likely to be more sensitive than peak VO(2) for predicting poor survival in ambulatory patients with chronic heart disease.

Carbon Dioxide↗

Short-term physical training improves vasodilatory capacity in cardiac patients.

There have been no previous studies that clearly demonstrate the effects of training on the relation between exercise capacity and vasodilatory capacity in skeletal muscle. This study was performed to clarify the effects of short-term, moderate-intensity physical training on exercise tolerance and vasodilatory capacity in cardiac patients. We studied 21 patients after acute myocardial infarction, coronary artery bypass grafting, or valve replacement. Each patient performed symptom-limited incremental exercise tests before and after a 2-week training program of moderate-intensity exercise. A cycle ergometer was used for both the training and exercise tests. Blood pressure measurement and respiratory gas analysis were continuously performed during the tests. Cardiac output was also measured using a dye-dilution method at rest and every 2 minutes during incremental exercise. Reactive hyperemic calf blood flow was measured at rest. After the training program, the subjects attained a significant decrease in systemic vessel resistance and significant increases in oxygen uptake and cardiac output at peak exercise. Changes in reactive hyperemic calf blood flow were significantly correlated with the changes in cardiac output, systemic vascular resistance, and the kinetics of oxygen uptake during warm-up exercise. By improving the peripheral vasodilatory capacity in these patients, short-term, moderate-intensity physical training was found to improve the cardiovascular adaptation not only at peak exercise, but also during the onset of exercise.

Aged↗

Effects of nitric oxide inhalation on periodic breathing in awake patients with chronic heart disease.

BACKGROUND: Periodic breathing, an abnormal pattern of respiration consisting of alternating hyperpnea and hypopnea, has been recognized in patients with heart failure. Although fluctuations in pulmonary blood flow have been considered as a possible cause of this type of breathing, its patho-physiological mechanisms are not fully understood. In this study, we sought to determine whether inhaled nitric oxide (NO), a selective pulmonary vasodilator, attenuates periodic breathing. METHODS: Eight cardiac patients who exhibited clear oscillatory ventilation while awake (age: 62 +/- 16 years, left ventricular ejection fraction: 48 +/- 20%) were enrolled in the study. After breathing room air (RA) for 15 min, the subjects inhaled air containing 30 ppm of NO for 15 min. Respiratory gas variables including minute ventilation (VE) were measured on a breath-by-breath basis throughout the test. RESULTS: There were no differences in VE (10.7 +/- 1.5 vs. 11.0 +/- 1.7 l/min) or among any of the other hemodynamic or respiratory gas variables studied in the control and NO tests, with the exception of the end-tidal CO(2) partial pressure (5.0 +/- 0.4 vs. 4.8 +/- 0.5%; p = 0.018). The % magnitude of oscillation (i.e., the difference between the peak and nadir of oscillating VE, divided by the mean VE) was 40.0 +/- 22.4% in RA and not influenced by inhaled NO (43.9 +/- 20.8%, p = 0.57). CONCLUSION: Inhaled NO at a concentration of 30 ppm did not attenuate periodic breathing in awake patients with mild heart failure.

Administration, Inhalation↗

[Prevalence and clinical background of exercise-induced ventricular tachycardia during exercise testing].

OBJECTIVES: This study assessed the prevalence and clinical background of exercise-induced ventricular tachycardia during exercise testing. METHODS: Complications during exercise testing were reviewed in 25,075 consecutive patients, 14,037 men and 11,038 women, who underwent a total of 47,656 maximal treadmill or bicycle exercise tests between April 1985 and March 1999. The mean age of the patients was 53.3 +/- 8.8 (mean +/- SD) years. Non-sustained ventricular tachycardia was defined as 8 or more consecutive ventricular ectopic beats at > 100 beats/min. A total of 126 patients undergoing exercise testing to evaluate the efficacy of pharmacotherapy for ventricular tachycardia were excluded. RESULTS: The major reasons for the exercise test were chest pain (27.0%) and screening (20.3%). Twenty patients (0.08%) had exercise-induced ventricular tachycardia. Six patients had ischemic heart disease, two had cardiomyopathy, five had other cardiac diseases, and seven patients showed no clinical evidence of heart disease. The incidence of ventricular tachycardia in patients with cardiomyopathy (2/109) was higher than in other patients, but the number of patients with ventricular tachycardia was small. Ventricular tachycardia was documented at heart rates of more than 80% of predicted maximal heart rate in 12 of the 20 patients. CONCLUSIONS: These results suggest that the exercise testing can be done safely when the end-point criteria are properly applied.

Adult↗