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Relationship between oxygenation in inactive biceps brachii muscle and hyperventilation during leg cycling.

Inactive forearm muscle oxygenation has been reported to begin decreasing from the respiratory compensation point (RCP) during ramp leg cycling. From the RCP, hyperventilation occurs with a decrease in arterial CO2 pressure (PaCO2). The aim of this study was to determine which of these two factors, hyperventilation or decrease in PaCO2, is related to a decrease in inactive biceps brachii muscle oxygenation during leg cycling. Each subject (n = 7) performed a 6-min two-step leg cycling. The exercise intensity in the first step (3 min) was halfway between the ventilatory threshold and RCP (170+/-21 watts), while that in the second step (3 min) was halfway between the RCP and peak oxygen uptake (240+/-28 watts). The amount of hyperventilation and PaCO2 were calculated from gas parameters. The average cross correlation function in seven subjects between inactive muscle oxygenation and amount of hyperventilation showed a negative peak at the time shift of zero (r = -0.72, p<0.001), while that between inactive muscle oxygenation and calculated PaCO2 showed no peak near the time shift of zero. Thus, we concluded that decrease in oxygenation in inactive arm muscle is closely coupled with increase in the amount of hyperventilation.

Adult↗

Effects of voluntary hyperventilation on glucose, free fatty acids and several glucostatic hormones.

BACKGROUND: The aim of the present study was to measure the influence of a defined period of standardised voluntary hyperventilation on the levels of glucose, free fatty acids and several glucose regulating hormones in healthy volunteers. STUDY DESIGN: Eight healthy male subjects were submitted to 20 minutes of controlled hyperventilation and blood levels of glucose, free fatty acids, insulin, glucagon, cortisol, catecholamines and pCO2 were measured before, immediately after and 20 minutes after the end of the hyperventilation period. RESULTS: The hyperventilation led to a significant increase in all above mentioned parameters, except for glucose, where the effect was negligible. CONCLUSIONS: In view of the frequency of accompanying hyperventilation in a great variety of diseases and notably in some intensive care patients we postulate that pitfalls in the interpretation of plasma values of substances involved in glucose metabolism may be avoided by simultaneous determination of arterial pCO2.

Adult↗

[Occurrence of hyperventilation syndrome in Chinese patients].

OBJECTIVE: To evidence the occurrence of hyperventilation syndrome in Chinese patients. METHOD: Case report and literature review. RESULT: Three cases with manifest hyperventilation syndrome were reported. The diagnosis was based on the presence of several suggestive complaints occurring in a context of stress, and the reproduction of the most important complaints by the hyperventilation provocation test. Organic diseases as a cause of the symptoms had been excluded. Breathing therapy reducing the tendency to hyperventilate by acquiring an abdominal breathing pattern, with slowing down of expiration, markedly reduced complaints in the three patients. CONCLUSION: Hyperventilation syndrome occurs also in Chinese patients.

Adult↗

Transcranial Doppler study of the cerebral hemodynamic changes during breath-holding and hyperventilation tests.

BACKGROUND AND PURPOSE: The aim of the present study was to assess the time course of hyperventilation (HV) and breath-holding (BH) tests in healthy volunteers. SUBJECTS AND METHODS: Young healthy volunteers (n = 29) underwent continuous registration of the middle cerebral artery mean blood flow velocity (MCAV) during and after 30 seconds of BH and 60 seconds of HV. Absolute values as well as percentage changes of the MCAV are reported. In 13 subjects, determination of capillary blood gas parameters (pH, pCO2, pO2, and O2 saturation) was performed before tests, after BH and after HV. RESULTS: MCAV during 30 seconds of breath-holding starts to increase after 10 seconds and reaches its highest level at 30 seconds. After breathing normally, MCAV normalizes within 30 seconds. Hyper-ventilation results in a decrease in MCAV, which reaches a plateau at 20 to 30 seconds after starting to hyperventilate, and blood flow velocity did not change significantly any further until the end of the procedure. The normalization of the MCAV is incomplete at 30 seconds after finishing hyperventilation. None of the capillary blood gases changed significantly after breath-holding, whereas capillary pH, pO2, and oxygen saturation increased and pCO2 decreased after hyperventilation. No relationship was found between capillary blood gas parameters and MCAV values. CONCLUSIONS: The authors concluded that breath-holding and hyperventilation tests seem to be a practical alternative to acetazolamide and the CO2 inhalation method in the assessment of cerebral hemodynamics.

Adult↗

[Hyperventilation syndrome].

Of 16 patients with hyperventilation syndrome (HVS), 11 experienced hypoxemic episodes (defined as PaO2 < or = 60 Torr or SaO2 < or = 90%). To investigate the relationship between hypoxemia in HVS patients and their hypoxic ventilatory response (HVR), we examined 9 of 11 HVS patients who experienced hypoxemic episodes after acute hyperventilation attacks. In order to investigate the genesis of hypoxemia after hyperventilation, we also examined minute ventilation and visual analog scale (VAS) scores representing the sensation of dyspnea at the start and at 70% arterial O2 saturation (SaO2) during HVR in 9 normal subjects under isocapnia and hypocapnia following voluntary hyperventilation (VHV). The HVR of 9 HVS patients who experienced hypoxemic episodes was normal. In 9 normal subjects, minute ventilation and VAS scores representing the sensation of dyspnea at 70% SaO2 during HVR were higher under isocapnia than under hypocapnia following VHV (p < 0.01). VAS scores taken during the HVR immediately following VHV and at 70% SaO2 were not significantly different. HVR and VAS scores representing the sensation of dyspnea were decreased under hypocapnia following VHV. These reductions were thought to be the main factors responsible for the genesis of hypoxemia following acute hyperventilation attacks in HVS patients. We conclude that hypoxemia is an important clinical sign in HVS patients, and it is important to investigate the breathing and chemical drive under hypocapnia, in order to understand the chemical regulation of breathing in HVS patients.

Adult↗

Hyperventilation in neurosurgery.

An outline of the nature and varieties of hyperventilation is presented together with a discussion on the role of artificial hyperventilation in the management of neurosurgical patients. Attention is called to the value of gasometric investigations in the ventricular cerebrospinal fluid for evaluation of disturbances in pH of the intracranial environment and possible effectiveness of hyperventilation. The results of our measurements of cerebrospinal fluid pressure are presented in 21 cases of supratentorial cerebral tumours in which controlled ventilation with hyperventilation was conducted. In 19 cases, the cerebrospinal fluid pressure fell by a mean of 44.3% with a simultaneous fall of PaCO2 by 29.3%. In the conclusions the authors stress the role of hyperventilation in the lowering of raised cerebrospinal fluid pressure and prevention of cerebral oedema.

Acid-Base Imbalance↗

Panic anxiety and hyperventilation in patients with chest pain: a controlled study.

We studied the relation between mood disorder and hyperventilation (hypocapnia) before and during exercise treadmill testing in 113 chest pain patients attending a cardiac clinic and 30 healthy controls. In most patients end-tidal PCO2 (PCO2) rose in the normal way on exercise but in a subset of 24 (21 per cent) there was no rise: these patients with initial hyperventilation had significantly higher anxiety scores than those with a normal exercise-induced rise in PCO2. Two of the 24 had ischaemic heart disease and 10 (42 per cent) complained of recent panic anxiety compared with 12 (13 per cent) of the 89 with normal rise in PCO2 (p less than 0.05). Rates of psychiatric morbidity were similar in patients with 'typical' and 'atypical' chest pain. Resting hypocapnia occurred more often in patients with panic anxiety than in either anxious or non-anxious patients without panic. Panic patients also reported more symptoms of breathlessness and hyperventilation-related complaints than those without panic. Our findings confirm the important association between panic and hyperventilation in patients with chest pain. Furthermore, patients with exercise-induced hyperventilation are more likely to have a psychiatric than a cardiac disorder. Early detection and treatment of these patients may reduce the potential morbidity associated with unnecessary invasive investigations.

Adult↗

Changes of motor evoked potential amplitudes following magnetic stimulation after hyperventilation.

The influence of hyperventilation on amplitudes of motor evoked potentials (MEP) following cortical and root magnetic stimulations was tested in ten healthy volunteers. Hyperventilation significantly increased MEP amplitude following cortical stimulation (p < 0.01) but failed to change MEP amplitude following root stimulation. This finding is compatible with the concept of hyperventilation as a promoter of greater excitability at the level of cortical structures. The provoking method applied during magnetic cortical stimulation might be a useful procedure in studying some functional affections associated with hyperventilation, such as hyperventilation tetany or panic disorder.

Adult↗

The use of hyperventilation in contrast-enhanced MR of brain tumors.

Angiographic studies have demonstrated improved visibility of glial tumors after hyperventilation. The present study was undertaken to determine whether hyperventilation would change the MR enhancement characteristics of various glial tumors. Eighteen patients were studied twice: once with standard contrast-enhanced MR imaging and again with standard imaging plus hyperventilation. After hyperventilation, six low-grade astrocytomas showed no change and three showed a small decrease in relative enhancement (<10%). The ependymomas showed a 10% to 13% increase in the degree of enhancement, but no change in the area of enhancement. All the anaplastic astrocytomas showed an increase in the degree of enhancement (mean, 38%). Three of the anaplastic astrocytomas showed new foci of enhancement that were not seen on the nonhyperventilation study. Hyperventilation appears to be an inexpensive and safe method for increasing the conspicuity of abnormal areas of the blood-brain barrier.

Adult↗

[Does intraoperative hyperventilation improve neurological functions of older patients after general anaesthesia?].

UNLABELLED: The purpose of the study was to investigate the effect of intraoperative hyperventilation on postoperative cognitive functions. METHODS: A total of 120 patients (60 older and 60 younger than 65 years old) were allocated randomly to group I "hyperventilation" (p(et)CO(2)=30 mmHg) or group II "normoventilation" (p(et)CO(2)=45 mmHg). Before the operation and on days 1, 3 and 6 after the operation, a battery of neuropsychological tests was performed (concentration endurance test d2, number connection test, digit symbol test). A decline of 20% in at least one test was regarded as postoperative cognitive deficit (POCD). Anaesthesia was maintained with isoflurane in nitrous oxide/oxygen supplemented with fentanyl. RESULTS: In all patients pooled, POCD was present in 26 patients (22%). In patients older than 65 years, POCD was present in 3 cases after hyperventilation and 13 cases after normoventilation ( p<0.01). In younger subjects, 5 cases of POCD were diagnosed in each ventilation group. Furthermore, POCD was more severely pronounced in older patients after normoventilation. CONCLUSION: In older patients, POCD occurred more frequently after intraoperative normoventilation. We assume that a reduced amount of noxious substances reach the brain after hyperventilation, because hyperventilation reduces the cerebral blood flow.

Aged↗

Control of expired CO2 level and minute-ventilation during a hyperventilation challenge for asthmatics.

Hyperventilation of cold dry air initiates bronchospasm in most if not all asthmatics. The hyperventilation challenge is a useful means of studying asthma and the evaluation of anti-asthma drugs and treatments; two key elements of such a challenge are the means of achieving a target minute-ventilation and the maintainance of constant arterial CO2 levels during hyperventilation. The author describes a simple cold air eucapnic hyperventilation challenge which allows a subject to hyperventilate to a predetermined target minute-ventilation whilst maintaining a constant expired level of CO2.

Asthma↗

Prolonged postischemic hyperventilation reduces acute neuronal damage after 15 min of cardiac arrest in the dog.

Hyperventilation is commonly used as a constituent of antiedematous therapy after global cerebral ischemia. The effect of hyperventilation on brain functions, however, is complex, and a number of mechanisms involved remains unclear. In this study, we attempted to determine whether postischemic hyperventilation influences acute neuronal changes developing during recirculation. Two groups of dogs underwent 15 min of cardiac arrest and cardiopulmonary resuscitation with an 8 h survival. After resuscitation, in group A the internal environment was maintained in the physiological ranges. In group B the animals were artificially hyperventilated maintaining a high level of respiratory alkalosis during recirculation. Histopathological examination of the vulnerable structures was performed using the Nauta degenerating method and the argyrophilic neurons were counted. Statistically significant amelioration in group B suggests that postischemic hyperventilation may act as a neuroprotective factor.

Animals↗

Controlled hyperventilation in the prevention of cerebral oedema in fulminant hepatic failure.

Raised intracranial pressure due to cerebral oedema is a major cause of death in fulminant hepatic failure and in the present study we have carried out a controlled clinical trial of continuous hyperventilation in the prevention of this complication. Twenty patients were electively hyperventilated to maintain PaCO2 between 3.5 and 5 kPa. In the other 35 patients mechanical ventilation was instituted only if severe hypoxia or hypercapnia occurred. Cerebral oedema, diagnosed clinically or by a rise in intracranial pressure to greater than 30 mm Hg, occurred in 85% of hyperventilated patients and in 86% of those not so treated. Although there was no significant reduction in the number of episodes of cerebral oedema in the hyperventilated patients (4.8 episodes/24 h) as compared with the controls (5.3 episodes/24 h), hyperventilation did appear to delay the onset of coning but on the basis of these results could not be recommended to be used routinely as a prophylactic measure in the prevention of cerebral oedema in this condition.

Adolescent↗

Transcranial Doppler sonography and internal jugular bulb saturation during hyperventilation in patients with fulminant hepatic failure.

Mechanical hyperventilation is often used to postpone or ameliorate intracranial hypertension in patients with fulminant hepatic failure (FHF). Because such treatment may critically reduce cerebral blood flow (CBF), bedside techniques to monitor CBF are warranted. In this study, we evaluated the efficacy of transcranial Doppler (TCD) sonography of the middle cerebral artery (MCA) and internal jugular bulb saturation (svJO(2)) to determine relative changes in CBF during mechanical hyperventilation in 8 patients with FHF (median age, 40 years; range, 20 to 54 years). We found that TCD and svJO(2) decreased during hyperventilation in parallel with CBF, determined by the xenon 133 ((133)Xe) washout technique. Quantitatively, the TCD method was less accurate to determine carbon dioxide (CO(2)) reactivity compared with svJO(2) and the (133)Xe technique. This indicates a slight change in MCA diameter during hyperventilation. We conclude that TCD and svJO(2) monitoring may give valuable information on relative changes in CBF during hyperventilation. However, the TCD method appears less accurate for quantitative estimation of CO(2) reactivity in patients with FHF.

Adult↗

Hyperventilation and cold-pressor stress echocardiography for noninvasive diagnosis of coronary artery spasm.

We report the usefulness of 2-dimensional echocardiography during the cold-pressor test immediately after hyperventilation for noninvasive diagnosis of coronary vasospasm in 43 patients with suspected vasospastic angina. The stress test consisted of hyperventilation for 6 minutes, followed by cold water pressor stress for 2 minutes under continuous electrocardiographic and echocardiographic monitoring. Coronary angiography with an intracoronary injection of acetylcholine was performed within 2 weeks after the stress test. Coronary spasm was observed in 33 patients by angiography. Multivessel spasm was diagnosed in 26 patients by stress echocardiography and in 23 patients by angiography. The stress-induced wall motion abnormalities occurred earlier than the ST-segment changes and chest pain. The wall motion abnormalities shown on the echocardiogram correlated well with the vascular territories of the coronary artery that had the spasm. The sensitivity, specificity, and diagnostic accuracy of hyperventilation and cold-pressor stress echocardiography for detecting vasospastic angina against coronary angiography with an intracoronary injection of acetylcholine were 91%, 90%, and 91%, respectively. However, the sensitivity, specificity, and diagnostic accuracy of hyperventilation and cold-pressor stress electrocardiography for detecting vasospastic angina were 48%, 100%, and 60%, respectively. No major side effects were observed during or after the stress test. Echocardiographic monitoring during the stress test detected spasm unaccompanied by either ST- segment changes or chest pain and revealed the location of multivessel coronary spasm. Hyperventilation and cold-pressor stress echocardiography is thus a noninvasive and useful tool for the diagnosis of vasospastic angina.

Aged↗

Refractory period following induced asthma: contributions of exercise and isocapnic hyperventilation.

To compare the refractory period that follows exercise and isocapnic hyperventilation, 10 asthmatic children performed two pairs of challenge tests in random order at least six hours apart. In pair A a hyperventilation challenge was followed by an exercise challenge and in pair B the order was reversed. Both pairs of tests were done while the children were breathing cold dry air. Tests were matched in terms of work load, ventilation, and end tidal carbon dioxide tension (PCO2). The mean percentage fall in FEV1 (delta FEV1) after the first challenge (hyperventilation) of pair A and the first challenge (exercise) of pair B were the same (30% (SEM 2%)) and 30% (4%) respectively). The mean delta FEV1 of the exercise test following hyperventilation in pair A and of hyperventilation following exercise in pair B was 22% (4%) and 18% (4%) respectively. Both these latter results were significantly lower than the respective delta FEV1 when the challenge was the first test of the pair. Although the mean refractoriness index (reduction in induced asthma in the second test of each pair compared with the first test) was greater when exercise was the first challenge, the difference was not significant.

Adolescent↗

Use of neuroanesthesia adjuncts (hyperventilation and mannitol administration) improves neurological outcome after thoracic aortic cross-clamping in dogs.

BACKGROUND AND PURPOSE: Using a canine model of thoracic aortic cross-clamping, we compared the incidence and severity of paraplegia with and without standard neuroanesthesia adjuncts (mannitol administration and deliberate hyperventilation). Better outcome was predicted for animals treated with mannitol and hyperventilation. METHODS: Nineteen dogs (mean +/- SD weight, 21 +/- 3 kg) were anesthetized with methohexital to an isoelectric electroencephalogram. Animals were randomized to group C (control; n = 9) or group M (mannitol administration and deliberate hyperventilation; n = 10). In group C, animals were maintained normocapnic (PaCO2, 38 to 42 mm Hg). In group M, animals were hyperventilated to a PaCO2 of 28 to 32 mm Hg and received mannitol 2 g.kg-1 during surgical preparation, then 1 g.kg-1.h-1 by continuous infusion. The thoracic aorta was cross-clamped for 30 minutes. Systemic hemodynamics, cerebrospinal fluid pressure, and arterial blood gases were measured at (1) baseline, (2) 2 minutes after cross-clamp, (3) 20 minutes after cross-clamp, (4) 5 minutes after cross-clamp release, and (5) 30 minutes after resuscitation. No attempt was made to control the hemodynamic consequences of cross-clamping in either group. With release of the cross-clamp, PaCO2 was not controlled in group C; in group M the minute ventilation was further increased to maintain PaCO2 constant. At precisely 24 hours after cross-clamp the animals were assessed for incidence and severity of paraplegia, using the Tarlov score, by an observer unaware of the experimental protocol. The animals were killed, and the entire spinal cord was removed for histological assessment. Multiple sections of the lumbar spinal cord were processed and stained with hematoxylin and eosin. RESULTS: With application of the cross-clamp, cerebrospinal fluid pressure and central venous pressure increased significantly in both groups. However, in group M the maximal mean cerebrospinal fluid pressure never exceeded baseline values in group C. With cross-clamp release, spinal cord perfusion pressure (distal mean aortic pressure minus mean cerebrospinal fluid pressure) was significantly greater in group M (86 +/- 23 vs 65 +/- 17 mm Hg; P = .0017 between groups). Acid-base balance was better maintained in group M. The incidence and severity of paraplegia were significantly lower in group M (P = .043; Mann-Whitney rank-sums test, two-tailed). In this group 10 of 10 animals could walk and 4 of 10 had complete recovery. In group C 4 of 9 animals were paraplegic. There was a strong negative correlation between the Tarlov score and the ratio of dead to total anterior spinal cord neurons in the lumbar region as assessed by light microscopy (P = .0004; Spearman's rank test). CONCLUSIONS: We conclude that a protocol using standard neuroanesthesia adjuncts (mannitol administration and deliberate hyperventilation) is associated with improved neurological outcome after thoracic aortic cross-clamping of 30 minutes' duration in dogs anesthetized with methohexital.

Anesthesia↗

Lung injury and surfactant metabolism after hyperventilation of premature lambs.

We asked whether lung injury and surfactant metabolism differed in preterm lambs after a 1-h period of hyperventilation to P(CO2) values of 25-30 mm Hg. The lambs then were surfactant treated and conventionally ventilated (CV) or high-frequency oscillatory ventilated (HFOV) for an additional 1 or 8 h. The results were compared with lambs that were not hyperventilated or surfactant treated but were ventilated with CV or HFOV. The 1-h hyperventilation resulted in increased alveolar protein, increased recovery of intravascular [131I]albumin in the lungs, and an increase in tumor necrosis factor-alpha mRNA. There were no differences between CV or HFOV in alveolar or total lung recoveries of saturated phosphatidylcholine (Sat PC), tracer doses of [14C]Sat PC and [125I]surfactant protein-B, or in percent Sat PC in large aggregate surfactant in surfactant-treated lambs. The lambs not hyperventilated or treated with surfactant had lower large aggregate pools and lower recoveries of [14C]Sat PC and [125I]surfactant protein-B in total lungs than for the surfactant-treated lungs, but there were no differences between the CV and HFOV groups. Hyperventilation followed by surfactant treatment resulted in a mild injury, but the subsequent use of CV or HFOV did not result in differences in surfactant metabolism.

Animals↗