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Hyperventilation and attention: effects of hypocapnia on performance in a stroop task.

This study aimed to investigate the effect of hypocapnia on attentional performance. Hyperventilation, producing hypocapnia, is associated with physiological changes in the brain and with subjective symptoms of dizziness, concentration problems and derealization. In this study (N=42), we examined cognitive performance on a Stroop-like task, following either 3 min of hypocapnic or normocapnic overbreathing. Both overbreathing trials were run on separate days, each preceded by a baseline trial with the same task during normal breathing. More and other symptoms were reported after hypocapnia compared to normocapnia. Also, more errors were made and progressively slower reaction times (RT's) were observed during recovery from hypocapnia. These performance deficits were only found in participants characterized by apneas. The number of symptoms did not correlate with RT's or errors. The pattern of data suggested that hypoxia, as a result of apneas during recovery from hypocapnia, caused the cognitive performance deficit.

Adult↗

Hyperventilation-induced human cerebral magnetic fields non-invasively monitored by multichannel 'direct current' magnetoencephalography.

Self-paced hyperventilation (HV) induces slow cerebral magnetic field changes which were monitored and mapped continuously over 15 min using 49-channel DC-coupled ('direct current') magnetoencephalography (DC-MEG) based on a modulation technique. In nine/nine healthy subjects HV caused an increase (range: 1.1-6.2 pT) of the mean global DC-MEG field strength which slowly decayed after HV termination (mean time constant: 2 min). The complex HV-related field patterns were distinctly different from mainly dipolar somatosensory evoked field maps (N20m) in four/four subjects. Thus, current sources in the primary somatosensory cortex need not regularly dominate DC-field changes as had been previously considered. Rather, DC-MEG enabled the monitoring of a widely distributed HV-induced enhanced cortical excitability which may serve as model to study epileptic or post-anoxic cerebral hyperexcitability.

Adult↗

The roles of alcohol and alcohol expectancy in the dampening of responses to hyperventilation among high anxiety sensitive young adults.

Previous research suggests that high anxiety sensitivity (AS) young adults are particularly sensitive to alcohol's dampening effects on their responses to arousal-induction challenge [Alcohol.: Clin. Exp. Res. 24 (2000) 1656.]. This sensitivity to alcohol reward may place high AS individuals at increased risk for alcohol abuse. Over-and-above alcohol's pharmacological effects, tension-reduction expectancies might contribute to alcohol's reactivity-dampening effects in high-AS individuals. The present study examined the role of alcohol and alcohol expectancy factors by activating expectancies experimentally. Forty-eight high-AS young adults were randomly assigned to one of three beverage conditions: alcohol (pharmacology plus expectancy), placebo (expectancy only), and control (no pharmacology and no expectancy). Following beverage consumption and absorption, participants underwent a 3-min voluntary hyperventilation challenge. Replicating and extending previous findings, participants in the alcohol condition showed dampened affective and somatic responses to the challenge, and marginally dampened cognitive responses to the challenge, compared to both placebo and control participants. However, placebo participants did not display dampened responses to the challenge relative to control beverage condition participants. Additional analyses suggested that activation of tension-reduction expectancies might have contributed to an "inverse placebo" effect among high-AS participants administered placebo. Implications of the results for future research and for the prevention and treatment of alcohol problems among high-AS individuals are discussed.

Adult↗

Cerebral oxygenation and hemodynamics during hyperventilation and sleep in patients with Rett syndrome.

We continuously monitored changes in cerebral oxygenation and hemodynamics in the frontal lobes of six patients with Rett syndrome during the awake state, which is associated with hyperventilation (HV) and breath-holding (BH), and during sleep by near-infrared spectroscopy. We also monitored three adult volunteers during simulated episodes of HV and BH. In patients with Rett syndrome, the oxygenated hemoglobin (HbO2) and total hemoglobin (HbT) decreased significantly during HV and BH in the awake state compared with the sleep state. The HbO2 and HbT decreased gradually in adult volunteers in response to prolonged episodes of HV and BH. Further studies are required to investigate the relationship, if any, between the discovered continuous decreases in HbO2 and HbT during the awake state and the brain damage seen in patients with Rett syndrome.

Brain Chemistry↗

Estradiol supplementation suppresses hyperventilation-induced attacks in postmenopausal women with variant angina.

OBJECTIVES: We sought to examine whether estradiol (E2) supplementation suppresses anginal attacks in women with variant angina. BACKGROUND: Estrogen is known to improve endothelial function. Coronary spasm plays an important role in the pathogenesis of not only variant angina but also ischemic heart disease in general, and endothelial dysfunction seems to be involved in the pathogenesis of coronary spasm. METHODS: Fifteen postmenopausal women with variant angina (mean age 54.2 years) were given a hyperventilation (HV) test, a provocation test for coronary spasm, in the early morning of day 1 (baseline), day 3 (after 2-day transdermal E2 supplementation, 4 mg) and day 5 (after 2-day placebo administration). We measured the flow-mediated (endothelium-dependent) dilation (FMD) of the brachial artery with the ultrasound technique before each HV test. RESULTS: The anginal attacks with ST segment elevation were induced by HV in all patients on days 1 and 5. However, no attacks were induced on day 3. Supplementation with E2 augmented FMD (3.5 +/- 0.6*, 8.9 +/- 0.7 and 4.0 +/- 0.5* on days 1, 3 and 5, respectively; *p < 0.01 vs. day 3). The serum E2 levels on days 1, 3 and 5 were 22.7 +/- 2.8*, 96.2 +/- 9.2 and 30.7 +/- 7.1* pg/ml, respectively (*p < 0.01 vs. day 3). CONCLUSIONS: The present results demonstrated for the first time, to our knowledge, that E2 supplementation suppresses the HV-induced attacks in women with variant angina, in part because of the improvement of endothelial function.

Angina Pectoris, Variant↗

[Per- and post-operative gas exchange: isocapnic hyperventilation versus normoventilation].

The effects of isocapnic hyperventilation (A) and normoventilation (B) on PaCO2, PaO2 and A-aDO2 were compared in 102 patients undergoing elective surgery, randomized into two comparable groups A and B. Cases for thoracic, high abdominal and intracranial surgery were excluded, as well as patients with clinically evident pulmonary pathology. A volumetric ventilator was used in association with three different breathing systems (A: Bain system and circle system without CO2 absorption; B: circle system with CO2 absorption). The groups were comparable, except for percentage of overweight: 75% in group A and 56% in group B. Overweight was defined as weight above the mean ideal weight of 100%, and obesity as a weight above 120% the mean ideal weight. Blood gases were sampled 1) preoperatively, 2) 15 min and 3) 60 min after the beginning of mechanical ventilation, 4) postoperatively, 90 min after extubation, without supplemental oxygen. The preoperative mean PaO2 values were 79 +/- 11.4 mmHg (A) and 82.5 +/- 13.2 mmHg (B); the PaCO2 were 37.2 +/- 3.7 mmHg (A) and 37.2 +/- 3.8 mmHg (B). During surgery, PaO2 was distinctly higher (p less than 0.01) in group A than in group B (on average 15-20 mmHg higher), indicating the favourable effect of great tidal volumes on gas exchange. Correspondingly, the A-aDO2 was less increased in group A than in group B (p less than 0.01). At 15 min, 33% of the patients were hypocapnic (PaCO2 less than 35 mmHg): one case in group A and three in group B could be classed as severe hypocapnia (PaCO2 = 25-30 mmHg).(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Gas Analysis↗

Central hyperventilation related to administration of topiramate.

Topiramate is a recently released antiepileptic agent used in the treatment of patients with refractory seizure disorders. In addition to its antiepileptogenic activities, it results in inhibition of carbonic anhydrase isoenzymes II and IV, which are present in the central nervous system. A 15-year-old female who presented with hyperpnea and primary respiratory alkalosis is reported. Other possible etiologies of the central hyperventilation syndrome were excluded. The problem resolved within 24 hours after discontinuing topiramate.

Adolescent↗

Correlation between cerebral perfusion and hyperventilation enhanced focal spiking activity.

Single photon emission computed tomography (SPECT) has frequently been used to investigate cerebral brain perfusion (CBP) occurring ictally and inter-ictally in epileptic patients. Several studies have addressed the multimodal analysis of the modifications occurring in cerebral areas involved in seizure activity, by correlating SPECT with electroencephalografic (EEG) recordings during ictal and inter-ictal epileptiform lateralized discharges (IELDs). Although these studies have yielded interesting results, variations in regional CBP (rCBP) observed during ictal events are difficult to interpret since the areas of altered rCBP might reflect not only events restricted to the epileptogenic focus, but also large fluctuations determined by seizure spread. Inter-ictal rCBP correlates with the area generating the local EEG epileptogenic activity in a limited percentage of studies. Hyperventilation (HPV) represents a well established EEG activation procedure aimed at enhancing epileptiform discharges. Since HPV-enhanced IELDs may help analyze the CBP pathophysiology in inter-ictal epilepsy, in the present study we investigate this specific aspect co-registering EEG with SPECT in subjects affected by partial epilepsy responding to HPV with IELD enhancement without seizure precipitation. This study suggests a correlation between localized increase in rCBP and HPV-induced IELDs and provides a tool to discuss uncommon aspects of the physiology of rCBP during the inter-ictal state in the epileptogenic areas.

Action Potentials↗

Brain diffusion during hyperventilation: diffusion-weighted MR-monitoring in patients with temporal lobe epilepsy and in healthy volunteers.

Hyperventilation (HV) can be used to provoke epileptiform activity and occasionally seizures in generalised and in focal epilepsies. Based on the hypothesis that HV might alter brain diffusion in the epileptogenic areas of patients with temporal lobe epilepsy (TLE), we examined these alterations using quantitative diffusion MR imaging (DI) in four patients with TLE and unilateral hippocampal sclerosis (TLE-HS) and six patients with TLE without hippocampal sclerosis (TLE-pure), and in 10 healthy volunteers. Brain diffusion was measured at baseline and immediately after 4 min of HV. In all patients with TLE HV was repeated two times, 4 min each, followed by subsequent DI. The apparent diffusion coefficient (ADC) was quantified in predefined regions of interest. In controls, the ADC did not differ between baseline and HV and between right and left side. Compared to controls TLE-HS patients showed significantly higher ADC at baseline in the hippocampus of the ictogenic side (111+/-13 vs. 87.5+/-4.26 x 10(-5) mm(2)/s, P=0.029). During HV ADC decreased significantly in the ictogenic hippocampus compared to controls (-17.3+/-7.1 vs. -3.34+/-8.7, P=0.004). In TLE-pure patients ADC of the ictogenic hippocampus was higher than in normals (99.3+/-14.2 vs. 87.5+/-4.26 x 10(-5) mm(2)/s, P=0.031) but there was no significant decrease during HV. Serial HV did not further enhance this decrease. No significant HV-induced changes were seen in other brain areas. In conclusion, our results show that HV can induce dynamic changes of brain diffusion in patients with sclerotic hippocampi but not in non-sclerotic hippocampi. These findings may be utilized for lateralisation of the epileptogenic hippocampus during presurgical evaluation of TLE.

Adult↗

The diagnostic value of cold air hyperventilation in adults with suspected asthma.

The diagnostic value of isocapnic hyperventilation of cold air (IHCA) is not fully established. All 342 adult patients in whom IHCA had been performed because of a clinical suspicion of asthma between 1992 and 1994 were analysed retrospectively in the authors' hospital. In addition, 26 healthy subjects were recruited. According to strict criteria, the patients were divided into asthmatics and symptomatic non-asthmatics. For the calculations of sensitivity, specificity and accuracy, the symptomatic non-asthmatic group served as a control. The post-test probability of asthma after IHCA was determined for all the possible pre-test probabilities by applying Bayes' theorem. A linear regression model was used to investigate the factors associated with the reactivity to IHCA. A single 4-min IHCA and skin prick tests were performed in the healthy subjects. Of the 287 patients in the final analysis, 113 were defined as asthmatics and 174 as symptomatic non-asthmatics. The accuracy was highest using a 9.0% fall in forced expiratory volume in 1 s (FEV1) as a cut-off value; the specificity was then 86.8% and the sensitivity 31.9%. The authors found IHCA to be a useful diagnostic test only if the pre-test probability of asthma is between 0.30 and 0.56. The positive final diagnostic gain of IHCA is 22% at its best, but the negative gain is negligible for all possible pre-test probabilities. Factors associated with reactivity to IHCA were young age and, to a lesser extent, a history of cold-weather-associated respiratory symptoms and pre-challenge bronchial obstruction. If a rigid cut-off value for a positive response is used in all age groups, the specificity of IHCA is good but the sensitivity is unacceptably low in adults. The diagnostic value of IHCA might increase if age is taken into account when defining the cut-off value.

Adult↗

Hyperventilation and the body.

Hyperventilation has rapid and far-ranging physiological effects via its alteration of pH and depletion of CO2 in the body, resulting in respiratory alkalosis, acute or chronic. The general effects on skeletal and smooth muscles, as well as neural tissue, are summarized. A wide variety of symptoms such as pain, tension, disturbances of consciousness, circulatory problems and cardiovascular effects can confound treatment efforts but may respond to alterations of breathing patterns. Suggestions are given for detecting this condition.

Acute Disease↗

Exercise-induced hyperventilation: a pseudoasthma syndrome.

BACKGROUND: Exercise-induced asthma is common and generally responds well to an inhaled beta2 agonist. OBJECTIVE: We examined the physiologic changes in airflow and gas exchange that occurred during standardized treadmill exercise in patients previously diagnosed with exercise-induced asthma whose histories appeared atypical or where conventional treatment, including an inhaled beta2 agonist, was ineffective. METHODS: During a 1-year period 32 patients, aged 8 to 18, met these criteria. All had been previously diagnosed as having exercise-induced asthma. Exercise consisted of treadmill running at a time when the patients had received no inhaled beta2 agonist, cromolyn, or nedocromil for at least 4 hours. Spirometry was done before and at 2, 5, 10, and 15 minutes after exercise; oxygen saturation was monitored by pulse oximetry; and end-tidal CO2 was monitored with nasal cannula. RESULTS: Despite their previous diagnoses of exercise-induced asthma, 11 patients who described chest tightness during exercise had decreases in FEV1 less than 15% with all but one of those less than 10% (mean decrease 5.6%) but demonstrated decreases in end-tidal CO2 greater than in all of the other 21 patients (mean 23.2 versus 9.8%, P < .01). Only 4 patients had unequivocal evidence for bronchospasm with cough and wheezing accompanying chest tightness in association with decreases in FEV1 from 18 to 22%. Seventeen patients had neither their symptoms reproduced nor physiologic abnormalities. CONCLUSIONS: These data show that chest discomfort perceived as dyspnea during vigorous exercise may be associated with hypocapnia from hyperventilation without bronchospasm in children and adolescents previously misdiagnosed and treated as having exercise-induced asthma.

Adolescent↗

Response to hyperventilation and inhalation of 5.5% carbon dioxide-enriched air across the DSM-III-R anxiety disorders.

Anxiety disorder patients (n = 198; under criteria of the Diagnostic and Statistical Manual of Mental Disorders; rev. 3rd ed.; American Psychiatric Association, 1987) and nonanxious control subjects (n = 25) underwent challenges of 90 s of voluntary hyperventilation and 15 min of 5.5% carbon dioxide in air. Panic disorder subjects showed a greater subjective response to both challenges than did subjects with other anxiety disorders, who in turn responded more than did control subjects. Furthermore, subjects with panic disorder as an additional diagnosis tended to report more subjective response than did anxiety disorder subjects without panic disorder. The best prechallenge predictor of response to each procedure was a measure of fear of physical symptoms. The findings support previous results that have pointed to a greater fear or anxiety-inducing effect of these challenge procedures in panic disorder patients, as compared with other subjects.

Adult↗

Comment on Holloway and McNally's (1987) "Effects of Anxiety Sensitivity on the Response to Hyperventilation".

Holloway and McNally (1987) found that normals with high scores on the Anxiety Sensitivity Index (ASI), an instrument developed to assess beliefs regarding the adverse consequences of anxiety, reported more anxiety and more frequent and intense somatic sensations following hyperventilation than did normals with low scores on the ASI. They concluded that this result provides support for the construct validity of the ASI and thus for the construct of anxiety sensitivity. Nevertheless, we argue that (a) the developers of the ASI have conflated beliefs regarding the adverse consequences of anxiety with fear of these consequences, (b) the accumulated evidence for the construct validity of the ASI is weak, and (c) Holloway and McNally's design and analyses do not permit them to exclude the more parsimonious explanation that trait anxiety accounts for their findings. Implications for research on anxiety sensitivity are discussed.

Anxiety↗

Hyperventilation and amplified blood pressure response: is there a link?

Based on prior studies, the hypothesis that hyperventilation (HV) may have a pressor effect and play a causal role in hypertension has been suggested. The objective of this study was to correlate HV with blood pressure (BP)-change during a postural challenge. Consecutive subjects referred for evaluation of syncope, dizziness, chronic fatigue syndrome (CFS), fibromyalgia, or non-CFS fatigue were assessed with a 10-min supine 30-min head-up tilt test combined with capnography. We selected for analysis the records of patients aged 17-70 years, not taking vasoactive medications, having sitting systolic BP (SBP) < 140 mmHg, sitting diastolic BP (DBP) < 90 mmHg, and who completed 30 min of tilt. HV was diagnosed when end-tidal pressure of CO2 < 30 mmHg was recorded consecutively for > or = 10 min. Postural hypertension (PHT) was diagnosed when DBP on tilt > or = 90 mmHg was recorded consecutively for > or = 10 min. DBP-change was computed as (median DBP on tilt) -(median DBP supine). PHT and DBP-change were correlated with HV. A total of 320 patient charts were reviewed. PHT was present in 30 cases. The mean DBP-change in patients with PHT was +9.9 mmHg (s.d. 5.8), with three patients manifesting HV. Of the remaining 290 patients, 56 had HV, their mean DBP-change was -0.3 mmHg (s.d. 7.2). The other 234 patients without HV had a mean DBP-change +0.95 mmHg (s.d. 5.7), comparable to the DBP-change in patients with HV. In, conclusion, posturally induced HV was not associated with an increase in BP, nor was PHT associated with HV, except in a small minority of cases.

Adolescent↗

Voluntary isocapnic hyperventilation and breathlessness during exercise in normal subjects.

1. Nine normal subjects performed 6 min, constant-workload, exercise tests on a bicycle ergometer at either a 'high workload' or at a 'low workload'. During the first 'high workload' test their spontaneous breathing pattern was recorded on to magnetic tape. During one subsequent 'high workload' test and one 'low workload' test they voluntarily copied their recorded breathing pattern. During a second 'low workload' test they breathed spontaneously. Isocapnia was maintained by the operator throughout both the copying tests. During the exercise tests ventilation was recorded and subjects indicated the level of their sensation of breathlessness every 30 s. 2. Subjects felt markedly less breathless when a proportion of their ventilation was produced by voluntary effort than when the same total level of ventilation was produced entirely by the stimulus of exercise. Furthermore, voluntary isocapnic hyperventilation during exercise did not increase breathlessness above that normally associated with that level of exercise. 3. These results suggest that it is reflexly driven ventilation, and not simply the level of ventilation itself, which relates to the level of breathlessness during exercise.

Adult↗

Dyspnoea and hyperventilation induced by synthetic progesterone chlorpromadinone acetate for the treatment of prostatic hypertrophy.

We describe a 74-year-old patient with dyspnoea and tachypnoea induced by chlorpromadinone acetate, a synthetic progesterone used to treat prostatic hyperplasia. The dyspnoea, tachypnoea and hypocapnia improved after discontinuing the chlorpromadinone acetate. It is important to recognize that synthetic progesterones can cause dyspnoea and hyperventilation.

Acetates↗

Increased cerebrovascular pCO2 reactivity in migraine with aura--a transcranial Doppler study during hyperventilation.

Cerebrovascular reactivity during hypocapnia was tested in 20 migraineurs (8 with aura, 12 without aura) and 30 sex- and age-matched healthy subjects, and during nitroglycerin-induced headache in 12 healthy subjects. Before and during hyperventilation, mean blood-flow velocity (Vmean) in the middle cerebral artery was measured with transcranial Doppler. In each subject a pCO2 reactivity index (RI) was calculated as (delta Vmean/baseline Vmean)/delta pCO2. Interictally, patients with migraine with aura showed higher RI (p < 0.05 ANOVA and multiple range test) than controls, whereas migraineurs without aura did not differ from healthy subjects. Ictal and interictal RIs were similar in 9 patients suffering from migraine without aura. No side-to-side differences were detected in RI. During nitroglycerin-induced headache, the RIs were no different from those recorded during migraine attacks and in non-nitroglycerin-provoked healthy controls (p > 0.05, ANOVA and multiple range test). The exaggerated response in migraine with aura might predispose for the characteristic changes in rCBF seen during attacks.

Adult↗