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The critical period of non-reassuring fetal heart rate patterns in preterm gestation.

OBJECTIVE: Our purpose was to determine the critical period for non-reassuring fetal heart rate (FHR) patterns in preterm gestation in predicting fetal acidosis (umbilical arterial pH <7.1) at birth. STUDY DESIGN: A prospective descriptive study was performed. We reviewed the FHR pattern and umbilical blood gas level measurements, and investigated the correlations between non-reassuring FHR patterns and umbilical arterial pH. RESULTS: There was a significant difference in the frequency of fetal acidosis between the neonatal death and survival groups (5/13 versus 30/759, P=0.0001). Umbilical pH values in fetuses with persistent late deceleration with loss of variability (7.15+/-0.11, P<0.01) and in those with prolonged deceleration (7.17+/-0.16, P<0.01) were significantly lower than in fetuses with reassuring FHR patterns (7.29+/-0.06). Fetal acidosis also occurred more often in these two groups. The critical periods for late deceleration with loss of variability and for prolonged deceleration were 60 and 30 min, respectively. CONCLUSION: These data indicate that a critical period for non-reassuring FHR patterns in preterm gestation exists. Prompt delivery is required within that short critical period.

Acidosis↗

Age-related changes in axonal transport.

In rats the rate of axonal transport (AT) or radiolabeled material decreased in the ventral roots of the spinal cord and the vagal and hypoglossal nerves with aging. A maximum AT deceleration in old age was observed in the vagus. The uncoupling of oxidative phosphorylation, inhibition of glycolysis and hypoxia induced a greater AT deceleration in old rats as compared to adults. Small doses of sodium fluoride accelerated AT, and this correlated with a rise in cAMP levels in ventral roots. High doses of sodium fluoride decelerated AT more markedly in old rats. It was shown that anabolic hormones (sex steroids and thyroxine) accelerated AT in both adult and old rats, whereas insulin induced a rise in AT rate in only adults. The catabolic steroid, hydrocortisone decelerated AT. In old rats castration diminished AT, while thyroidectomy had no effect. It was also shown that hydrocortisone and testosterone were transported along axons, reached fibers of the skeletal muscles, and hyperpolarized the plasma membrane. In old age the latent period was extended. Following 73 to 74 days of irradiation, AT slowed down in all the nerves studied in both adult and old rats. Following irradiation hormonal effects on AT changed, for example, the stimulatory effect of estradiol became weak, especially in old rats. Changes in AT could be an important mechanism of disordering the growth of neurons and innervated cells in old age.

Aging↗

Estimating mean pulmonary wedge pressure in patients with chronic atrial fibrillation from transthoracic Doppler indexes of mitral and pulmonary venous flow velocity.

OBJECTIVES: We sought to obtain a noninvasive estimation of mean pulmonary wedge pressure (MPWP) in patients with chronic atrial fibrillation (AF). BACKGROUND: It has previously been demonstrated that MPWP can be reliably estimated from Doppler indexes of mitral and pulmonary venous flow (PVF) in patients with sinus rhythm. Doppler estimation of MPWP has not been validated in patients with AF. METHODS: MPWP was correlated with variables of mitral and pulmonary venous flow velocity as assessed by Doppler transthoracic echocardiography in 35 consecutive patients. The derived algorithm was prospectively tested in 23 additional patients. RESULTS: In all patients the mitral flow pattern showed only a diastolic forward component. A significant but relatively weak correlation (r = -0.50) was observed between MPWP and mitral deceleration time. In 12 (34%) of 35 patients, the pulmonary vein flow tracing demonstrated only a diastolic forward component; a diastolic and late systolic forward flow was noted in the remaining 23 patients (66%). A strong negative correlation was observed between MPWP and the normalized duration of the diastolic flow (r = -0.80) and its initial deceleration slope time (r = -0.91). Deceleration time > 220 ms predicted MPWP < or = 12 mm Hg with 100% sensitivity and 100% specificity. When estimating MPWP by using the equation MPWP = -94.261 PVF deceleration time -9.831 Interval QRS to onset of diastolic PVF -16.337 Duration of PVF + 44.261, the measured and predicted MPWP closely agreed with a mean difference of -0.85 mm Hg. The 95% confidence limits were 4.8 and -6.1 mm Hg. CONCLUSIONS: In patients with chronic AF, MPWP can be estimated from transthoracic Doppler study of PVF velocity signals.

Age Factors↗

What is the validity of continuous wave Doppler grading of aortic regurgitation severity? A chronic animal model study.

Continuous wave Doppler methods have been widely used clinically for evaluating the severity of aortic regurgitation; however, there have been no studies comparing these continuous wave Doppler methods with a strictly quantifiable reference for regurgitant severity. The purpose of this study was to test the applicability of continuous wave Doppler methods (deceleration slope and pressure half-time) for evaluation of chronic aortic regurgitation in an animal model. Eight sheep were studied 8 to 20 weeks after surgery to create chronic aortic regurgitation. Twenty-nine hemodynamically different states were obtained pharmacologically. A Vingmed 775 system was used for recording continuous wave Doppler traces with a 5 MHz annular array transducer directly placed on the heart near the apex. The aortic regurgitation was quantified as peak and mean regurgitant flow rates, regurgitant stroke volumes and regurgitant fractions determined with pulmonary and aortic electromagnetic flow probes and meters balanced against each other. Peak regurgitant flow rates varied from 1.8 to 13.6 L/min (6.3 +/- 3.2 L/min) (mean +/- SD), mean regurgitant flow rates varied from 0.7 to 4.9 L/min (2.7 +/- 1.3 L/min), regurgitant stroke volume varied from 7.0 to 48.0 ml/beat (26.9 +/- 12.2 ml/beat), and regurgitant fraction varied from 23% to 78% (53% +/- 16%). Only marginal correlations were obtained between reference indexes and continuous wave Doppler deceleration slope and pressure half-time (r = 0.55 to 0.74). A deceleration slope greater than 3 m/sec2 and pressure half-time less than 400 msec did, however, provide 100% specificity for detecting severe AR (regurgitant fraction > 50%). Our study shows that the continuous wave Doppler deceleration slope and pressure half-time methods have limited use for quantifying aortic regurgitation.

Animals↗

Abnormal antepartum fetal heart rate patterns and subsequent handicap.

In this paper data on abnormal antepartum FHR patterns are related to the state of fetal oxygenation, fetal brain abnormalities and to neurological outcome. It is concluded that in IUGR fetuses changes in heart rate (and movement) patterns are late signs of impairment. Antepartum heart rate decelerations are usually the first of the abnormalities detected and are associated with fetal hypoxaemia. A fixed or flat FHR pattern might be indicative of congenital malformations of the brain or of prenatally acquired encephalopathy. Several studies have shown that antepartum FHR abnormalities (usually late decelerations) are associated with an increased risk of subsequent handicap. This risk is related to the degree of FHR abnormality, and especially applies to infants born preterm and/or growth-retarded. Late (ante partum) FHR decelerations seem to be more important than 'asphyxia' at birth in determining (neonatal) neurological outcome. In IUGR hypoxaemia is probably associated with deprivation of other nutrients, and thus brain damage in these infants is more likely to be due to chronic malnutrition (including hypoxaemia) than to hypoxaemia alone. This reasoning is supported by morphological findings in IUGR infants. In general fetuses should be delivered before antepartum signs of hypoxaemia appear. Doppler blood--velocity waveform analyses of fetal vessels may detect fetuses at risk for antepartum decelerations, but until now there has been insufficient information about false-positive abnormal velocity waveforms to depend absolutely on these. Furthermore, delivery at an earlier age may increase the risk of other neonatal complications.

Brain↗

Cerebral handicap in full-term neonates related to the mechanical forces of labour.

Sometimes the relationship between peripartum events and neonatal CNS injury is obvious: for example, following complete abruptio placentae or umbilical cord prolapse and occlusion with a delay of many minutes before delivery of the baby. These circumstances are, of course, rare in modern obstetrics. Usually, when a neonate develops neurological injury, a host of various potentially adverse peripartum factors are assumed to be the aetiology, but without definitive evidence. Among these latter factors are those we have focused on in this paper: the mechanical forces exerted on the fetal head during labour when the full-term fetus is in cephalic presentation. The mechanical events during the first stage of labour are reviewed, showing how uterine contractions result in cervical dilatation and descent and rotation of the fetal head. The consequences of these forces on the fetal intracranial pressure and blood flow are discussed: FHR remains normal up to a certain pressure threshold, above which decelerations occur. In other words, excessive pressures applied to the fetal head, either spontaneously (e.g. uterine tetany) or iatrogenically (e.g. traumatic forceps delivery or excessive fundal pressure) can increase fetal intracranial pressure to such a degree as to result in significant decreases in cerebral blood flow that are associated with fetal heart rate decelerations. Even when decelerations are simultaneous to contractions, decelerations cannot be considered as reflex and innocuous, as they are indeed associated with a decreasing cerebral blood flow. They must therefore be considered and evaluated in the management of labour. Cord compression and functional modifications of intervillous space by mechanical forces may further compromise the biological status of the fetus, leading to severe asphyxia. Neurological evaluation of the neonate within the first few days after delivery is currently the only way to provide the obstetricians with information on the possible consequences of an abnormal labour. The assessment of normality of the CNS in the neonate born at term, and its value in predicting late outcome are discussed. When abnormalities are detected after one or repeated assessments, abnormal neurological signs and symptoms are classified into three grades at the end of the first week. According to our data, a good correlation exists between this neonatal grading of cerebral dysfunction and late outcome. A careful evaluation of fetal head deformation, extensive caput succedaneum, and extensive retinal haemorrhages can help to interpret an abnormal labour retrospectively.(ABSTRACT TRUNCATED AT 400 WORDS)

Asphyxia Neonatorum↗

Muscle force redistributes segmental power for body progression during walking.

The ankle plantar flexors were previously shown to support the body in single-leg stance to ensure its forward progression [J. Biomech. 34 (2001) 1387]. The uni- (SOL) and biarticular (GAS) plantar flexors accelerated the trunk and leg forward, respectively, with each opposing the effect of the other. Around mid-stance their net effect on the trunk and the leg was negligible, consistent with the body acting as an inverted pendulum. In late stance, their net effect was to accelerate the leg and trunk forward, consistent with an active push-off. Because other muscles are active in the beginning and end of stance, we hypothesized that their active concentric and eccentric force generation also supports the body and redistributes segmental power to enable body forward progression. Muscle-actuated forward dynamical simulations that emulated observed walking kinematics and kinetics of young adult subjects were analyzed to quantify muscle contributions to the vertical and horizontal ground reaction force, and to the acceleration and mechanical power of the leg and trunk. The eccentric uniarticular knee extensors (vasti, VAS) and concentric uniarticular hip extensors (gluteus maximus, GMAX) were found to provide critical support to the body in the beginning of stance, before the plantar flexors became active. VAS also decelerated the forward motion of both the trunk and the leg. Afterwards when VAS shortens in mid-stance, it delivered the power produced to accelerate the trunk and also redistributed segmental power to the trunk by continuing to decelerate the leg. When present, rectus femoris (RF) activity in the beginning of stance had a minimal effect. But in late stance the lengthening RF accelerated the knee and hip into extension, which opposed swing initiation. Though RF was lengthening, it still accelerated the trunk forward by decelerating the leg and redistributing the leg segmental power to the trunk, as SOL does though it is shortening instead of lengthening. Force developed from highly stretched passive hip structures and active force produced by the uniarticular hip flexors assisted GAS in swing initiation. Hamstrings (HAM) decelerated the leg in late swing while lengthening and accelerated the leg in the beginning of stance while shortening. We conclude that the uniarticular knee and hip extensor muscles are critical to body support in the beginning of stance and redistribution of segmental power by muscles throughout the gait cycle is critical to forward progression of the trunk and legs.

Computer Simulation↗

Changes in left ventricular filling during follow-up study in survivors and nonsurvivors of idiopathic dilated cardiomyopathy.

The assessment of left ventricular diastolic function by Doppler echocardiography shows both a nonrestrictive and restrictive type of filling in idiopathic dilated cardiomyopathy. These different filling patterns are related to the symptoms of cardiac failure and the prognosis. It remains to be established whether changes of Doppler parameters during follow-up procedures were of clinical relevance. Doppler echocardiography of left ventricular filling was done in 45 patients with idiopathic dilated cardiomyopathy at the time of their diagnosis and repeatedly during a follow-up study of 38 +/- 19 months. The deceleration time of early filling, the maximum early and atrial Doppler velocities and their ratios, as well as echocardiographic parameters of cardiac dimensions and systolic function, were measured. During the follow-up period, seven patients died and four patients underwent heart transplantation because of progressive heart failure. The deceleration time was shorter in patients who died or had to undergo heart transplantation as compared with survivors (119 +/- 43 ms vs 188 +/- 63 ms; P < .005). There was no difference in changes of clinical symptoms in survivors and nonsurvivors. The systolic function improved only in survivors. The difference in deceleration time remained significant between both groups, and it also remained a prognostic discriminator. Peak early velocity increased in nonsurvivors (from 0.66 +/- 0.20 m/s to 0.95 +/- 0.21 m/s; P < .01), while it remained constant in survivors (0.65 +/- 0.17 m/s and 0.67 +/- 0.25 m/s). The peak early/atrial velocity ratio varied widely in either group during the follow-up study, its changes were closely related to the concomitant changes of clinical symptoms (r = .59; P < .005) with a decrease of the peak early/atrial velocity ratio in patients with clinical improvement and an increase of the peak early/atrial velocity ratio in those without clinical improvement. The Doppler echocardiographic deceleration time discriminated between survivors and nonsurvivors in idiopathic dilated cardiomyopathy at the time of the initial diagnostic procedure, and this difference was persistent during the follow-up study. The serial evaluation of patients with idiopathic dilated cardiomyopathy showed a close association of changes in diastolic filling with changes in clinical symptoms.

Blood Flow Velocity↗

Gompertz pharmacokinetic model for drug disposition.

PURPOSE: Disposition of drugs among compartments of the body usually occurs at changing rates that are commonly modeled as sums of exponential terms with different rate constants. This paper describes an alternative. Gompertz kinetics, in which the rates can change systematically. METHODS: Differential equations were developed and solved that fit typical examples taken from the literature. The three or four constants required for a visually satisfactory fit to data could readily be found by successive adjustment "by hand," but strategies and results are presented for computer fitting of the data. RESULTS: In four examples, the amount remaining in the blood decreases as an exponentially declining fraction of the amount present at any moment, but the antecedent processes responsible for that amount differ as follows: (a) In simple i.v. disposition (e.g., lidocaine) concentration falls as a decelerated exponential decay. (b) Delayed i.v. disposition (e.g., hexobarbital) requires, as well, a decelerated exponential growth function. (c) In simple disposition after oral administration, the concentration in the blood initially increases at a decelerating rate. (d) In biphasic oral disposition (e.g., Li+ carbonate), the initial Gompertz growth is followed by decelerated exponential decay. CONCLUSIONS: Gompertz kinetics provides an accurate and parsimonious mathematical model describing drug disposition.

Administration, Oral↗

Effects of aging on planning and implementing arm movements.

In Experiments 1 and 2, aiming movements were performed with and without visual feedback in young and elderly adults. The initial (acceleration and deceleration phases) and secondary movement components were analyzed. Although deceleration phase accuracy decreased without visual feedback in both age groups, accuracy diminished as movement amplitude increased only in the elderly. This suggested that the elderly were more dependent on visual feedback to modify motor programs for longer duration movements. Velocity also increased less with increasing amplitude and target size in the elderly, which was related to impaired preprogramming (acceleration phase) and implementation (deceleration phase) of higher forces. This conclusion was confirmed directly in Experiment 2 because only the deceleration phase was affected by the removal of visual feedback of arm position when availability of visual information could not be predicted before movement.

Adult↗

Dye-determined amniotic fluid volume and intrapartum/neonatal outcome.

OBJECTIVE: To ascertain if a dye-determined amniotic fluid volume was predictive of intrapartum and perinatal outcome. MATERIALS AND METHODS: The low and normal amniotic fluid volumes (< 5th percentile and > or =5th percentile for gestational age) and the raw dye-determined amniotic fluid distributions were correlated with 10 clinical outcome measures in 74 pregnancies. RESULTS: In this observational study, median gestational age at delivery was 36 weeks (range 26 to 41) and 16 deliveries were for fetal distress (14 Cesarean and two forceps). There were no differences between the outcomes of pregnancies with low and normal amniotic fluid volumes for any of the clinical outcomes (variable decelerations influencing delivery, p=0.381; late decelerations, p=0.875; Cesarean births for fetal intolerance of labor, p=0.259; intrauterine growth restriction, p=0.998; or umbilical cord arterial pH< 7.2, p=0.259). Analogous results were obtained when the gestational age-adjusted amniotic fluid volumes were compared directly between the pregnancies with normal and abnormal outcomes. There was no difference between the mean amniotic fluid volumes in those pregnancies with variable decelerations influencing delivery (p=0.287), late decelerations (p=0.555), Cesarean births for fetal intolerance of labor (p=0.310), intrauterine growth restriction (p=0.267) or umbilical cord arterial pH< 7.2, and the pregnancies without these intrapartum events. Reduced variability was more commonly observed in pregnancies with higher amniotic fluid volumes (p=0.038, 771 ml, 95% CI 468 to 1269, compared to those without normal variability 444 ml, 95% CI 374 to 526). CONCLUSIONS: Dye-determined amniotic fluid volume does not appear to be predictive of adverse intrapartum and neonatal outcome.

Adolescent↗

Adverse effects of hypoxaemia on diastolic filling in humans.

1. Abnormalities of myocardial relaxation may occur as a consequence of myocyte hypoxia. We have therefore examined the effects of hypoxaemia on right and left ventricular diastolic function in 10 healthy male subjects. 2. After resting to reach baseline haemodynamics, subjects were rendered hypoxaemic by breathing a variable nitrogen/oxygen mixture. Oxygen saturation (SaO2) was maintained at 85-90% for 20 min and then at 75-80% for a further 20 min. Haemodynamic and diastolic filling parameters were measured noninvasively at baseline and at the end of each period of hypoxaemia. 3. Diastolic filling of both ventricles was significantly impaired by hypoxaemia. In comparison with baseline, left ventricular isovolumic relaxation time and transmitral E-wave deceleration time corrected for heart rate were significantly prolonged at SaO2 75-80%: mean difference in corrected relaxation time, 9.8 ms (95% confidence interval 1-19); mean difference in corrected deceleration time, 34 ms (95% confidence interval 11-56). Similarly, right ventricular isovolumic relaxation time and transtricuspid E-wave deceleration time were significantly prolonged at SaO2 values of 75-80% compared with baseline: mean difference in relaxation time, 20.3 ms (95% confidence interval 3-38); mean difference in deceleration time, 33 ms (95% confidence interval 11-55). 4. During hypoxaemia there were dose-related increases in heart rate, cardiac output and mean pulmonary artery pressure, but no effects on mean arterial pressure. 5. Hypoxaemia significantly impairs relaxation of left and right ventricles in normal humans. These changes may reflect impairment of intracellular calcium transport secondary to the effects of myocyte hypoxia.

Adult↗

Assessment of the left ventricular diastolic reserve in essential hypertension: the acute saline load test.

OBJECTIVE: The aim of this study was to evaluate the significance of the development of a restrictive response to an acute saline load, defined as an increase in the ratio of peak early to peak late diastolic transmitral flow velocity (E/A ratio) associated with a decrease in the deceleration time, in patients with mild to moderate untreated hypertension. BACKGROUND: Recognised abnormal patterns of transmitral diastolic flow include, from 'best' to 'worst': prolonged relaxation, pseudonormalisation, and restrictive physiology. The common denominator of these transitions is the constellation of an increase in the E/A ratio associated with a decrease in deceleration time. PATIENTS AND METHODS: Sixteen normal control subjects (6 males, 10 females, age 51.6 +/- 6.9 years) and 24 patients with mild to moderate untreated hypertension (12 males, 12 females, age 46.8 +/- 7.5 years) underwent supine blood pressure measurement with sphygmomanometry, biochemical studies, and transthoracic M-mode, 2D, and Doppler echocardiography before and after an acute saline load (7 mL kg(-1), maximum 500 mL, NaCl 0.9% within 15 min IV). RESULTS: The baseline E/A ratio was lower (0.90 +/- 0.14 vs. 1.04 +/- 0.18; P < 0.01) and the deceleration time was longer (158.8 +/- 19.4 vs. 135 +/- 8.9 ms; P < 0.01) in patients with hypertension compared with normotensive controls. However, no patient with hypertension exhibited a transmitral flow velocity pattern compatible with typical prolonged relaxation. A restrictive response to the acute saline load was observed in 12 (50%) of the hypertensive and none of the control subjects. Hypertensive patients with a restrictive response to the acute saline load had a lower baseline E velocity (54.8 +/- 8.7 cm s(-1) vs. 66 +/- 6.4 cm s(-1); P = 0.003), a lower baseline E/A ratio (0.83 +/- 0.13 vs. 0.97 +/- 0.12; P = 0.015), and a longer deceleration time (167.5 +/- 15.4 ms vs. 150 +/- 19.5; P = 0.03) than hypertensive patients without such a response. CONCLUSION: A restrictive response to an acute saline load is indicative of a limited diastolic reserve in patients with mild to moderate untreated hypertension. Further studies are required in order to evaluate the significance of such a response with regards to risk stratification and efficacy of medical treatment in this patient population.

Adult↗

Sensitivity to the acceleration of looming stimuli.

The aim of this study was to determine if observers could discriminate between looming stimuli simulating targets approaching the observers at either constant or non-constant speeds. Discrimination between accelerating and constant-speed approaches improved after 70-90 trials for accelerations >2 m/s2. For lower accelerations the ability to discriminate was poor regardless of the trial number. Following the learning phase, observers were able to identify accelerating targets from constant-speed approaches fairly consistently at performance levels of 70-75% for accelerations as low as 4 m/s2 and at 80-96% for accelerations of 6-14 m/s2. Observers' accuracy in identifying decelerating from constant-speed targets did not increase as a function of increasing deceleration. In fact, observers had a slight bias to select the constant-speed stimulus as being the decelerating stimulus. In summary, the sensitivity to acceleration for simulated motion in depth is poor, but increases as acceleration increases and sensitivity to acceleration is far greater than for deceleration.

Acceleration↗

Comparison of the prognostic value of left ventricular filling and peak oxygen uptake in patients with systolic heart failure.

AIM: The aim of this prospective study was to compare the prognostic value of the mitral inflow pattern and peak oxygen uptake in patients with systolic heart failure. BACKGROUND: Peak oxygen uptake is a major prognostic parameter in heart failure. It is not known whether a restrictive mitral inflow pattern has similar prognostic value. METHODS: One hundred heart failure patients (ejection fraction <45%) underwent exercise testing after Doppler evaluation; prognosis was assessed after a mean follow-up of 17 months. RESULTS: The ejection fraction was larger in group 1 (non-restrictive pattern: E/A mitral wave ratio <1 or between 1 and 2 with E wave deceleration time >/=140 ms, n=45) than in group 2 (restrictive pattern: E/A ratio >2 or between 1 and 2 with E deceleration time <140 ms, n=40) (29+/-9 vs 22+/-10%, P<0.05). Peak oxygen uptake was lower in group 2 (17+/-4 vs 22+/-5 ml. min(-1). kg(-1)57+/-11 vs 75+/-15% of predicted values;P<0.05 for both comparisons). Univariate analysis showed that the deceleration time (r=0.65), E/A ratio (r=-0.50) and heart rate increment (r=0.47) correlated best with peak oxygen uptake. A third group of patients with persistent fusion of the E and A waves (n=15) had exercise responses similar to those of group 2 patients. A short deceleration time (P=0.006), a restrictive or a fusion pattern (P=0.04) were associated with a poor outcome; the prognostic value of these Doppler variables was greater than that of ejection fraction, but remained less than peak oxygen uptake indexed by predicted values (P=0.0004). CONCLUSION: The left ventricular filling pattern is a strong predictor of exercise capacity, and outcome, in patients with systolic heart failure and is independent of the left ventricular ejection fraction. Peak oxygen uptake remains a more powerful prognostic variable.

Aged↗

Changes in left ventricular filling pattern during dobutamine stress Doppler echocardiography.

AIMS: To study the left ventricular filling pattern during stress Doppler echocardiography and its utility in the detection of myocardial ischaemia. METHODS AND RESULTS: Fifty-seven consecutive patients underwent dobutamine stress echocardiography. The left ventricular filling pattern (E-wave velocity; A-wave velocity; E/A ratio; E-wave deceleration time) was analysed at baseline and at maximum heart rate reached. The percentage increase in these parameters from baseline to peak heart rate was also determined. Myocardial ischaemia (regional contractility worsening) was induced in 19 cases (ischaemic group) but not in 38 cases (non-ischaemic group). There were no differences between both groups at baseline. E-wave deceleration time decreased in the non-ischaemic group (197+/-63 vs. 167+/-65 ms, P=0.01) and increased in the ischaemic group (203+/-42 vs. 315+/-135 ms, P<0.0001). A percentage increase in E-wave deceleration time of >30% showed a positive predictive value of 93% and a negative predictive value of 86% for detecting ischaemia, and in the multivariate analysis it was the only Doppler parameter (P<0.0001) that predicted the induction of ischaemia. CONCLUSION: We conclude that myocardial ischaemia provokes an increase in E-wave deceleration time. Analysis of left ventricular filling could help in the identification of those cases which are positive for ischaemia.

Dobutamine↗

The effect of varying inspiratory flow waveforms on pulmonary mechanics in critically ill patients.

PURPOSE: Ten mechanically ventilated patients were evaluated to determine the effect of three different inspiratory flow patterns on pulmonary mechanics. MATERIALS AND METHODS: Ten consecutive mechanically ventilated critically ill patients with acute respiratory failure admitted to the intensive care unit were evaluated to assess the effects of decelerating, square, and sine waveforms on pulmonary mechanics. The variables measured were peak airway pressure (PaW), pleural pressure (Ppl), change in peak airway pressure (dPaW), inspiration time/total ventilation cycle time (Vi/tot), dynamic compliance (Cdyn), respiratory rate (RR), minute ventilation (Ve), and work of breathing (WOB). RESULTS: The PaW, Ppl, and dPaW (cm H2O) were significantly lower using the decelerating inspiratory flow waveform (P<.05) compared with sine or square waveform patterns. Ti/Ttot was also lower with the decelerating waveform (P<.05) with better dynamic compliance compared with the other waveforms (P<.10). CONCLUSIONS: These results indicate that critically ill mechanically ventilated patients show improved respiratory mechanics with decelerating inspiratory waveform that may have beneficial clinical implication.

Adult↗

Sigh-related heart rate changes during sleep in premature and full-term newborns.

The functional linkage in the cardio-respiratory system demands precise coordination of their activity. Sighs provide an opportunity to study the interaction and the maturation of the autonomic nervous system. In 4 groups of normal, sleeping newborns (31 to 41 weeks conceptional age [wCA], 2 to 10 days postnatal age) we investigated heart rate changes caused by sighs by means of polygraphy. In full-term (39-41 wCA) and near-term newborns (37-38 wCA) sighs during quiet sleep (QS) were accompanied by heart rate acceleration (p < 0.01) and thereafter by heart rate deceleration (p < 0.01). During active sleep (AS) only heart rate acceleration (p < 0.01) was observable. In prematures (35-36 wCA) acceleration could be observed in QS (p < 0.01) and AS (p < 0.01) but no deceleration in QS. In prematures of 31-34 wCA no changes during AS and QS could be detected. Body movements caused heart rate acceleration but no heart rate deceleration. In conclusion, it can be hypothesized that heart rate acceleration may be caused by reduced vagotonus initiated by augmented lung volume and movements. Sigh-related changes responsible for heart rate deceleration occur solely during quiet sleep. In prematures of 31-34 wCA these reflexes are not developed.

Electroencephalography↗