PubMed Health⌕ Search

Biomedical subjects

R Mirro

Publications and source records attributed to R Mirro.

64 records · Page 4Linked to original sources

Relationship between mean airway pressure, cardiac output, and organ blood flow with normal and decreased respiratory compliance.

We investigated the relation between blood flow and mean airway pressure in two groups of anesthetized newborn piglets. The first group had normal respiratory compliance; the second group had pulmonary surfactant depleted by repeated saline lavage, which decreased static respiratory compliance by 42%. In the normal group, cardiac output decreased linearly from 292 +/- 43 mL/min/kg at 5 cm H2O airway pressure to 134 +/- 37 ml/min/kg at 20 cm H2O airway pressure, a drop of 43% (r2 = 0.79). Blood flow to the heart, kidney, and intestines had a similar decline, but brain, hepatic artery, and adrenal flow were constant. Mean arterial blood pressure did not decrease significantly until the highest airway pressure was reached, whereas sagittal sinus pressure increased as mean airway pressure increased. In contrast, the surfactant-depleted group maintained cardiac output up to a mean airway pressure of 15 cm H2O. At 20 cm H2O, cardiac output fell to 40% of the original value. Blood flow to the heart and kidneys fell at a mean airway pressure of 20 cm H2O; intestinal blood flow decreased beginning at 10 cm H2O. As in the normal piglets, brain, hepatic arterial, and adrenal blood flow were not affected by increasing ventilation pressure. Our data show that positive pressure ventilation in the neonate has important cardiovascular effects that are blunted when respiratory compliance is decreased. More important, because cardiac output decreased prior to a significant decline in arterial blood pressure, these data suggest that in a clinical setting considerable cardiovascular alterations can occur before a decline in arterial blood pressure is detected.

Airway Resistance↗

Adrenergic mediation of vasopressin secretion in newborn pigs.

Effects of inhibition of alpha 1-(prazosin) and alpha 2-(yohimbine) adrenoreceptors on plasma lysine vasopressin concentration during normotension and hemorrhagic hypotension were studied in unanesthetized newborn pigs. During the normotensive period, treatment with prazosin and yohimbine both increased plasma lysine vasopressin concentration (vehicle = 3.4 +/- 1.21 microU/ml; prazosin = 35.8 +/- 10.8 microU/ml; and yohimbine = 20.1 +/- 9.5 microU/ml). Prazosin caused a decline in arterial pressure (vehicle = 60 +/- 6 mmHg; prazosin = 49 +/- 5 mmHg), which may account for the increase in plasma lysine vasopressin concentration, whereas yohimbine increased arterial pressure (73 +/- 3 mmHg). On hemorrhage to equivalent arterial pressure, plasma lysine vasopressin concentration increased to similar levels in vehicle- (110.3 +/- 28.7 microU/ml) and prazosin-treated (92.6 +/- 14.2 microU/ml) piglets. In contrast, on hemorrhage of yohimbine-treated piglets, the increase in plasma lysine vasopressin concentration was augmented remarkably (527.0 +/- 103.2 microU/ml) in comparison to the other groups. We conclude that, in unanesthetized newborn pigs, treatment with the alpha 2-adrenoreceptor antagonist yohimbine increased plasma lysine vasopressin concentration and markedly accentuated the vasopressin response to hemorrhage. An alpha 2-adrenergic receptor-mediated mechanism appears to be an important inhibitory component in the vasopressin secretory system of the newborn pig.

Animals↗

Increasing ventilation pressure increases cortical subarachnoid cerebrospinal fluid prostanoids in newborn pigs.

This study examines the responses of pial arterioles and venules to increased mean airway pressure (P aw-) in newborn pigs. We further characterized the changes in cortical subarachnoid cerebrospinal fluid prostanoids with increased P aw-, both before and after cyclooxygenase inhibition with indomethacin. Eight chloralose anesthetized newborn pigs were equipped with closed cranial windows and ventilated with a conventional infant pressure-cycled respirator. Increasing P aw- from 3.2 +/- 0.3 cm water to 14.3 +/- 0.6 cm water did not change pial arteriole or venule diameters. Cerebrospinal fluid prostanoids (6-keto-PGF1 alpha, TxB2, PGE2, and PGF2 alpha), however, were increased reversibly (3- to 5-fold) by increasing P aw-. After indomethacin (5 mg/kg, intravenous) pial arterioles constricted approximately 15% with increased P aw-. These results suggest that increasing ventilation pressure increases brain prostanoid production. Prostanoids appear to inhibit vasoconstriction and may be important in maintaining cerebral blood flow during the stress of mechanical ventilation.

Animals↗

Aortic and pulmonary blood velocities during the first 3 days of life.

Newborn infants undergo major cardiovascular changes to accomplish the transition from fetal to newborn circulation. These include a drop in pulmonary vascular resistance and closure of the ductus arteriosus. We measured blood velocities by pulsed-Doppler ultrasound in the great vessels of normal newborns during this transition period. Our goals were to understand the timing of these changes and to assess cardiac function as measured by flow velocities. We concluded that shunting of blood through the ductus arteriosus continues for 1-2 days after birth without apparent hemodynamic consequences, cardiac function, as assessed by the Doppler technique, remains remarkably stable during this time period, the timing of ductal closure is not affected by the mode of delivery, and Doppler ultrasound is a portable, reproducible method which is useful in assessing the cardiovascular system of the neonate.

Age Factors↗

Systemic cardiac output and distribution during high-frequency oscillation.

High-frequency oscillation (HFO) appears to be an alternate, less traumatic mode of ventilating surfactant-deficient patients, because conventional (mechanical) pressure-limited ventilation (CMV) compromises cardiac function at high mean airway pressures. We compared systemic cardiac output and its distribution during HFO and CMV in ten adult rabbits rendered surfactant deficient by repeated pulmonary saline lavage. Cardiac output and organ blood flow were measured using the radionucleotide-labeled microsphere technique during ventilation at a mean airway pressure of 15 cm H2O and an inspired oxygen concentration of 100%. Both cardiac output and organ perfusion were similar during both modes of ventilation.

Animals↗

The effects of sodium nitroprusside on blood flow and oxygen delivery to the organs of the hypoxemic newborn lamb.

Vasodilators are used in newborns under conditions where hypoxia may be prominent. To study the effects of vasodilator therapy on organ oxygen delivery we measured blood flow (using radioactive microspheres) and arterial oxygen content in six chronically catheterized newborn lambs. Cardiac output and its distribution were measured during normoxia, hypoxia (10% O2 and 5% CO2), and hypoxia with a nitroprusside infusion. Hypoxia decreased oxygen content but did not change heart rate, mean blood pressure, or cardiac output. When nitroprusside was infused during hypoxemia, oxygen content and heart rate were not affected, but mean arterial blood pressure fell (39% decrease). During hypoxemia, blood flow increased to the heart, brain, and carcass but decreased to the gastrointestinal tract. When nitroprusside was infused during hypoxemia, blood flow decreased to the heart, brain, kidneys, and carcass. Oxygen delivery (arterial O2 content X blood flow) decreased to the brain as well as to kidneys, stomach, and carcass when nitroprusside was given to the hypoxemic lamb.

Animals↗

Parenteral calcium treatment shortens the left ventricular systolic time intervals of hypocalcemic neonates.

We studied 16 hypocalcemic premature infants before and after bolus infusions of calcium and saline. Their left ventricular systolic time interval ratios decreased significantly after calcium but not after saline administration. In addition, heart rate and systolic, mean and diastolic blood pressures increased after calcium infusion but not after saline infusion. These findings reflect an improvement in myocardial function and support the use of parenteral calcium therapy for hypocalcemic preterm neonates, particularly those who may have compromised myocardial function.

Blood Pressure↗

Pitfalls on the diagnosis of acute osteomyelitis by bone scan.

Two patients with acute osteomyelitis had technetium 99m methylene diphosphonate bone images that were misinterpreted. A review of six prospective evaluations of technetium scanning in the diagnosis of acute osteomyelitis shows that bone image interpretation may be misleading in five to seven per cent of pediatric patients. Definitive diagnostic procedures and management should not be delayed until a positive bone scan is obtained, if the clinical findings are persuasive.

Acute Disease↗

Pancuronium attenuates associated hemodynamic and transcutaneous oxygen tension changes during nursery procedures.

Intermittent increases in blood pressure (BP) associated with motor activity have been implicated in the pathogenesis of intraventricular hemorrhage in premature infants. Inhibition of motor activity by pancuronium administration has also been shown to stabilize cerebral blood flow velocity (CBFV) and BP patterns. The purpose of this study was to determine whether administration of pancuronium to ill premature infants would attenuate changes in BP and transcutaneous oxygen tension (TcPO2) and the variability of CBFV pattern associated with common nursery procedures. Fourteen premature infants in the study were given a single dose of pancuronium bromide at a dose of 0.1 mg/kg intravenously. BP and TcPO2 changes were monitored during nursery procedures, that is, during radial artery blood gas sampling and a head ultrasonographic/Doppler procedure, before and during pancuronium therapy. During arterial blood gas sampling, mean percent increase in BP was significantly greater (32% +/- 21%) before pancuronium administration compared with 21% +/- 13% during pancuronium use (p < 0.05). Mean percent changes in TcPO2 were -30% +/- 21% and 5.8% +/- 7.2% before and during pancuronium use, respectively (p < 0.05). Similar significant changes in BP and TcPO2 were observed with a head ultrasonographic/Doppler procedure. Coefficients of variation of systolic and mean CBFV also decreased significantly during pancuronium therapy. We observed short-term benefits with pancuronium use on vascular dynamics and oxygenation during nursery procedures. Further studies are needed to evaluate the use of pancuronium in preterm babies supported by mechanical ventilation during the first few days of life for possible prevention of intraventricular hemorrhage, the pathophysiologic mechanism of which may be related to hemodynamic and biochemical derangement.

Blood Flow Velocity↗