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Biomedical subjects

B L Short

Publications and source records attributed to B L Short.

At least 37 records · Page 2Linked to original sources

Right diaphragmatic eventration simulating a congenital diaphragmatic hernia.

We describe an infant with severe eventration of the right diaphragm and pulmonary hypoplasia who presented like a newborn with congenital diaphragmatic hernia complicated by persistent pulmonary hypertension. Surgical correction while on extracorporeal life support was unsuccessful due to attachments of the liver which prevented reduction into the abdominal cavity and our inability to distinguish the true defect from complete agencies of the right hemidiaphragm. At autopsy the pulmonary remnant and the fibrous membrane separating it from the liver were identified.

Diagnostic Errors↗

Impairment of cerebral autoregulation during venovenous extracorporeal membrane oxygenation in the newborn lamb.

OBJECTIVE: To study the effects of venovenous extracorporeal membrane oxygenation (ECMO) on cerebral autoregulation in the newborn lamb. DESIGN: Animal studies, using newborn lambs, with comparison of two randomized treatment groups. SUBJECTS: Newborn lambs of mixed breed, 1 to 7 days of age, were randomized into two study groups: control animals, with jugular vein ligation but no ECMO (n = 6), and ECMO animals placed on venovenous ECMO (n = 6). SETTING: Laboratory animal facilities of the Department of Anesthesiology and Critical Care Medicine at The Johns Hopkins Medical Institutions, Baltimore, MD. INTERVENTIONS: Animals were anesthetized with pentobarbital, intubated, and ventilated, and monitoring catheters were inserted. Control animals had their right jugular vein ligated, and a cerebral autoregulation curve was performed after 1 hr of stabilization. ECMO animals were placed on venovenous ECMO and after 1 hr of stabilization, they had a cerebral autoregulation curve performed. Cerebral autoregulation was examined by increasing intracranial pressure, thereby decreasing cerebral perfusion pressure. Intracranial pressure was increased by infusion of artificial cerebrospinal fluid into the lateral ventricle of the brain. MEASUREMENTS AND MAIN RESULTS: Four ranges of cerebral perfusion pressure were evaluated: a) baseline (1 hr after initiation of bypass in venovenous ECMO or completion of surgery in controls); b) cerebral perfusion pressure of 55 to 40 mm Hg; c) cerebral perfusion pressure of 39 to 25 mm Hg; and d) cerebral perfusion pressure of < 25 mm Hg. Cerebral blood flow (radiolabeled microspheres), cerebral oxygen consumption, fractional oxygen extraction, and oxygen transport values were calculated at each study period. In ECMO animals, cerebral blood flow (cerebral hemispheres) decreased from a baseline measurement of 46 +/- 9 (SD) mL/100 g/ min to 29 +/- 12 mL/100 g/min at a cerebral perfusion pressure of < 25 mm Hg. In the control group, cerebral blood flow was unchanged from baseline at any range of cerebral perfusion pressure. Cerebral oxygen consumption was unchanged from baseline as cerebral perfusion pressure decreased in either group. When cerebral oxygen consumption was compared between the two groups, it was lower in the ECMO group at baseline and at a cerebral perfusion pressure of < 25 mm Hg. At a cerebral perfusion pressure of < 25 mm Hg, cerebral blood flow, cerebral oxygen delivery, and metabolic rate were lower in the ECMO group than in the control group, and fractional oxygen extraction and cerebral vascular resistance were higher, indicating that autoregulation was impaired. There was no difference between blood flow in the right and left cerebral hemispheres when autoregulation was impaired in the ECMO animals. CONCLUSIONS: These findings indicate that cerebral autoregulation was altered in animals on venovenous ECMO, with cerebral blood flow decreasing at a cerebral perfusion pressure of < 25 mm Hg, compared with control animals which showed no changes at the same cerebral perfusion pressure. This disruption of cerebral autoregulation decreased cerebral oxygen metabolism despite an increased oxygen extraction in ECMO animals.

Animals↗

Intracranial abnormalities in infants treated with extracorporeal membrane oxygenation: update on sonographic and CT findings.

PURPOSE: To determine the frequency of intracranial lesions in infants treated with extracorporeal membrane oxygenation (ECMO), to evaluate trends in frequency during an 8-year period, and to determine which infants are at highest risk for intracranial injury. METHODS: Daily sonograms were obtained in 386 infants during treatment with ECMO. Cranial CT scans were acquired after decannulation in 286 of 322 survivors. Abnormalities were classified as major or minor and hemorrhagic or nonhemorrhagic. Results were correlated with infant demographic data. RESULTS: Intracranial abnormalities were detected in 203 (52%) of the 386 infants; 73 (19%) hemorrhagic, 86 (22%) nonhemorrhagic, and 44 (11%) combined lesions. Eighty-two lesions (21%) were classified as major. Forty-six (94%) of 49 major hemorrhages were identified at sonography. CT contributed additional information in 73% of neonates with intracranial abnormalities, of which 17 were major lesions not identified at sonography. The frequency of intracranial hemorrhage was increased in infants who were septic or premature or weighed less than 2.5 kg. An increase in time spent on ECMO bypass increased the risk for nonhemorrhagic injury. During an 8-year period, the frequency of hemorrhagic and major nonhemorrhagic lesions remained constant, whereas minor nonhemorrhagic abnormalities increased significantly. CONCLUSION: Infants treated with ECMO continue to be at high risk for cerebrovascular injury. Although daily sonograms are useful in identifying major hemorrhages, follow-up CT scans are crucial for accurate evaluation of intracranial abnormalities.

Brain Damage, Chronic↗

Experience with abdominal wall closure for patients with congenital diaphragmatic hernia repaired on ECMO.

Congenital diaphragmatic hernia (CDH) and its attendant lack of abdominal domain can create major technical challenges with respect to diaphragmatic and abdominal wall reconstruction, especially in seriously ill infants who require extracorporeal membrane oxygenation (ECMO). The authors reviewed the medical records of all infants with CDH repaired on ECMO at their institution (group 1, 15 patients), and compared them with infants having CDH repair before ECMO (group 2, 20 patients) and with those who had CDH repair but did not require ECMO (group 3, 15 patients). Thirty-seven of 50 patients survived (74%): 10 in group 1, 12 in group 2, and all 15 in group 3. There was a statistically significant difference (P < .001) with respect to the requirement of a polytetrafluoroethylene (PTFE) diaphragmatic patch for patients in group 1 versus those in both groups 2 and 3. There was also a significant difference in the number of patients in whom the abdomen could not be closed (P < .001 for group 1 v groups 2 and 3). Infants who require ECMO before CDH repair are more likely to have large diaphragmatic defects that require prosthetic reconstruction, and abdominal wall closure problems resulting from loss of abdominal domain, which further complicate the management of the physiological derangements from pulmonary hypoplasia and persistent pulmonary hypertension.

Abdominal Muscles↗

Neurodevelopmental status at age five years of neonates treated with extracorporeal membrane oxygenation.

OBJECTIVE: To determine the neurodevelopmental status at age 5 years among children who received extracorporeal membrane oxygenation (ECMO) in the newborn period as a treatment for severe cardiorespiratory failure. METHODS: We conducted a prospective cohort study of 103 five-year-old ECMO-treated children born between June 1984 and July 1988, and treated at our institution. Thirty-seven healthy control children were recruited locally. The assessment protocol included a complete neuropsychologic assessment, psychosocial assessment with parent questionnaires, a standard neurologic evaluation, assessment of gross motor and fine motor function, a medical history, and physical examination. RESULTS: Major disability was present in 17 of the ECMO cohort. Eleven ECMO-treated children (11%) were mentally retarded, one of whom was profoundly impaired. Two additional children had severe learning disabilities. Cerebral palsy was diagnosed in 5 (5%) ECMO-treated children, but all cases were mild in nature and the patients were walking unaided. One child has paraplegia. The mean Full Scale, Verbal, and Performance IQs of the EMCO-treated children were within the normal range, but as a group were significantly lower than in control children (96 vs 115, p < 0.001). Children treated with ECMO had increased risk relative to the control children for academic difficulties at school age (49% VS 22%, P < 0.01) and a higher rate of behavioral problems reported by parents (42% vs 16%, p = 0.01). CONCLUSIONS: The rate of major disability was comparable to that in other high-risk populations. The high rate of behavioral problems and increased risk of subsequent school failure among nonretarded ECMO-treated children supports the need for close follow-up of these children after hospital discharge.

Child Development↗

Improved oxygenation with reduced recirculation during venovenous extracorporeal membrane oxygenation: evaluation of a test catheter.

OBJECTIVE: To determine whether modifications of the original design of a double-lumen, venovenous, extracorporeal membrane oxygenation (ECMO) catheter would reduce recirculation and improve oxygenation during venovenous ECMO. DESIGN: Prospective, interventional study. SETTING: The animal research laboratory at The Children's National Medical Center. SUBJECTS: Six newborn lambs, 1 to 7 days old and weighing 4.7 +/- 0.9 kg. INTERVENTIONS: Animals were anesthetized, intubated and ventilated. The ductus arteriosus was ligated. Femoral artery and vein, cephalic jugular vein, and pulmonary artery catheters were placed. After systemic heparinization, the test catheter (with venous drainage holes moved away from the arterial return holes) was placed in the right internal jugular vein and advanced into the right atrium. The animal was placed on ECMO and stabilized, with the ventilator settings decreased to a peak inspiratory pressure of 15 cm H2O, peak positive end-expiratory pressure of 5 cm H2O, respiratory rate of 15 breaths/min, and an FIO2 of 0.21. ECMO flows were increased in 100-mL increments from 200 to 600 mL/min, with measurements taken 15 mins after each change. The test catheter was removed, the double-lumen, venovenous ECMO catheter was placed, and the studies were repeated. MEASUREMENTS AND MAIN RESULTS: Heart rate, mean arterial pressure, PaO2, jugular cerebral oxygen saturation, pulmonary artery oxygen saturation, mixed venous oxygen saturation, and postmembrane circuit pressures were measured at each study period. The test catheter improved oxygenation significantly, with higher systemic PaO2, higher pulmonary artery and cerebral oxygen saturations, and lower mixed venous oxygen saturations (indicating less recirculation). With the test catheter, PaO2 levels ranged from 62 +/- 6 torr (8.3 +/- 0.8 kPa) to 112 +/- 12 torr (14.9 +/- 1.6 kPa), compared with 46 +/- 4 torr (6.1 +/- 0.5 kPa) to 59 +/- 2 torr (7.9 +/- 0.3 kPa) for the double-lumen, venovenous ECMO catheter (p < or = .001). These findings indicate that at all flow rates studied, less recirculation occurred with the test catheter than with the double-lumen, venovenous ECMO catheter. CONCLUSIONS: These findings indicate that the redesign of the double-lumen, venovenous ECMO catheter, as outlined in this study, resulted in a significant reduction of recirculation, thereby resulting in a significant improvement in oxygenation while on venovenous ECMO. This newly designed catheter makes venovenous ECMO more effective, and represents a design that could be used for pediatric and/or adult ECMO.

Animals↗

Neonates treated with ECMO: predictive value of early CT and US neuroimaging findings on short-term neurodevelopmental outcome.

PURPOSE: To determine if neuroimaging findings in infants who undergo extracorporeal membrane oxygenation (ECMO) are predictive of developmental outcome. MATERIALS AND METHODS: At 1-2 years of age, 183 ECMO survivors (69 female, 114 male) underwent developmental examination. Neuroimaging studies obtained at time of ECMO were assigned a neuroimaging score. Neuroimaging findings were correlated with developmental outcome. RESULTS: Eighty-five infants had neuroimaging abnormalities. Development was normal in 105 infants, suspect in 37, and delayed in 41. Mean neuroimaging scores were significantly worse in survivors with delayed development (P < or = .0001). The sensitivity and specificity of normal neuroimaging findings in prediction of normal outcome were 65% and 63%, respectively. Survivors with nonhemorrhagic abnormalities had a higher risk of delayed development than did those with isolated hemorrhagic abnormalities (39% vs 21%). CONCLUSION: Although they cannot be used alone to predict outcome, early neuroimaging scores can be used to assign risk categories for developmental outcome.

Brain↗

Congenital diaphragmatic hernia. Outcome of preoperative extracorporeal membrane oxygenation.

In recent years, increasing numbers of patients with congenital diaphragmatic hernia (CDH) have been offered extracorporeal membrane oxygenation (ECMO) preoperatively if they can not physiologically tolerate early surgical repair. These infants are sicker are more unstable than those repaired pre-ECMO and, in most cases, have not had a "honeymoon" period (i.e., PaO2>100 mm Hg at some point). ECMO before surgical repair was offered to 27 CDH patients in our institution; of the 16 (59%) survivors, 11 are now 2 years of age to older. To determine the outcome risk for this critical population, we compared 11 infants placed on ECMO pre-CDH repair (Group A) with our previous series of 22 survivors who had their surgery prior to ECMO (Group B). Both groups were similar in birth weight, gestational age, and Apgar scores. In Group A, a greater number were females (73% vs 23%), had right-sided hernia (64% vs 23%), and required patch repairs (82% vs 23%). The mean time on ECMO, time to extubation, and mean length of hospitalization were longer in group A. In both groups combined, the frequency of reherniation was higher in the patch-repair infants compared with those with a primary closure. Incidence of reflux was high in both groups, with increasing frequency of Nissen fundoplication in Group A patients (45% vs 6%). Both groups demonstrated similar delayed growth at 1 year of age. Although infants placed on ECMO presurgery are sicker, with more post-ECMO morbidity, their growth failure is similar to the less sick infants repaired pre-ECMO.(ABSTRACT TRUNCATED AT 250 WORDS)

Apgar Score↗

The cerebrovascular response to prolonged hypoxia with carotid artery and jugular vein ligation in the newborn lamb.

This study was designed to evaluate the effect of ligation of the carotid artery and/or jugular vein, after exposure to prolonged (4 hours) hypoxia, and the effect of acute normalization of PaO2 after prolonged hypoxia with vessel ligation, on the cerebral circulation. Twelve 1- to 7-day-old lambs were anesthetized with pentobarbital. Catheters were placed in the femoral artery and vein, left ventricle, lingual artery, and sagittal sinus. Cerebral blood flow (CBF) was determined using the radiolabeled microsphere technique. After baseline studies, the animals were made hypoxic with a nitrogen/air mixture, to lower PaO2 to 36 +/- 5 mm Hg for 4 hours, followed by 1 hour of normoxia. After four hours of hypoxia, studies were performed. The animals were divided into two groups to evaluate carotid artery and jugular vein ligation separately. In group I, the carotid artery was ligated first, with studies performed after 5 minutes; this was followed by ligation of the jugular vein, with studies after 5 minutes. In group II, the jugular vein was ligated first, with studies after 5 minutes; this was followed by ligation of the carotid artery, with studies after 5 minutes. With regard to physiological variables, there were no differences between the groups. CBF increased 106% (P < .001 compared with the baseline value) after 4 hours of hypoxia, maintaining cerebral oxygen consumption (CMRO2) and oxygen transport (OT) constant in both groups. Ligation of either the carotid artery or jugular vein after 4 hours of hypoxia, did not alter CBF responses to hypoxia.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Surfactant (beractant) therapy for infants with congenital diaphragmatic hernia on ECMO: evidence of persistent surfactant deficiency.

Infants with congenital diaphragmatic hernia (CDH) on extracorporeal membrane oxygenation (ECMO) can have initial lung atelectasis which, in survivors, gradually improves over time. To test the hypothesis that these patients could benefit from surfactant therapy, infants with CDH (born at > 34 weeks' gestation) on ECMO received either four doses of modified bovine lung surfactant extract (beractant) (surfactant group, n = 9) or an equal volume of air (control group, n = 8). Tracheal aspirate surfactant protein-A (SP-A) concentrations were initially low, and then increased over time in both CDH groups (P = .0021); however, levels remained low when compared with those of infants on ECMO who had other diagnoses (P = .04). Lung compliance (CL), time to extubation, time on oxygen, and total no. of hospital days were not different between the two groups. Infants with CDH had persistently elevated right ventricular pressure (RVP) at cessation of bypass when compared with non-CDH infants on ECMO (RVP = 53.25 mm Hg +/- 19.52 in the CDH group, 32.90 +/- 10.63 in the non-CDH group; P = .0121). The findings suggest that the postnatal surfactant deficiency may be more persistent in CDH infants than in non-CDH infants on ECMO. However, CDH remains a multifactorial condition, with delayed improvement, because of persistence of pulmonary hypertension, difficulties with vascular remodeling, degree of lung hypoplasia, or compromised respiratory mechanics.

Airway Resistance↗

Cerebrovascular response to carbon dioxide in lambs receiving extracorporeal membrane oxygenation.

OBJECTIVE: To determine if the institution of extracorporeal membrane oxygenation (ECMO) alters the cerebrovascular response to changes in PaCO2. DESIGN: Prospective, randomized, controlled animal trial. SUBJECTS: Anesthetized 1- to 7-day-old lambs of mixed breed (n = 16). SETTING: University research laboratory. INTERVENTIONS: The experimental group was placed on ECMO. Both experimental and control groups (n = 8) were exposed to three concentrations of PaCO2 (hypocarbia, normocarbia, and hypercarbia) by varying mechanical ventilation and by adding carbon dioxide to the ventilator gases. MEASUREMENTS AND MAIN RESULTS: Cerebral blood flow was measured by the radiolabeled microsphere method. Arterial blood gases and sagittal sinus blood gases were drawn at the time of cerebral blood flow measurement so that cerebral metabolism, cerebral oxygen transport, and extraction could be calculated. In the control group, as PaCO2 increased from 34 +/- 2 (SD) to 53 +/- 4 torr (4.5 +/- 0.3 to 7.1 +/- 0.5 kPa), cerebral blood flow increased from 53 +/- 12 to 147 +/- 50 mL/min/100 g. This increase in cerebral blood flow was not different from that of the ECMO group, where PaCO2 increased from 33 +/- 2 to 56 +/- 3 torr (4.4 +/- 0.3 to 7.5 +/- 0.4 kPa) and cerebral blood flow increased from 48 +/- 17 to 106 +/- 38 mL/min/100 g. As PaCO2 decreased from 34 +/- 2 to 19 +/- 2 torr (4.5 +/- 0.27 to 2.5 +/- 0.27 kPa), cerebral blood flow decreased from 53 +/- 12 to 43 +/- 8 mL/min/100 g in the control group. This decrease was not different from that of the ECMO group, where cerebral blood flow decreased from 48 +/- 17 to 39 +/- 10 mL/min/100 g as PaCO2 decreased from 33 +/- 2 to 22 +/- 3 torr (4.4 +/- 0.3 to 2.9 +/- 0.4 kPa). When regional cerebral blood flow was analyzed, no regional differences in the cerebrovascular responses to PaCO2 between ECMO and control groups were found. The cerebral metabolic rate was not different between ECMO and control groups at any level of PaCO2, nor was the cerebral metabolic rate affected by changes in PaCO2. Oxygen extraction increased with hypocarbia and decreased with hypercarbia in a similar fashion in both ECMO and control groups. CONCLUSION: The cerebrovascular response to changes in PaCO2 was unaffected by ECMO.

Animals↗

Impaired cerebral autoregulation in the newborn lamb during recovery from severe, prolonged hypoxia, combined with carotid artery and jugular vein ligation.

OBJECTIVE: To study the effect of severe prolonged hypoxia combined with ligation of the carotid artery and jugular vein (simulating pre-extracorporeal membrane oxygenation [ECMO] events) on cerebral autoregulation in the newborn lamb. DESIGN: Animal studies, using the newborn lamb, with comparison of two randomized treatment groups. SUBJECTS: Newborn lambs of mixed breed, 1 to 7 days of age, were used for the study. Two groups of animals were studied: a normoxic control group (n = 7) and a hypoxic group (n = 8). SETTING: Work was conducted in the research laboratories of the Department of Anesthesiology, Critical Care Medicine at The Johns Hopkins Medical Institutions, Baltimore, MD. INTERVENTIONS: Animals were anesthetized (pentobarbital), intubated, and mechanically ventilated. We examined the effect of prolonged severe hypoxia combined with carotid artery and jugular vein ligation on cerebral autoregulation during recovery from this insult. Control animals were maintained in a normoxic state (3 hrs) without carotid artery or jugular vein ligation. Hypoxic animals with carotid artery and jugular vein ligation were exposed to a 2-hr period of hypoxia (arterial oxygen saturation 44 +/- 14%; PaO2 30 +/- 3 torr [4 +/- 0.4 kPa]) followed by a 1-hr normoxic recovery period. Cerebral autoregulation was evaluated at the end of the 1-hr recovery period in hypoxic animals, and after 3 hrs of normoxia in control animals. Cerebral perfusion pressure was decreased by increasing intracranial pressure, with infusion of artificial cerebrospinal fluid into an intracranial pressure catheter in the lateral ventricle of the brain. MEASUREMENTS: Studies were taken at four ranges of cerebral perfusion pressure: > 55 mm Hg; 55 to 40 mm Hg; 39 to 26 mm Hg; and < or = 25 mm Hg. Cerebral blood flow was measured using the radiolabeled microsphere technique. Cerebral oxygen consumption, fractional oxygen extraction, and oxygen transport values were calculated at each study period. MAIN RESULTS: Two hours of severe hypoxia increased cerebral blood flow by 110%, whereas cerebral oxygen consumption was unchanged. In hypoxic animals, cerebral autoregulation was altered, with both cerebral blood flow and cerebral oxygen consumption decreasing at a cerebral perfusion pressure of 39 to 26 mm Hg compared with unchanged cerebral blood flow or cerebral oxygen consumption at a cerebral perfusion pressure of < or = 25 mm Hg in control animals. At the point of loss of autoregulation, significant right-to-left hemispheric cerebral blood flow changes occurred in hypoxic animals. In hypoxic animals, cerebellar cerebral blood flow changes were similar to those changes in the total cerebrum, while brain stem and caudate decreased cerebral blood flow only at a cerebral perfusion pressure of < or = 25 mm Hg. CONCLUSIONS: These findings indicate that cerebral autoregulation is disrupted during the recovery phase from an insult caused by prolonged, severe hypoxia with carotid artery and jugular vein ligation. This insult results in significant differences in right and left hemispheric cerebral blood flow rates when cerebral autoregulation is lost. If these results can be extrapolated to the human state, they may help to explain the role of pre-ECMO hypoxia combined with vessel ligation as a risk factor in cerebral injury in ECMO patients.

Animals↗

Mechanisms of change in cardiac performance in infants undergoing extracorporeal membrane oxygenation.

OBJECTIVE: To determine whether changes in cardiac performance observed in infants early during extracorporeal membrane oxygenation are due to the underlying disease process, the partial bypass procedure, changes in cardiac loading conditions, or due to a direct myocardial effect of hypoxia-reoxygenation. DESIGN: Consecutive case series. PATIENTS: Infants with meconium aspiration syndrome were studied at the end of their extracorporeal membrane oxygenation course (veno-arterial, n = 12; veno-venous, n = 8), after lung compliance and pulmonary arterial pressure returned toward normal and they were ready to have extracorporeal membrane oxygenation discontinued. INTERVENTIONS: Heart rate, mean arterial blood pressure, and load-dependent indices, and a load-independent index of cardiac performance were measured at increasing bypass flow rates (25, 50, 75, 100, 125 mL/kg/min). MEASUREMENTS AND MAIN RESULTS: Heart rate, mean arterial blood pressure, and load-dependent indices of cardiac performance (left ventricular shortening fraction and stroke volume) were normal at 25 mL/kg/min bypass flow rate and did not change significantly with increasing bypass flow rates. The load-independent index of performance was within the normal range for infants and did not change significantly with increasing bypass flow rates. CONCLUSIONS: The previously described decreases in cardiac performance during extracorporeal membrane oxygenation are not due to the underlying disease process or the bypass procedure but are due to changes in loading conditions during partial bypass.

Echocardiography↗

Adrenal hemorrhage in infants undergoing ECMO: prevalence and clinical significance.

OBJECTIVE: To determine the prevalence and clinical significance of adrenal hemorrhage in infants undergoing ECMO therapy. METHODS: Prospective US evaluation of the adrenal glands was performed in 50 consecutive infants undergoing ECMO. The infants were examined at least every other day while on bypass. Adrenal hemorrhage was diagnosed at US examination when a suprarenal mass or adrenal gland enlargement was identified. RESULTS: Adrenal hemorrhage was identified in two infants (4%); one infant with septicemia, and one with primary pulmonary hypertension. Both hemorrhages were unilateral; one was right-sided, and one left-sided. One hemorrhage occurred on the first day following the onset of ECMO and the other on the third day. The adrenal hemorrhage was not associated with an acute drop in hematocrit nor with adrenal insufficiency in either infant. CONCLUSION: Adrenal hemorrhage is uncommon in infants undergoing ECMO. When hemorrhage did occur in this series, it did not result in clinical complications.

Adrenal Gland Diseases↗

Malposition of extracorporeal membrane oxygenation cannulas in patients with congenital diaphragmatic hernia.

We describe two infants with congenital diaphragmatic hernia who underwent extracorporeal membrane oxygenation and in whom the venous cannula was in the left atrium instead of the right. The routine radiograph of the chest failed to demonstrate the malposition. We recommend using the echocardiogram to confirm the position of the cannula or to guide the surgeon during the cannulation of patients with congenital diaphragmatic hernia.

Echocardiography↗