Your browser doesn't support javascript.
loading
: 20 | 50 | 100
1 - 20 de 56
1.
Int J Artif Organs ; 47(5): 347-355, 2024 May.
Article En | MEDLINE | ID: mdl-38742758

BACKGROUND: Thrombosis within extracorporeal membrane oxygenation (ECMO) circuits is a common complication that dominates clinical management of patients receiving mechanical circulatory support. Prior studies have identified that over 80% of circuit thrombosis can be attributed to tubing-connector junctions. METHODS: A novel connector was designed that reduces local regions of flow stagnation at the tubing-connector junction to eliminate a primary source of ECMO circuit thrombi. To compare clotting between the novel connectors and the traditional connectors, both in vitro loops and an in vivo caprine model of long-term (48 h) ECMO were used to generate tubing-connector junction clots. RESULTS: In vitro, the traditional connectors uniformly (9/9) formed large thrombi, while novel connectors formed a small thrombus in only one of nine (p < 0.0001). In the long-term goat ECMO circuits, the traditional connectors exhibited more thrombi (p < 0.04), and these thrombi were more likely to protrude into the lumen of the tubing (p < 0.001). CONCLUSION: Both in vitro and in vivo validation experiments successfully recreated circuit thrombosis and demonstrate that the adoption of novel connectors can reduce the burden of circuit thrombosis.


Equipment Design , Extracorporeal Membrane Oxygenation , Goats , Thrombosis , Extracorporeal Membrane Oxygenation/instrumentation , Animals , Thrombosis/etiology , Thrombosis/prevention & control , Disease Models, Animal , Blood Coagulation
2.
J Pediatr ; 265: 113809, 2024 Feb.
Article En | MEDLINE | ID: mdl-37918516

OBJECTIVE: To determine the variation of outpatient opioid prescribing across the US in postoperative pediatric cardiac patients. STUDY DESIGN: Retrospective, cross-sectional study using a concatenated database of Medicaid claims between from 2016 through 2018 of children 0-17 years, discharged after cardiac surgery and receiving an opioid prescription within 30 days. Filled prescriptions were identified and converted to morphine milligram equivalents (MME). Use, duration, and dose were analyzed by sex, race, ethnicity, residence urbanicity, and region. RESULTS: Among 17 186 Medicaid-enrolled children after cardiac surgery, 2129 received opioids within 30 days of discharge. Females received lower doses than males (coefficient -0.17, P = .022). Hispanic individuals were less likely to receive opioids (coefficient 0.53, P < .05, 95% CI: 0.38-0.71) and for shorter periods (coefficient 0.83, P < .001). Midwest (MW) (OR 0.61, 95% P-values < 0.05, 95% CI: 0.46-0.80) and Northeast (NE) (OR 0.43, 95% P-values < 0.05, 95% CI: 0.30-0.61) regions were less likely to receive opioids but used higher doses compared with the Southeast (SE) (MW coefficient 0.41, Southwest (SW) coefficient 0.18, NE coefficient 0.32, West (W) coefficient 0.19, P < .05). CONCLUSIONS: There were significant variations in opioid prescribing after cardiac surgery by race, ethnicity, sex, and region. National guidelines for outpatient use of opioids in children after cardiac surgery may help limit practice variation and reduce potential harms in outpatient opioid usage.


Analgesics, Opioid , Cardiac Surgical Procedures , Male , Female , United States , Humans , Child , Analgesics, Opioid/therapeutic use , Retrospective Studies , Medicaid , Cross-Sectional Studies , Practice Patterns, Physicians' , Pain, Postoperative/drug therapy
3.
Crit Care Explor ; 5(10): e0966, 2023 Oct.
Article En | MEDLINE | ID: mdl-37753236

IMPORTANCE: Extubation failure (EF) after pediatric cardiac surgery is associated with increased morbidity and mortality. OBJECTIVES: We sought to describe the risk factors associated with early (< 48 hr) and late (48 hr ≤ 168 hr) EF after pediatric cardiac surgery and the clinical implications of these two types of EF. DESIGN SETTING AND PARTICIPANTS: Retrospective cohort study using prospectively collected clinical data for the Pediatric Cardiac Critical Care Consortium (PC4) Registry. Pediatric patients undergoing Society of Thoracic Surgeons benchmark operation or heart transplant between 2013 and 2018 available in the PC4 Registry were included. MAIN OUTCOMES AND MEASURES: We analyzed demographics and risk factors associated with EFs (primary outcome) including by type of surgery. We identified potentially modifiable risk factors. Clinical outcomes of mortality and length of stay (LOS) were reported. RESULTS: Overall 18,278 extubations were analyzed. Unplanned extubations were excluded from the analysis. The rate of early EF was 5.2% (948) and late EF was 2.5% (461). Cardiopulmonary bypass time, ventilator duration, airway anomaly, genetic abnormalities, pleural effusion, and diaphragm paralysis contributed to both early and late EF. Extubation during day remote from shift change and nasotracheal route of initial intubation was associated with decreased risk of early EF. Extubation in the operating room was associated with an increased risk of early EF but with decreased risk of late EF. Across all operations except arterial switch, EF portrayed an increased burden of LOS and mortality. CONCLUSION AND RELEVANCE: Both early and late EF are associated with significant increase in LOS and mortality. Study provides potential benchmarking data by type of surgery. Modifiable risk factors such as route of intubation, time of extubation as well as treatment of potential contributors such as diaphragm paralysis or pleural effusion can serve as focus areas for reducing EFs.

4.
Ann Thorac Surg ; 2023 Jul 30.
Article En | MEDLINE | ID: mdl-37527698

BACKGROUND: The impact of antegrade pulmonary blood flow (APBF) during single-ventricle (SV) palliation continues to be debated. We sought to assess its impact on the hemodynamic profile and the short- and long-term outcomes of patients progressing through stages of SV palliation. METHODS: A retrospective single-center study was conducted of SV patients who underwent surgery between January 2010 and December 2020. Patients with APBF were matched to those with no APBF by a propensity score based on body surface area, sex, and type of systemic ventricle. Analysis was performed using appropriate statistics with a significance level of P = .05. RESULTS: Sixty-three patients with APBF were matched with 95 patients with no APBF. At the pre-stage 2 catheterization, APBF patients had a larger left pulmonary artery diameter (z score, 0.1 vs -0.8; P < .042). Patients with APBF had shorter cardiopulmonary bypass time (57.0 vs 79.0 minutes), shorter duration of mechanical ventilation (14.1 vs 17.4 hours), and shorter hospital length of stay (5.0 vs 7.0 days) at stage 2 palliation (P < .05). In the multivariable Cox regression analysis, patients with hypoplastic pulmonary arteries (z scores < -2; adjusted hazard ratio, 9.17) and patients with chromosomal abnormalities/genetic syndrome (adjusted hazard ratio, 4.03) were at increased risk for poor outcomes (P < .05). During the follow-up period, there was no significant difference in risk of the composite poor outcome and long-term survival between groups. CONCLUSIONS: SV patients with APBF had shorter cardiopulmonary bypass time, duration of mechanical ventilation, and hospital length of stay after stage 2 palliation. Patients with hypoplastic pulmonary arteries or chromosomal abnormalities/genetic syndromes had increased risk for poor outcomes. Maintaining APBF has better short-term outcomes, but there are no long-term hemodynamic or survival benefits.

5.
Int J Pediatr Otorhinolaryngol ; 169: 111559, 2023 Jun.
Article En | MEDLINE | ID: mdl-37126976

OBJECTIVE: To present external airway splinting with bioabsorbable airway supportive devices (ASD) for severe, life-threatening cases of pediatric tracheomalacia (TM) or tracheobronchomalacia (TBM). METHODS: A retrospective cohort was performed for 5 pediatric patients with severe TM or TBM who underwent ASD placement. Devices were designed and 3D-printed from a bioabsorbable material, polycaprolactone (PCL). Pre-operative planning included 3-dimensional airway modeling of tracheal collapse and tracheal suture placement using nonlinear finite element (FE) methods. Pre-operative modeling revealed that triads along the ASD open edges and center were the most effective suture locations for optimizing airway patency. Pediatric cardiothoracic surgery and otolaryngology applied the ASDs by suspending the trachea to the ASD with synchronous bronchoscopy. Respiratory needs were trended for all cases. Data from pediatric patients with tracheostomy and diagnosis of TM or TBM, but without ASD, were included for discussion. RESULTS: Five patients (2 Females, 3 Males, ages 2-9 months at time of ASD) were included. Three patients were unable to wean from respiratory support after vascular ring division; all three weaned to room air post-ASD. Two patients received tracheostomies prior to ASD placement, but continued to experience apparent life-threatening events (ALTE) and required ventilation with supraphysiologic ventilator settings. One patient weaned respiratory support successfully after ASD placement. The last patient died post-ASD due to significant respiratory co-morbidity. CONCLUSION: ASD can significantly benefit patients with severe, unrelenting tracheomalacia or tracheobronchomalacia. Proper multidisciplinary case deliberation and selection are key to success with ASD. Pre-operative airway modeling allows proper suture placement to optimally address the underlying airway collapse.


Tracheobronchomalacia , Tracheomalacia , Male , Female , Child , Humans , Infant , Tracheomalacia/therapy , Splints , Retrospective Studies , Tracheobronchomalacia/surgery , Trachea/surgery
6.
Cardiol Young ; 33(2): 201-207, 2023 Feb.
Article En | MEDLINE | ID: mdl-35236535

BACKGROUND: Following cardiac surgery, infants often remain endotracheally intubated upon arrival to the cardiac ICU. High-flow nasal cannula and non-invasive positive pressure ventilation are used to support patients following extubation. There are limited data on the superiority of either mode to prevent extubation failure. METHODS: We conducted a single-centre retrospective study for infants (<1 year) and/or <10 kg who underwent cardiac surgery between 3/2019-3/2020. Data included patient and clinical characteristics and operative variables. The study aimed to compare high-flow nasal cannula versus non-invasive positive pressure ventilation following extubation and their association with extubation failure. Secondarily, we examined risk factors associated with extubation failure. RESULTS: There were 424 patients who met inclusion criteria, 320 (75%) were extubated to high-flow nasal cannula, 104 (25%) to non-invasive positive pressure ventilation, and 64 patients (15%) failed extubation. The high-flow nasal cannula group had lower rates of extubation failure (11%, versus 29%, p = 0.001). Infants failing extubation were younger and had higher STAT score (p < 0.05). Compared to high-flow nasal cannula, non-invasive positive pressure ventilation patients were at 3.30 times higher odds of failing extubation after adjusting for patient factors (p < 0.0001). CONCLUSIONS: Extubation failure after cardiac surgery occurs in smaller, younger infants, and those with higher risk surgical procedures. Patients extubated to non-invasive positive pressure ventilation had 3.30 higher odds to fail extubation than patients extubated to high-flow nasal cannula. The optimal mode of respiratory support in this patient population is unknown.


Cardiac Surgical Procedures , Noninvasive Ventilation , Humans , Infant , Cannula , Retrospective Studies , Positive-Pressure Respiration/adverse effects , Positive-Pressure Respiration/methods , Airway Extubation
7.
Cardiol Young ; 33(7): 1150-1156, 2023 Jul.
Article En | MEDLINE | ID: mdl-35903026

BACKGROUND: A subset of patients who develop post-surgical heart block have recovery of atrioventricular node function. Factors predicting recovery are not understood. We investigated our centre's incidence of post-surgical heart block and examine factors associated with recovery of atrioventricular node function. METHODS: We conducted a single-centre retrospective study of patients 0 - 21 years who underwent cardiac surgery between January 2010 and December 2019 and experienced post-operative heart block. Data including patient and clinical characteristics and operative variables were collected and analysed. RESULTS: Of 6333 surgical hospitalisations, 128 (2%) patients developed post-operative heart block. Of the 128 patients, 90 (70%) had return of atrioventricular node function, and 38 (30%) had pacemaker placement. Of the 38 patients who underwent pacemaker placement, 6 (15.8%) had recovery of atrioventricular node function noted on long-term follow-up. Median time from onset of heart block to late atrioventricular node recovery was 13 days (Interquartile range: 5 - 117). Patients with single-ventricle physiology (p = 0.04), greater weight (p = 0.03), and shorter cardiopulmonary bypass time (p = 0.015) were more likely to have recovery. The use of post-operative steroids was similar between all groups (p = 0.445). Infectious or wound complications were similar between pacemaker groups (p = 1). CONCLUSIONS: Two per cent of patients who underwent congenital cardiac surgery developed post-operative heart block, and 0.6% underwent pacemaker placement. Early recovery of atrioventricular node was associated with greater weight at the time of surgery, single-ventricle physiology, and shorter cardiopulmonary bypass time. Late recovery of atrioventricular node conduction following pacemaker placement occurred in 15.8% of patients.


Atrioventricular Block , Cardiac Surgical Procedures , Pacemaker, Artificial , Univentricular Heart , Humans , Child , Atrioventricular Block/epidemiology , Atrioventricular Block/etiology , Atrioventricular Block/therapy , Retrospective Studies , Incidence , Cardiac Surgical Procedures/adverse effects , Atrioventricular Node/surgery , Pacemaker, Artificial/adverse effects , Univentricular Heart/complications , Treatment Outcome
8.
Cardiol Young ; 33(9): 1691-1699, 2023 Sep.
Article En | MEDLINE | ID: mdl-36184833

BACKGROUND: There is a paucity of information reported regarding the use of milrinone in patients with hypoplastic left heart syndrome prior to the Norwood procedure. At our institution, milrinone is initiated in the pre-operative setting when over-circulation and elevated serum lactate levels develop. We aimed to review the responses associated with the administration of milrinone in the pre-operative hypoplastic left heart syndrome patient. Second, we compared patients who received high- versus low-dose milrinone prior to Norwood procedure. METHODS: Single-centre retrospective study of patients diagnosed with hypoplastic left heart syndrome between January 2000 and December 2019 who underwent Norwood procedure. Patient characteristics and outcomes were compared. RESULTS: During the study period, 375 patients were identified; 79 (21%) received milrinone prior to the Norwood procedure with median lactate 2.55 mmol/l, and SpO2 93%. Patients who received milrinone were older at the time of Norwood procedure (6 vs. 5 days) and were more likely to be intubated and sedated. In a subset analysis stratifying patients to low- versus high-dose milrinone, median lactate decreased from time of initiation (2.39 vs 2.75 to 1.6 vs 1.8 mmol/l) at 12 hours post-initiation, respectively. Repeated measures analysis showed a significant decrease in lactate levels by 4 hours following initiation of milrinone, that persisted over time, with no significant difference in mean arterial pressure. CONCLUSIONS: The use of milrinone in the pre-operative over-circulated hypoplastic left heart syndrome patient is well tolerated, is associated with decreased lactate levels, and was not associated with significant hypotension or worsening of excess pulmonary blood flow.


Hypoplastic Left Heart Syndrome , Norwood Procedures , Infant, Newborn , Humans , Hypoplastic Left Heart Syndrome/diagnosis , Treatment Outcome , Milrinone/therapeutic use , Retrospective Studies , Norwood Procedures/adverse effects , Lactates
9.
Biomaterials ; 289: 121702, 2022 10.
Article En | MEDLINE | ID: mdl-36041362

Implantable patient-specific devices are the next frontier of personalized medicine, positioned to improve the quality of care across multiple clinical disciplines. Translation of patient-specific devices requires time- and cost-effective processes to design, verify and validate in adherence to FDA guidance for medical device manufacture. In this study, we present a generalized strategy for selective laser sintering (SLS) of patient-specific medical devices following the prescribed guidance for additive manufacturing of medical devices issued by the FDA in 2018. We contextualize this process for manufacturing an Airway Support Device, a life-saving tracheal and bronchial implant restoring airway patency for pediatric patients diagnosed with tracheobronchomalacia and exhibiting partial or complete airway collapse. The process covers image-based modeling, design inputs, design verification, material inputs and verification, device verification, and device validation, including clinical results. We demonstrate how design and material assessment lead to verified Airway Support Devices that achieve desired airway patency and reduction in required Positive End-Expiratory Pressure (PEEP) after patient implantation. We propose this process as a template for general quality control of patient-specific, 3D printed implants.


Bronchi , Trachea , Child , Humans , Printing, Three-Dimensional
10.
Front Artif Intell ; 5: 640926, 2022.
Article En | MEDLINE | ID: mdl-35481281

More than 5 million patients have admitted annually to intensive care units (ICUs) in the United States. The leading causes of mortality are cardiovascular failures, multi-organ failures, and sepsis. Data-driven techniques have been used in the analysis of patient data to predict adverse events, such as ICU mortality and ICU readmission. These models often make use of temporal or static features from a single ICU database to make predictions on subsequent adverse events. To explore the potential of domain adaptation, we propose a method of data analysis using gradient boosting and convolutional autoencoder (CAE) to predict significant adverse events in the ICU, such as ICU mortality and ICU readmission. We demonstrate our results from a retrospective data analysis using patient records from a publicly available database called Multi-parameter Intelligent Monitoring in Intensive Care-II (MIMIC-II) and a local database from Children's Healthcare of Atlanta (CHOA). We demonstrate that after adopting novel data imputation on patient ICU data, gradient boosting is effective in both the mortality prediction task and the ICU readmission prediction task. In addition, we use gradient boosting to identify top-ranking temporal and non-temporal features in both prediction tasks. We discuss the relationship between these features and the specific prediction task. Lastly, we indicate that CAE might not be effective in feature extraction on one dataset, but domain adaptation with CAE feature extraction across two datasets shows promising results.

11.
Int J Artif Organs ; 45(1): 60-67, 2022 Jan.
Article En | MEDLINE | ID: mdl-33372565

INTRODUCTION: Pediatric cardiac Extracorporeal Membrane Oxygenation (ECMO) is effective, however, bleeding and clotting issues continue to cause significant morbidity and mortality. The objective of this study was to assess the correlation between measures of anticoagulation, the heparin dose in pediatric cardiac ECMO patients as well as to assess covert coagulopathy as measured by thromboelastography (TEG). METHODS: Retrospective study of cardiac ECMO patients in a large, academic referral center using anticoagulation data during the ECMO support. RESULTS: Five hundred and eighty-four sets of anticoagulation tests and 343 TEG from 100 patients with median age of 26 days were reviewed. ECMO was post-surgical for congenital heart disease in 94% with resuscitation (ECPR) in 38% of the cases. Mean duration of support was 6.3 days. Overall survival to discharge was 35%. There was low but statistically significant correlation between individual anticoagulation measures and low correlation between Anti-Xa levels and heparin dose. There was no correlation between PTT and heparin dose. 343 TEG with Heparinase were reviewed to assess covert coagulopathy which was present in 25% of these. The coagulopathy noted was pro-hemorrhagic in almost all of the cases with high values of reaction time and kinetics and low values for angle and maximum amplitude. CONCLUSION: Coagulation monitoring on ECMO may benefit from addition of Heparinase TEG to diagnose covert coagulopathy which can contribute to significant hemorrhagic complications. There is a need for a prospective, thromboelastography guided intervention trial to reduce coagulopathy related morbidity and mortality in ECMO.


Extracorporeal Membrane Oxygenation , Anticoagulants/adverse effects , Blood Coagulation , Child , Extracorporeal Membrane Oxygenation/adverse effects , Heparin/pharmacology , Humans , Retrospective Studies
12.
J Extra Corpor Technol ; 53(1): 40-45, 2021 Mar.
Article En | MEDLINE | ID: mdl-33814604

Bleeding and thrombosis-related complications are common in pediatric cardiac patients supported by extracorporeal membrane oxygenation (ECMO) and are associated with morbidity and mortality. The purpose of this study was to evaluate the utility of aminocaproic acid (ACA), an antifibrinolytic agent, as it pertains to bleeding in pediatric cardiac patients on ECMO. This included a retrospective cohort study of pediatric cardiac patients receiving ACA while supported on ECMO between 2013 and 2017. For each patient, data were collected in three time intervals: the 24 hours before ACA initiation, and then 0-24 and 24-48 hours following ACA initiation. For each time frame, bleeding, component transfusion, and laboratory data were collected and analyzed. A total of 62 patients were included, representing 42% of our cardiac ECMO patients during the time period. ACA was initiated at 16.3 ± 8.7 hours following initiation of ECMO. The mean bleeding rate before ACA was 10.57 mL/kg/h, which reduced to 7.8 mL/kg/h in the 24-hour period after initiation of ACA and a further decrease to 3.65 mL/kg/h during the 24- to 48-hour time period following ACA initiation. ACA administration was associated with reduction in bleeding (p < .001) and packed red blood cell transfusions (p = .02), administration of fresh frozen plasma (p < .001), platelets (p = .017), cryoprecipitate (p = .05), factor VII (p = .002), and Cell Saver (p = .005). Hemoglobin and platelet count were stable, whereas prothrombin time (PT), partial thromboplastin time, and international normalized ratio (INR) showed significant reduction over the time course. ACA administration was not associated with specific adverse effects. A clinically significant reduction in bleeding amount, red blood cell transfusions, and other hematologic interventions occurred following ACA administration for pediatric patients on ECMO. Wider consideration for ACA use as a part of a multipronged strategy to manage bleeding during ECMO should be considered.


Extracorporeal Membrane Oxygenation , Aminocaproic Acid , Blood Transfusion , Child , Hemorrhage/chemically induced , Humans , Retrospective Studies
13.
Cardiol Young ; 31(12): 1907-1913, 2021 Dec.
Article En | MEDLINE | ID: mdl-33818344

BACKGROUND: Children with CHD carry an additional burden of pulmonary insufficiency, often necessitating prolonged ventilatory support, especially in the peri-operative phase. There has been an increase in the utilisation of non-invasive ventilatory support for these children. The objective of this study was to evaluate the utilisation, safety, and outcomes of RAM cannula as a tool for escalation and de-escalation of respiratory support in paediatric cardiac patients less than one year of age. METHODS: A single-centre retrospective cohort study of patients supported with RAM cannula. RESULTS: A total of 275 instances of RAM use were included in the study, 81.1% being post-operative. Patients were stratified into escalation and de-escalation cohorts based on the indication of non-invasive ventilation. The success rate of using RAM cannula was 69.5% overall, 66.1% in the escalation group, and 72.8% in the de-escalation group. At baseline, age at cardiac ICU admission >30 days, FiO2 ≤ 40%, PaCO2 ≤ 50 mmHg; and after 12 hours of non-invasive ventilation support respiratory rate ≤ 60/min, PaO2 ≥ 50 mmHg, PaCO2 ≤ 50 mmHg; and absence of worsening on follow-up chest X-ray predicted the success with a sensitivity of 95% in the logistic regression model. Successful support was associated with a significantly shorter unit stay. CONCLUSIONS: RAM cannula can be safely used to provide non-invasive support to infants in the cardiac ICU for escalation and de-escalation of respiratory support. Factors associated with success can be used to make decisions about candidacy and appropriate timing of non-invasive ventilation use to maximise effectiveness.


Noninvasive Ventilation , Respiratory Insufficiency , Cannula , Child , Humans , Intensive Care Units , Respiratory Insufficiency/therapy , Respiratory Rate , Retrospective Studies
14.
Am J Hypertens ; 34(6): 619-625, 2021 06 22.
Article En | MEDLINE | ID: mdl-33693473

BACKGROUND: Obesity and hypertension are public health priorities, with obesity considered to be a potential cause of hypertension. Accurate blood pressure (BP) determination is required and often obtained by automated oscillometric cuff devices. We sought to determine the correlation of oscillometric measurement in children, and if obesity was associated with worse correlation between methods than nonobese children. METHODS: Retrospective matched case-controlled study of 100 obese (97-99th percentile) and 100 nonobese (25-70th percentile) children after cardiac surgery with simultaneous systolic, diastolic, and mean invasive and oscillometric measurements. Matching was 1:1 for age, sex, race, and Risk Adjustment for Congenital Heart Surgery-1 score. Intraclass correlation coefficients and Bland-Altman plots were used to determine agreement with 0.75 as threshold. RESULTS: Median age was 13 years (10-15). Agreement was low for systolic (0.65 and 0.61), diastolic (0.68 and 0.61), and mean measurements (0.73 and 0.69) (obese/nonobese). Bland-Altman plots demonstrated oscillometric BP measurements underestimated systolic hypertension (oscillometric readings lower than intra-arterial). Oscillometric measurements underestimated hypotension (systolic oscillometric measurements were higher than intra-arterial). This occurred in obese and nonobese patients. Correlation of oscillometric measurements was similar for nonobese and obese patients. CONCLUSIONS: In this first ever study of simultaneous BP measurement by oscillometric vs. intra-arterial in obese and nonobese children, correlation is below accepted norms. The correlation of oscillometric cuff measurements is not affected by habitus in children. There is less correlation between oscillometric measurements and intra-arterial measurements during hypertension or hypotension. Healthcare providers should be aware of the limitations of oscillometric measurements.


Blood Pressure Determination , Pediatric Obesity , Adolescent , Blood Pressure Determination/methods , Child , Female , Humans , Male , Oscillometry , Pediatric Obesity/epidemiology , Reproducibility of Results , Retrospective Studies
15.
Int J Artif Organs ; 44(4): 262-268, 2021 Apr.
Article En | MEDLINE | ID: mdl-32907444

BACKGROUND: Patients with severe cardiac dysfunction, supported on extra-corporeal membrane oxygenation (ECMO), develop left atrial hypertension and often warrant atrial decompression. The procedural risks and outcomes, however, are not well established. Objective of this study is to understand the utilization, safety, and outcomes of atrial septostomy in children supported on venoarterial ECMO utilizing the IMPACT registry database. METHODS: Data from 55 independent sites reporting to the registry was used for this descriptive study. Patients supported with cardiac ECMO that underwent percutaneous atrial septostomy (PAS) were included and data analyzed. RESULTS: Between 2011 and 2018, 223 patients underwent atrial septostomy and were reported to the registry. Mean age was 4.65 years with 52% being males. Diagnoses of heart failure, sepsis, arrhythmia, and renal insufficiency were commonly noted prior to ECMO. The procedure was performed urgently or emergently in most cases (80%). PAS was associated with significant procedural complications such as arrhythmia (6.8%), tamponade (5.4%), and unplanned surgery (3.6%) but no procedural mortality. Overall hospital mortality was 46% (103/223) with 46 of these deaths occurring within 7 days of procedure. Regression analysis showed that African American race (vs Caucasian), race other than Caucasian, chronic lung disease and emergent procedure need were significantly associated with early post-procedural mortality (all p < 0.05). CONCLUSION: Using a large multicenter cardiac catheterization registry, we found that left atrial decompression can be performed without procedural mortality but is associated with significant morbidity. Impact of race, chronic lung disease and procedural urgency on early mortality warrant further studies.


Atrial Septum/surgery , Cardiac Catheterization , Critical Illness , Decompression, Surgical , Extracorporeal Membrane Oxygenation/methods , Atrial Function, Left , Cardiac Catheterization/adverse effects , Cardiac Catheterization/methods , Child, Preschool , Critical Illness/mortality , Critical Illness/therapy , Decompression, Surgical/adverse effects , Decompression, Surgical/methods , Female , Humans , Male , Pericardiectomy , Registries/statistics & numerical data , Risk Factors , Survival Analysis , United States/epidemiology
16.
Biomed Eng Online ; 19(1): 31, 2020 May 14.
Article En | MEDLINE | ID: mdl-32408879

BACKGROUND: Coarctation of the aorta is a common form of critical congenital heart disease that remains challenging to diagnose prior to clinical deterioration. Despite current screening methods, infants with coarctation may present with life-threatening cardiogenic shock requiring urgent hospitalization and intervention. We sought to improve critical congenital heart disease screening by using a novel pulse oximetry waveform analysis, specifically focused on detection of coarctation of the aorta. METHODS AND RESULTS: Over a 2-year period, we obtained pulse oximetry waveform data on 18 neonates with coarctation of the aorta and 18 age-matched controls hospitalized in the cardiac intensive care unit at Children's Healthcare of Atlanta. Patients with coarctation were receiving prostaglandin E1 and had a patent ductus arteriosus. By analyzing discrete features in the waveforms, we identified statistically significant differences in the maximum rate of fall between patients with and without coarctation. This was accentuated when comparing the difference between the upper and lower extremities, with the lower extremities having a shallow slope angle when a coarctation was present (p-value 0.001). Postoperatively, there were still differences in the maximum rate of fall between the repaired coarctation patients and controls; however, these differences normalized when compared with the same individual's upper vs. lower extremities. Coarctation patients compared to themselves (preoperatively and postoperatively), demonstrated waveform differences between upper and lower extremities that were significantly reduced after successful surgery (p-value 0.028). This screening algorithm had an accuracy of detection of 72% with 0.61 sensitivity and 0.94 specificity. CONCLUSIONS: We were able to identify specific features in pulse oximetry waveforms that were able to accurately identify patients with coarctation and further demonstrated that these changes normalized after surgical repair. Pulse oximetry screening for congenital heart disease in neonates may thus be improved by including waveform analysis, aiming to identify coarctation of the aorta prior to critical illness. Further large-scale testing is required to validate this screening model among patients in a newborn nursery setting who are low risk for having coarctation.


Aortic Coarctation/diagnosis , Oximetry , Signal Processing, Computer-Assisted , Aortic Coarctation/surgery , Female , Humans , Male , Postoperative Period
17.
Ann Pediatr Cardiol ; 13(1): 46-55, 2020.
Article En | MEDLINE | ID: mdl-32030035

OBJECTIVE: The purpose of this review is to present the available literature on the use of nonopioid analgesics such as nonsteroidal anti-inflammatory drugs in postcardiac surgery pediatric patients, mainly to focus on patients <1 year of age, and to provide the foundation for future research. MATERIALS AND METHODS: Published studies that address the use on nonopioid medications for postoperative sedation and analgesia in infants and children undergoing cardiac surgery were identified from online sources. Studies were reviewed by two authors independently to assess the quality of the data as well as the evidence. Due to limited availability of such studies, the review was then expanded to include use in noncardiac procedures as well as to expanded age groups. All studies that met the primary objective were included. RESULTS/DATA SYNTHESIS: Majority of the studies in the population of interest were related to use of ketorolac. Five studies specifically addressed ketorolac use in cardiac patients. In addition, studies were reviewed for nonopioid analgesia in noncardiac patients and included as a part of the available evidence as in the case of acetaminophen use. Newer agents as well as agents with very limited information were also acknowledged. CONCLUSION: Nonopioid medications appear to show promise for analgesia in infants undergoing cardiac surgery, with ketorolac being the most potent agent as a potential substitute for opioids. These agents demonstrate a reasonable safety profile even in the very young. There continue to be significant gaps in knowledge before their adoption becomes routine. However, gives the awareness regarding short-term and long-term impact of opioid use in this vulnerable population, and studies of such agents are an urgent need.

18.
Int J Artif Organs ; 43(1): 62-65, 2020 Jan.
Article En | MEDLINE | ID: mdl-31544560

Outcomes of out-of-hospital cardiac arrest are poor irrespective of the patient age group and circumstances. Survival to discharge after out-of-hospital arrest in children is less than 10%. Use of extracorporeal cardiopulmonary resuscitation is increasing and has been shown to improve outcomes in some situations. However, the candidacy for such augmentation is based on patient selection, institutional practices, and availability of an extracorporeal membrane oxygenation center. Often, duration of resuscitation, low flow state, presenting pH, and circumstances of arrest dictate candidacy for extracorporeal membrane oxygenation. We present a case of extremely prolonged resuscitation for out-of-hospital arrest in a pediatric patient, and we describe the use of mechanical compression device and transition to extracorporeal membrane oxygenation. We present the case outcome as well as brief discussion about controversies in extracorporeal cardiopulmonary resuscitation. We hope the case provides an opportunity for further discussion regarding opportunities to improve selection, use of extracorporeal cardiopulmonary resuscitation, and impact outcomes.


Cardiopulmonary Resuscitation , Coronary Circulation , Extracorporeal Membrane Oxygenation , Out-of-Hospital Cardiac Arrest/therapy , Adolescent , Humans , Male , Patient Selection , Time Factors
19.
Circ Genom Precis Med ; 11(1): e000043, 2018 01.
Article En | MEDLINE | ID: mdl-29874173

Induced pluripotent stem cells (iPSCs) offer an unprece-dented opportunity to study human physiology and disease at the cellular level. They also have the potential to be leveraged in the practice of precision medicine, for example, personalized drug testing. This statement comprehensively describes the provenance of iPSC lines, their use for cardiovascular disease modeling, their use for precision medicine, and strategies through which to promote their wider use for biomedical applications. Human iPSCs exhibit properties that render them uniquely qualified as model systems for studying human diseases: they are of human origin, which means they carry human genomes; they are pluripotent, which means that in principle, they can be differentiated into any of the human body's somatic cell types; and they are stem cells, which means they can be expanded from a single cell into millions or even billions of cell progeny. iPSCs offer the opportunity to study cells that are genetically matched to individual patients, and genome-editing tools allow introduction or correction of genetic variants. Initial progress has been made in using iPSCs to better understand cardiomyopathies, rhythm disorders, valvular and vascular disorders, and metabolic risk factors for ischemic heart disease. This promising work is still in its infancy. Similarly, iPSCs are only just starting to be used to identify the optimal medications to be used in patients from whom the cells were derived. This statement is intended to (1) summarize the state of the science with respect to the use of iPSCs for modeling of cardiovascular traits and disorders and for therapeutic screening; (2) identify opportunities and challenges in the use of iPSCs for disease modeling and precision medicine; and (3) outline strategies that will facilitate the use of iPSCs for biomedical applications. This statement is not intended to address the use of stem cells as regenerative therapy, such as transplantation into the body to treat ischemic heart disease or heart failure.


Cardiovascular Diseases/therapy , Induced Pluripotent Stem Cells/transplantation , Models, Biological , Precision Medicine , American Heart Association , Cell Differentiation , Gene Editing , Humans , Induced Pluripotent Stem Cells/cytology , United States
20.
Nanomedicine (Lond) ; 13(7): 787-801, 2018 04 01.
Article En | MEDLINE | ID: mdl-29473787

AIM: Current diagnostic tests for myocarditis are invasive and have low diagnostic value. Our aim was to identify potential targeting peptides to detect early myocarditis following intravenous delivery. MATERIALS & METHODS: We used an animal model of experimental autoimmune myocarditis and a phage display library to identify potential targeting peptides. After several steps, we selected two peptides, MyH-PhD-05 and MyH-PhD-120, for in vivo screening using fluorescent imaging. Immunofluorescence and proteonomic analysis was used to identify potential cellular and molecular targets of MyH-PhD-05. Echocardiography was used to assess functional changes. RESULTS: Peptide MyH-PhD-05 was able to detect animals with severe myocarditis even in the absence of functional changes. Immunofluorescence demonstrated that MyH-PhD-05 colocalizes with CD4+ T cells and monocytes (CD11b+) in cardiac infiltrates. CONCLUSION: We identified potential targeting peptides for the diagnosis of myocarditis. Future studies will focus on better identification of potential targets and translating this technology to clinically relevant imaging modalities.


Autoimmune Diseases/diagnosis , Myocarditis/diagnosis , Myosin Heavy Chains/isolation & purification , Peptides/isolation & purification , Animals , Autoimmune Diseases/diagnostic imaging , Autoimmune Diseases/physiopathology , Diagnostic Imaging , Disease Models, Animal , Early Diagnosis , Echocardiography , Fluorescent Dyes/administration & dosage , Humans , Mice , Myocarditis/diagnostic imaging , Myocarditis/physiopathology , Myosin Heavy Chains/metabolism , Peptide Library , Peptides/metabolism
...