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2.
Injury ; 55(5): 111394, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38360517

RESUMEN

BACKGROUND: Severe traumatic brain injury (TBI) is a leading cause of pediatric mortality, with a disproportionate burden on low- and middle-income countries. The impact of concomitant extracranial injury (ECI) on these patients remains unclear. This study is the first to characterize the epidemiology and clinical course of severe pediatric TBI with extracranial injuries in any South American country. METHODS: We conducted a secondary analysis of baseline data collected prior to implementation of a clinical trial on TBI care in Argentina, Paraguay, and Chile from September 2019 to July 2020. Patients ≤18 years with CT evidence of TBI, and a Glasgow coma scale (GCS) score ≤8 were recruited. Patients were initially stratified by highest non-head abbreviated injury scale (AIS): isolated TBI (AIS=0), minor extracranial injury (MEI; AIS=1-2), and serious extracranial injury (SEI; AIS≥3). Patients were subsequently stratified by mechanism of injury. Intergroup differences were compared using ANOVA, two-tailed unpaired t-tests, and chi-square tests. RESULTS: Among the 116 children included, 33 % (n = 38) had an isolated TBI, 34 % (n = 39) had MEI, and 34 % (n = 39) had SEI. Facial (n = 53), thoracic (n = 44), and abdominal (n = 31) injuries were the most common ECIs. At discharge, there were no significant differences in median GCS, GOS, or GOS-extended between groups. Patients with SEI had a longer hospital LOS than those with isolated TBI (median 28.0 (IQR 10.6-40.1) vs 11.9 (IQR 8.7-20.7) days, p = 0.013). The most common mechanisms of injury were road traffic injuries (RTIs) (n = 50, 43 %) and falls (n = 35, 30 %). Patients with RTI-associated TBIs were more likely to be older (median 11.0 (IQR 3.0-14.0) vs 2.0 (IQR 0.8-7.0) years, p<0.001) and more likely to have an ECI (86% vs 54 %, respectively; p = 0.003). ICU and Hospital LOS for RTI patients (median 10.5 (IQR 6.1-21.1) and 24.1 (IQR 11.5-40.4) days) were longer than those of fall patients (median 6.1 (IQR 2.6-8.9) and 13.7 (IQR 7.7-24.5) days). CONCLUSIONS: Extracranial injuries are common in South American patients with severe TBI. Severe ECI is more frequently associated with RTIs and can result in a higher rate of surgical procedures and LOS. Further strategies are needed to characterize the prevention and treatment of severe pediatric TBI in the South American context.


Asunto(s)
Lesiones Traumáticas del Encéfalo , Humanos , Niño , Lesiones Traumáticas del Encéfalo/terapia , Alta del Paciente , Escala de Coma de Glasgow , Hospitales , Chile
3.
Neurosurgery ; 94(1): 65-71, 2024 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-37409817

RESUMEN

BACKGROUND AND OBJECTIVES: Traumatic brain injury (TBI) is a major global public health problem. It is a leading cause of death and disability in children and adolescents worldwide. Although increased intracranial pressure (ICP) is common and associated with death and poor outcome after pediatric TBI, the efficacy of current ICP-based management remains controversial. We intend to provide Class I evidence testing the efficacy of a protocol based on current ICP monitor-based management vs care based on imaging and clinical examination without ICP monitoring in pediatric severe TBI. METHODS: A phase III, multicenter, parallel-group, randomized superiority trial performed in intensive care units in Central and South America to determine the impact on 6-month outcome of children aged 1-12 years with severe TBI (age-appropriate Glasgow Coma Scale score ≤8) randomized to ICP-based or non-ICP-based management. EXPECTED OUTCOMES: Primary outcome is 6-month Pediatric Quality of Life. Secondary outcomes are 3-month Pediatric Quality of Life, mortality, 3-month and 6-month Pediatric extended Glasgow Outcome Score, intensive care unit length of stay, and number of interventions focused on treating measured or suspected intracranial hypertension. DISCUSSION: This is not a study of the value of knowing the ICP in sTBI. This research question is protocol-based. We are investigating the added value of protocolized ICP management to treatment based on imaging and clinical examination in the global population of severe pediatric TBI. Demonstrating efficacy should standardize ICP monitoring in severe pediatric TBI. Alternate results should prompt reassessment of how and in which patients ICP data should be applied in neurotrauma care.


Asunto(s)
Lesiones Traumáticas del Encéfalo , Lesiones Encefálicas , Hipertensión Intracraneal , Adolescente , Humanos , Niño , Presión Intracraneal , Calidad de Vida , Lesiones Traumáticas del Encéfalo/diagnóstico por imagen , Lesiones Traumáticas del Encéfalo/terapia , Escala de Coma de Glasgow , Monitoreo Fisiológico/métodos , Hipertensión Intracraneal/diagnóstico por imagen , Hipertensión Intracraneal/etiología , Ensayos Clínicos Controlados Aleatorios como Asunto , Estudios Multicéntricos como Asunto
4.
Neurosurgery ; 94(1): 72-79, 2024 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-37955439

RESUMEN

BACKGROUND AND OBJECTIVES: The efficacy of our current approach to incorporating intracranial pressure (ICP) data into pediatric severe traumatic brain injury (sTBI) management is incompletely understood, lacking data from multicenter, prospective, randomized studies. The National Institutes of Health-supported Benchmark Evidence from Latin America-Treatment of Raised Intracranial Pressure-Pediatrics trial will compare outcomes from pediatric sTBI of a management protocol based on ICP monitoring vs 1 based on imaging and clinical examination without monitoring. Because no applicable comprehensive management algorithms for either cohort are available, it was necessary to develop them. METHODS: A consensus conference involving the 21 intensivists and neurosurgeons from the 8 trial sites used Delphi-based methodology to formulate management algorithms for both study cohorts. We included recommendations from the latest Brain Trauma Foundation pediatric sTBI guidelines and the consensus-based adult algorithms (Seattle International Brain Injury Consensus Conference/Consensus Revised Imaging and Clinical Examination) wherever relevant. We used a consensus threshold of 80%. RESULTS: We developed comprehensive management algorithms for monitored and nonmonitored cohort children with sTBI. We defined suspected intracranial hypertension for the nonmonitored group, set minimum number and timing of computed tomography scans, specified minimal age-adjusted mean arterial pressure and cerebral perfusion pressure targets, defined clinical neuroworsening, described minimal requisites for intensive care unit management, produced tiered management algorithms for both groups, and listed treatments not routinely used. CONCLUSION: We will study these protocols in the Benchmark Evidence from Latin America-Treatment of Raised Intracranial Pressure-Pediatrics trial in low- and middle-income countries. Second, we present them here for consideration as prototype pediatric sTBI management algorithms in the absence of published alternatives, acknowledging their limited evidentiary status. Therefore, herein, we describe our study design only, not recommended treatment protocols.


Asunto(s)
Lesiones Traumáticas del Encéfalo , Lesiones Encefálicas , Hipertensión Intracraneal , Niño , Humanos , Algoritmos , Lesiones Encefálicas/diagnóstico por imagen , Lesiones Encefálicas/terapia , Lesiones Traumáticas del Encéfalo/diagnóstico por imagen , Lesiones Traumáticas del Encéfalo/terapia , Lesiones Traumáticas del Encéfalo/complicaciones , Hipertensión Intracraneal/diagnóstico por imagen , Hipertensión Intracraneal/etiología , Presión Intracraneal , Monitoreo Fisiológico/métodos , Estudios Prospectivos , Ensayos Clínicos Controlados Aleatorios como Asunto , Estudios Multicéntricos como Asunto
5.
Neurosurgery ; 2023 Dec 05.
Artículo en Inglés | MEDLINE | ID: mdl-38051042

RESUMEN

BACKGROUND AND OBJECTIVES: Our Phase-I parallel-cohort study suggested that managing severe traumatic brain injury (sTBI) in the absence of intracranial pressure (ICP) monitoring using an ad hoc Imaging and Clinical Examination (ICE) treatment protocol was associated with superior outcome vs nonprotocolized management but could not differentiate the influence of protocolization from that of the specific protocol. Phase II investigates whether adopting the Consensus REVised Imaging and Clinical Examination (CREVICE) protocol improved outcome directly or indirectly via protocolization. METHODS: We performed a Phase-II sequential parallel-cohort study examining adoption of the CREVICE protocol from no protocol vs a previous protocol in patients with sTBI older than 13 years presenting ≤24 hours after injury. Primary outcome was prespecified 6-month recovery. The study was done mostly at public South American centers managing sTBI without ICP monitoring. Fourteen Phase-I nonprotocol centers and 5 Phase-I protocol centers adopted CREVICE. Data were analyzed using generalized estimating equation regression adjusting for demographic imbalances. RESULTS: A total of 501 patients (86% male, mean age 35.4 years) enrolled; 81% had 6 months of follow-up. Adopting CREVICE from no protocol was associated with significantly superior results for overall 6-month extended Glasgow Outcome Score (GOSE) (protocol effect = 0.53 [0.11, 0.95], P = .013), mortality (36% vs 21%, HR = 0.59 [0.46, 0.76], P < .001), and orientation (Galveston Orientation and Amnesia Test discharge protocol effect = 10.9 [6.0, 15.8], P < .001, 6-month protocol effect = 11.4 [4.1, 18.6], P < .005). Adopting CREVICE from ICE was associated with significant benefits to GOSE (protocol effect = 0.51 [0.04, 0.98], P = .033), 6-month mortality (25% vs 18%, HR = 0.55 [0.39, 0.77], P < .001), and orientation (Galveston Orientation and Amnesia Test 6-month protocol effect = 9.2 [3.6, 14.7], P = .004). Comparing both groups using CREVICE, those who had used ICE previously had significantly better GOSE (protocol effect = 1.15 [0.09, 2.20], P = .033). CONCLUSION: Centers managing adult sTBI without ICP monitoring should strongly consider protocolization through adopting/adapting the CREVICE protocol. Protocolization is indirectly supported at sTBI centers regardless of resource availability.

6.
Neurosurgery ; 92(3): 472-480, 2023 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-36790211

RESUMEN

BACKGROUND: Most patients with severe traumatic brain injury (sTBI) in low- or-middle-income countries and surprisingly many in high-income countries are managed without intracranial pressure (ICP) monitoring. The impact of the first published protocol (Imaging and Clinical Examination [ICE] protocol) is untested against nonprotocol management. OBJECTIVE: To determine whether patients treated in intensive care units (ICUs) using the ICE protocol have lower mortality and better neurobehavioral functioning than those treated in ICUs using no protocol. METHODS: This study involved nineteen mostly public South American hospitals. This is a prospective cohort study, enrolling patients older than 13 years with sTBI presenting within 24 h of injury (January 2014-July 2015) with 6-mo postinjury follow-up. Five hospitals treated all sTBI cases using the ICE protocol; 14 used no protocol. Primary outcome was prespecified composite of mortality, orientation, functional outcome, and neuropsychological measures. RESULTS: A total of 414 patients (89% male, mean age 34.8 years) enrolled; 81% had 6 months of follow-up. All participants included in composite outcome analysis: average percentile (SD) = 46.8 (24.0) nonprotocol, 56.9 (24.5) protocol. Generalized estimating equation (GEE) used to account for center effects (confounder-adjusted difference [95% CI] = 12.2 [4.6, 19.8], P = .002). Kaplan-Meier 6-month mortality (95% CI) = 36% (30%, 43%) nonprotocol, 25% (19%, 31%) protocol (GEE and confounder-adjusted hazard ratio [95% CI] = .69 [.43, 1.10], P = .118). Six-month Extended Glasgow Outcome Scale for 332 participants: average Extended Glasgow Outcome Scale score (SD) = 3.6 (2.6) nonprotocol, 4.7 (2.8) protocol (GEE and confounder-adjusted and lost to follow-up-adjusted difference [95% CI] = 1.36 [.55, 2.17], P = .001). CONCLUSION: ICUs managing patients with sTBI using the ICE protocol had better functional outcome than those not using a protocol. ICUs treating patients with sTBI without ICP monitoring should consider protocolization. The ICE protocol, tested here and previously, is 1 option.


Asunto(s)
Lesiones Traumáticas del Encéfalo , Lesiones Encefálicas , Humanos , Masculino , Adulto , Femenino , Presión Intracraneal , Estudios Prospectivos , Lesiones Traumáticas del Encéfalo/diagnóstico por imagen , Lesiones Traumáticas del Encéfalo/terapia , Monitoreo Fisiológico/métodos
7.
Trials ; 23(1): 980, 2022 Dec 05.
Artículo en Inglés | MEDLINE | ID: mdl-36471399

RESUMEN

BACKGROUND: The aim of this protocol is to describe the study protocol changes made and subsequently implemented to the Pediatric Guideline Adherence and Outcomes (PEGASUS) Argentina randomized controlled trial (RCT) for care of children with severe traumatic brain injuries (TBI) imposed by the COVID-19 pandemic. The PEGASUS study group met in spring 2020 to evaluate available literature review guidance and the study design change or pausing options due to the potential interruption of research. METHODS: As a parallel cluster RCT, pediatric patients with severe TBIs are admitted to 8 control (usual care) and 8 intervention (PEGASUS program) hospitals in Argentina, Chile, and Paraguay. PEGASUS is an intervention that aims to increase guideline adherence and best practice care for improving patient outcomes using multi-level implementation science-based approaches. Strengths and weaknesses of proposed options were assessed and resulted in a decision to revert from a stepped wedge to a parallel cluster RCT but to not delay planned implementation. DISCUSSION: The parallel cluster design was considered more robust and flexible to secular interruptions and acceptable and feasible to the local study sites in this situation. Due to the early stage of the study, the team had flexibility to redesign and implement a design more compatible with the conditions of the research landscape in 2020 while balancing analytical methods and power, logistical and implementation feasibility, and acceptability. As of fall 2022, the PEGASUS RCT has been active for nearly 2 years of implementation and data collection, scheduled to be completed in in fall 2023. The experience of navigating research during this period will influence decisions about future research design, strategies, and contingencies. TRIAL REGISTRATION: Pediatric Guideline Adherence and Outcomes-Argentina. Registered with ClinicalTrials.gov Identifier NCT03896789 on April 1, 2019.


Asunto(s)
Lesiones Traumáticas del Encéfalo , COVID-19 , Niño , Humanos , Adhesión a Directriz , Argentina/epidemiología , Lesiones Traumáticas del Encéfalo/diagnóstico , Lesiones Traumáticas del Encéfalo/terapia , Ciencia de la Implementación , Ensayos Clínicos Controlados Aleatorios como Asunto
8.
J Neurotrauma ; 37(11): 1291-1299, 2020 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-32013721

RESUMEN

Globally, intracranial pressure (ICP) monitoring use in severe traumatic brain injury (sTBI) is inconsistent and susceptible to resource limitations and clinical philosophies. For situations without monitoring, there is no published comprehensive management algorithm specific to identifying and treating suspected intracranial hypertension (SICH) outside of the one ad hoc Imaging and Clinical Examination (ICE) protocol in the Benchmark Evidence from South American Trials: Treatment of Intracranial Pressure (BEST:TRIP) trial. As part of an ongoing National Institutes of Health (NIH)-supported project, a consensus conference involving 43 experienced Latin American Intensivists and Neurosurgeons who routinely care for sTBI patients without ICP monitoring, refined, revised, and augmented the original BEST:TRIP algorithm. Based on BEST:TRIP trial data and pre-meeting polling, 11 issues were targeted for development. We used Delphi-based methodology to codify individual statements and the final algorithm, using a group agreement threshold of 80%. The resulting CREVICE (Consensus REVised ICE) algorithm defines SICH and addresses both general management and specific treatment. SICH treatment modalities are organized into tiers to guide treatment escalation and tapering. Treatment schedules were developed to facilitate targeted management of disease severity. A decision-support model, based on the group's combined practices, is provided to guide this process. This algorithm provides the first comprehensive management algorithm for treating sTBI patients when ICP monitoring is not available. It is intended to provide a framework to guide clinical care and direct future research toward sTBI management. Because of the dearth of relevant literature, it is explicitly consensus based, and is provided solely as a resource (a "consensus-based curbside consult") to assist in treating sTBI in general intensive care units in resource-limited environments.


Asunto(s)
Lesiones Traumáticas del Encéfalo/diagnóstico por imagen , Protocolos Clínicos/normas , Consenso , Presión Intracraneal/fisiología , Monitoreo Fisiológico/normas , Índice de Severidad de la Enfermedad , Lesiones Traumáticas del Encéfalo/fisiopatología , Técnica Delphi , Humanos , Hipertensión Intracraneal/diagnóstico por imagen , Hipertensión Intracraneal/fisiopatología , Neurocirujanos/normas , Resultado del Tratamiento
9.
J Neurosurg ; 131(2): 612-619, 2018 09 28.
Artículo en Inglés | MEDLINE | ID: mdl-30265194

RESUMEN

OBJECTIVE: While existing guidelines support the treatment of intracranial hypertension in severe traumatic brain injury (TBI), it is unclear when to suspect and initiate treatment for high intracranial pressure (ICP). The objective of this study was to derive a clinical decision rule that accurately predicts intracranial hypertension. METHODS: Using Delphi methods, the authors identified a set of potential predictors of intracranial hypertension and a clinical decision rule a priori by consensus among a group of 43 neurosurgeons and intensivists who have extensive experience managing severe TBI without ICP monitoring. To validate these predictors, the authors used data from a Latin American trial (n = 150; BEST TRIP). To report on the performance of the rule, they calculated sensitivity, specificity, and positive and negative predictive values with 95% confidence intervals. In a secondary analysis, the rule was validated using data from a North American trial (n = 131; COBRIT). RESULTS: The final predictors and the clinical decision rule were approved by 97% of participants in the consensus working group. The predictors are divided into major and minor criteria. High ICP would be considered suspected in the presence of 1 major or ≥ 2 minor criteria. Major criteria are: compressed cisterns (CT classification of Marshall diffuse injury [DI] III), midline shift > 5 mm (Marshall DI IV), or nonevacuated mass lesion. Minor criteria are: Glasgow Coma Scale (GCS) motor score ≤ 4, pupillary asymmetry, abnormal pupillary reactivity, or Marshall DI II. The area under the curve for the logistic regression model that contains all the predictors was 0.86. When high ICP was defined as > 22 mm Hg, the decision rule performed with a sensitivity of 93.9% (95% CI 85.0%-98.3%), a specificity of 42.3% (95% CI 31.7%-53.6%), a positive predictive value of 55.5% (95% CI 50.7%-60.2%), and a negative predictive value of 90% (95% CI 77.1%-96.0%). The sensitivity of the clinical decision rule improved with higher ICP cutoffs up to a sensitivity of 100% when intracranial hypertension was defined as ICP > 30 mm Hg. Similar results were found in the North American cohort. CONCLUSIONS: A simple clinical decision rule based on a combination of clinical and imaging findings was found to be highly sensitive in distinguishing patients with severe TBI who would suffer intracranial hypertension. It could be used to identify patients who require ICP monitoring in high-resource settings or start ICP-lowering treatment in environments where resource limitations preclude invasive monitoring.Clinical trial registration no.: NCT02059941 (clinicaltrials.gov).


Asunto(s)
Lesiones Traumáticas del Encéfalo/diagnóstico por imagen , Toma de Decisiones Clínicas/métodos , Hipertensión Intracraneal/diagnóstico por imagen , Índice de Severidad de la Enfermedad , Adulto , Lesiones Traumáticas del Encéfalo/epidemiología , Método Doble Ciego , Femenino , Humanos , Hipertensión Intracraneal/epidemiología , Masculino , Persona de Mediana Edad , Valor Predictivo de las Pruebas , Adulto Joven
10.
World Neurosurg ; 110: e952-e957, 2018 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-29203307

RESUMEN

BACKGROUND: Severe traumatic brain injury (sTBI) is a significant global health problem disproportionately affecting low- and middle-income countries (LMICs). Management of intracranial hypertension in sTBI is crucial to survival and optimal recovery. Practitioners in high-income countries routinely use intracranial pressure (ICP) monitors although their usefulness has been questioned. ICP monitors are usually unavailable in LMICs. No consensus-based/tested protocols or literature exists for sTBI treatment without ICP monitoring. METHODS: Investigators developed serial SurveyMonkey surveys for Latin American neurointensivists and neurosurgeons to determine current practice. These clinicians had extensive routine ongoing experience in sTBI without ICP monitoring. Surveys were administered and analyzed before/during/after a 2015 Buenos Aires consensus conference. Investigators identified areas of convergence blinded from colleagues' responses. A 47-clinician task force, representing 15 countries, who routinely manage patients with sTBI without monitors developed consensus-based treatment guidelines during a 3-day facilitated conference. RESULTS: Elements were added to the protocol at an 80% agreement threshold. Follow-on surveys resolved remaining elements to 97% agreement. The protocol addresses both tapering (on improvement) and neuroworsening. Staged treatment options were identified, plus unique clinical practice issues. This process introduced a research method to a large multidisciplinary group of LMIC clinicians. This report describes the process used to develop an LMIC-specific protocol that is transferable to other diseases/injuries. The protocol is being tested in 5 LMICs. CONCLUSIONS: We derived consensus-based guidelines for sTBI treatment without ICP monitoring, and introduced a research method to a large multidisciplinary group of LMIC clinicians naive to such methods.


Asunto(s)
Lesiones Traumáticas del Encéfalo/complicaciones , Protocolos Clínicos , Consenso , Hipertensión Intracraneal , Lesiones Traumáticas del Encéfalo/epidemiología , Protocolos Clínicos/normas , Encuestas Epidemiológicas , Humanos , Hipertensión Intracraneal/epidemiología , Hipertensión Intracraneal/etiología , Hipertensión Intracraneal/terapia , América Latina/epidemiología , Monitoreo Fisiológico
11.
PLoS One ; 12(12): e0189296, 2017.
Artículo en Inglés | MEDLINE | ID: mdl-29244842

RESUMEN

OBJECTIVE: Little is known about the critical care management of children with traumatic brain injury (TBI) in low middle income countries. We aimed to identify indicators of intensive care unit (ICU) treatments associated with favorable outcomes in Argentine children with severe TBI. METHODS: We conducted a secondary analysis of data from patients previously enrolled in a prospective seven center study of children with severe TBI who were admitted to an ICU in one of the seven study centers. Severe TBI was defined by head AIS ≥ 3, head CT with traumatic lesion, and admission GCS < 9. Seven indicators of best practice TBI care were examined. The primary outcome was discharge Pediatric Cerebral Performance Category Scale [PCPC] and Pediatric Overall Performance category Scale [POPC]. We also examined variation in ICU care and in-patient mortality. RESULTS: Of the 117 children, 67% were male and 7.5 (4.3) years on average, 92% had isolated TBI. Hypotension (54%) was more common than hypoxia (28%) and clinical or radiographic signs of high intracranial pressure (ICP) were observed in 92%. Yet, ICP monitoring occurred in 60% and hyperosmolar therapy was used in only 36%. Adherence to indicators of best TBI practice ranged from 55.6% to 83.7% across the seven centers and adherence was associated with favorable discharge PCPC (aRR 0.98; 95% CI [0.96, 0.99]), and POPC (aRR 0.98; 95% CI [0.96, 0.99]). Compared to patients whose adherence rates were below 65%, patients whose adherence rates were higher between 75%-100% had better discharge PCPC (aRR 0.28; 95% CI [0.10, 0.83]) and POPC (aRR 0.32; 95% CI [0.15, 0.73]. Two indicators were associated with favorable discharge PCPC: Avoidance of hypoxia (aRR 0.46; 95% CI [0.23, 0.93]), and Nutrition started in 72 hours (aRR 0.45; 95% CI [0.21, 0.99]). Avoiding hypoxia was also associated with favorable discharge POPC (aRR 0.47; 95% CI [0.22, 0.99]). CONCLUSION: There is variation in Argentine ICU practice in the care of children with severe TBI. Second insults are common and hyperosmolar therapy use is uncommon. Adherence to best practice TBI care by avoiding hypoxia and providing timely nutrition were associated with significantly favorable discharge outcomes. Implementing strategies that prevent hypoxia and facilitate early nutrition in the ICUs are urgently needed to improve pediatric TBI outcomes.


Asunto(s)
Lesiones Traumáticas del Encéfalo/terapia , Cuidados Críticos , Argentina , Lesiones Traumáticas del Encéfalo/patología , Niño , Preescolar , Femenino , Humanos , Masculino , Alta del Paciente , Estudios Prospectivos , Resultado del Tratamiento
12.
Actual. osteol ; 13(3): 243-250, Sept - DIc. 2017. ilus, tab
Artículo en Español | LILACS | ID: biblio-1117571

RESUMEN

La hipercalcemia es un trastorno común que representa aproximadamente el 0,6% de todas las admisiones médicas agudas. El hiperparatiroidismo primario (HPTP) y las neoplasias malignas son las dos causas más comunes de elevación de los niveles séricos de calcio; constituyen, en conjunto, alrededor del 90% de todos los casos. La presentación sintomática clásica de la hipercalcemia se observa con relativa poca frecuencia en el mundo desarrollado; la presentación más común es la detección asintomática en las pruebas bioquímicas. Sin embargo, en casos raros, el HPTP puede desarrollar hipercalcemia aguda, grave y sintomática, llamada crisis hipercalcémica (CH). Esta condición se asocia a alteraciones profundas en el estado mental y las funciones cardíaca, renal y gastrointestinal en presencia de concentraciones marcadamente elevadas de calcio sérico y paratohormona (PTH). Mientras que algunas elevaciones en el calcio sérico pueden ser bien toleradas, los síntomas de la CH son severos. Si el tratamiento se retrasa, la CH puede provocar la muerte. Describimos el caso de un paciente masculino que ingresa en la unidad de cuidados críticos por una CH secundaria a un HPTP por adenoma paratiroideo. (AU)


Hypercalcaemia is a most common disorder, accounting for approximately 0,6% of all acute medical admissions. Primary hyperparathyroidism (PHPT) and malignancy are the two most common causes of increased serum calcium levels, together accounting for about 90% of all cases. The classical symptomatic presentation of hypercalcaemia is seen relatively rarely in the developed world, the most common presentation being asymptomatic and detected following on biochemical testing. However, in rare cases HPTP can result in acute, severe and symptomatic hypercalcemia, called hypercalcemic crisis (HC). This condition is associated with profound disturbances in mental status, and cardiac, renal, and gastrointestinal function in the presence of markedly increased serum calcium and parathyroid hormone (PTH) concentrations. While some elevations in serum calcium can be well tolerated, symptoms of HC are severe. If treatment is delayed, HC can result in death. We describe herein a case of a male patient who was admitted to the intensive care unit as a consequence of HC resulting from elevated PTH, secondary to a parathyroid adenoma. We describe the case of a male patient who was admitted to the critical care unit for a HC mediated by PTH secondary to a parathyroid adenoma. (AU)


Asunto(s)
Humanos , Masculino , Persona de Mediana Edad , Neoplasias de las Paratiroides/complicaciones , Glándulas Paratiroides/patología , Hiperparatiroidismo Primario/complicaciones , Hipercalcemia/inducido químicamente , Hormona Paratiroidea/metabolismo , Hormona Paratiroidea/sangre , Neoplasias de las Paratiroides/cirugía , Neoplasias de las Paratiroides/diagnóstico por imagen , Glándulas Paratiroides/cirugía , Deficiencia de Vitamina D/sangre , Calcitriol/administración & dosificación , Gluconato de Calcio/administración & dosificación , Pérdida de Peso , Antiinflamatorios no Esteroideos/uso terapéutico , Calcio/administración & dosificación , Calcio/sangre , Diálisis Renal , Colecalciferol/administración & dosificación , Deshidratación , Diuréticos/administración & dosificación , Hiperparatiroidismo Primario/cirugía , Hiperparatiroidismo Primario/diagnóstico , Cinacalcet/administración & dosificación , Pamidronato/administración & dosificación , Soluciones Cristaloides/administración & dosificación , Hipercalcemia/diagnóstico , Hipercalcemia/tratamiento farmacológico , Hipercalcemia/sangre
13.
PLoS One ; 11(12): e0166478, 2016.
Artículo en Inglés | MEDLINE | ID: mdl-28005912

RESUMEN

OBJECTIVE: There is little information on the type of early care provided to children with traumatic brain injury (TBI) in low middle income countries. We benchmarked early prehospital [PH] and emergency department [ED] pediatric TBI care in Argentina. METHODS: We conducted a secondary analysis of data from patients previously enrolled in a prospective seven center study of children with TBI. Eligible participants were patients 0-18 years, and had diagnosis of TBI (admission Glasgow Coma scale score [GCS] < 13 or with GCS 14-15 and abnormal head CT scan within 48 hours of admission, and head AIS > 0). Outcomes were transport type, transport time, PH and ED adherence to best practice, and discharge Pediatric Cerebral Performance Category Scale (PCPC) and Pediatric Overall Performance category Scale (POPC). RESULTS: Of the 366 children, mean age was 8.7 (5.0) years, 58% were male, 90% had isolated TBI and 45.4% were transported by private vehicle. 50 (34.7%) of the 144 children with severe TBI (39.3% of all TBI patients) were transported by private vehicle. Most (267; 73%) patients received initial TBI care at an index hospital prior to study center admission, including children with severe (81.9%) TBI. Transport times were shorter for those patients who were directly transported by ambulance to study center than for the whole cohort (1.4 vs.5.5 hours). Ambulance blood pressure data were recorded in 30.9%. ED guideline adherence rate was higher than PH guideline adherence rate (84.8% vs. 26.4%). For patients directly transferred from scene to study trauma centers, longer transport time was associated with worse discharge outcome (PCPC aOR 1.10 [1.04, 1.18] and (POPC aOR 1.10 [1.04, 1.18]). There was no relationship between PH or ED TBI guideline adherence rate and discharge POPC and PCPC. CONCLUSION: This study benchmarks early pediatric TBI care in Argentina and shows that many critically injured children with TBI do not receive timely or best practice PH care, that PH guideline adherence rate is low and that longer transport time was associated with poor discharge outcomes for patients with direct transfer status. There is an urgent need to improve the early care of children with TBI in Argentina, especially timely transportation to a hospital.


Asunto(s)
Lesiones Traumáticas del Encéfalo/diagnóstico , Servicios Médicos de Urgencia , Adhesión a Directriz , Adolescente , Argentina , Benchmarking , Niño , Preescolar , Servicio de Urgencia en Hospital , Femenino , Escala de Coma de Glasgow , Hospitales Públicos , Humanos , Lactante , Recién Nacido , Masculino , Estudios Prospectivos , Factores de Tiempo , Tomografía Computarizada por Rayos X , Transporte de Pacientes
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