DexMEDThe Bolus Dose of Dexmedetomidine (ED50) That Avoids Hemodynamic Compromise in Children
Dexmedetomidine
Étude thérapeutique
Résumé
Date de début de l'étude : 1 janvier 2012
Date à laquelle le premier participant a commencé l'étude.Purpose This study is being conducted to determine the dose of dexmedetomidine that can be given as a rapid bolus (over 5 seconds) following induction of anesthesia and insertion of a laryngeal mask airway (LMA) without causing significant hemodynamic compromise in healthy children. Hypothesis We hypothesize that a rapid bolus of dexmedetomidine does not cause significant hemodynamic effects in healthy children. Justification Dexmedetomidine given in a single peri-operative bolus without subsequent infusion has been shown to be beneficial. It would be arguably more practical to administer the dose as a rapid bolus. The hemodynamic effects of this have not been previously studied in healthy ASA I-II children (aged 5-10 years). Objectives The objective of this study is to determine the dose of dexmedetomidine that can be given as a rapid bolus in healthy children following induction of total intravenous anesthesia (TIVA) without causing significant hemodynamic compromise. Research Method This is a prospective, sequential design study using the up-and-down method (UDM) to determine the dose of dexmedetomidine that will prevent hemodynamic compromise following a rapid bolus in healthy children. The only study specific intervention will be a bolus of dexmedetomidine following induction of TIVA and insertion of an LMA. Pre-operatively Heart rate (HR), non-invasive blood pressure (NIBP), respiratory rate (RR) and oxygen saturation (SpO2) will be obtained in the SDCU. Topical local anesthesia will be applied to potential cannulation sites. Intra-operatively Following establishment of intravenous access, induction of anesthesia will proceed with lidocaine 1 mg/kg, propofol 4 mg/kg and remifentanil 2 mcg/kg, administered as a bolus over 5 seconds. Bag mask ventilation with 100% oxygen will then be administered whilst SpO2, electrocardiogram (ECG), NIBP and Bispectral Index (BIS) monitoring is attached. Maintenance of anesthesia will be commenced after 30 seconds, with total intravenous anesthesia (TIVA) prepared as a combined infusion of a fixed concentration of propofol 10 mg/ml and remifentanil 5 mcg/ml (PR5) at a dose of propofol 200 mcg/kg/min and remifentanil 0.1 mcg/kg/min, as is the routine practice at BCCH. If further anesthesia is required, rescue doses of PR5 will be administered as propofol 0.5 mg/kg combined with remifentanil 0.25 mcg/kg until a satisfactory level of anesthesia is reached. Any rescue doses given will be documented. After the maintenance infusion is commenced, a NIBP will be recorded. A pre-programmed bolus dose of 10 ml/kg 0.9% saline will simultaneously be delivered (over 10 minutes) when the maintenance TIVA infusion is commenced. Following this, the intravenous fluid infusion will be programmed to run at maintenance rates according to the weight of the child. One minute after induction, an LMA will be inserted and secured in place (T0). Positive pressure ventilation will be commenced, or the patient allowed to breathe spontaneously, as appropriate. Supplemental oxygen will be administered as needed to maintain SpO2 ≥ 96%. If further anesthesia is required, rescue doses of PR5 will be administered and documented, as above. One minute after successful LMA insertion (T1), a NIBP recording will be taken, along with a baseline HR that will be being monitored continuously. This will constitute the baseline NIBP and HR (pre-study drug intervention) and will be used to define changes in hemodynamics of systolic, mean, diastolic blood pressure (SBP, MAP and DBP, respectively) and HR following the study drug intervention. One minute after the baseline NIBP is recorded, a bolus dose of dexmedetomidine will be administered over 5 seconds (T2). The dose will be dictated by the UDM study design, with a starting dose of 0.5 mcg/kg. The dexmedetomidine will be diluted in 0.9% saline to achieve the required concentration of 4 mcg/ml prior to administration. NIBP readings will be recorded every minute following the bolus, for a period of 10 minutes (T3-12). After this time period, the study will be complete. A BIS value will be recorded before and after the dexmedetomidine bolus. The maintenance rate of TIVA will then be adjusted and further opioid given as per the anesthesiologist's preference, prior to and during surgery. NIBP readings will be recorded every 5 minutes throughout surgery and every 15 minutes in Post Anesthetic Care Unit (PACU), in addition to continuous ECG, HR and SpO2 monitoring. Statistical Analysis The turning point estimator of Choi will be used to estimate the target dose. This describes how values of pairs at the crossover points are averaged. It is a form of target dose estimation that is frequently used in anesthesia UDM research.
Protocole
Cette section fournit des détails sur le plan de l'étude, y compris la manière dont l'étude est conçue et ce qu'elle évalue.21 participants à inclure
Nombre total de participants que l'essai clinique vise à recruter.Traitement
Éligibilité
Les chercheurs recherchent des patients correspondant à une certaine description appelée critères d'éligibilité : état de santé général ou traitements antérieurs du patient.Tout sexe
Le sexe biologique des participants éligibles à s'inscrire.De 5 à 10 ans
Tranche d'âge des participants éligibles à participer.Volontaires sains autorisés
Indique si les individus en bonne santé et ne présentant pas la condition étudiée peuvent participer.Critères
Plan de l'étude
Découvrez tous les traitements administrés dans cette étude, leur description détaillée et ce qu'ils impliquent.Un seul groupe d'intervention est désigné dans cette étude
Cette étude ne comporte pas de groupe placebo.
Groupes de traitement
Groupe I
ExpérimentalObjectifs de l'étude
Objectifs principaux
Objectifs secondaires
Centres d'étude
Ce sont les hôpitaux, cliniques ou centres de recherche où l'essai est conduit. Vous pouvez trouver le site le plus proche de vous ainsi que son statut.Cette étude comporte 1 site
British Columbia Children's Hospital
Vancouver, CanadaOuvrir British Columbia Children's Hospital dans Google Maps