Cough Clinical Trial
— REMEXOfficial title:
Effect of Two Plasma Concentrations of Remifentanil Through Target Controlled Anesthesia on Frequency and Intensity of Coughing During Extubation: Randomized Controlled Clinical Trial
Verified date | March 2016 |
Source | Seganest |
Contact | n/a |
Is FDA regulated | No |
Health authority | Colombia: Ethics Committee |
Study type | Interventional |
Condition of the State: (terminated, recruiting, etc.) Terminated
Study Design: Main Objective:
Compare the frequency and intensity of coughing at the time of extubation with two infusions
of remifentanil that predict a plasma concentration (PC) of 3 - 4 and 2 - 3 ng/ml, through
the technique of target controlled anesthesia
Status | Completed |
Enrollment | 110 |
Est. completion date | July 2012 |
Est. primary completion date | January 2011 |
Accepts healthy volunteers | No |
Gender | Both |
Age group | 18 Years to 70 Years |
Eligibility |
Inclusion Criteria: - All patients aged 18-70 years - Risk Scale American Society of Anaesthesiologists physical status classification (ASA) I and II - Undergoing elective ear surgery Exclusion Criteria: - Patients who are contraindicated remifentanil - Patients undergoing emergency surgery - Pulmonary Pathology (ASTHMA - COPD) - Index of body mass greater than 35 - Background of respiratory failure three weeks prior to the procedure - Smokers |
Allocation: Randomized, Endpoint Classification: Safety Study, Intervention Model: Parallel Assignment, Masking: Double Blind (Subject, Caregiver, Investigator, Outcomes Assessor), Primary Purpose: Prevention
Country | Name | City | State |
---|---|---|---|
Colombia | Instituto Para Niños Ciegos y Sordos del Valle del Cauca | Santiago de Cali | Valle del Cauca |
Lead Sponsor | Collaborator |
---|---|
Seganest | Instituto Para Ninos Ciegos y Sordos del Valle del Cauca |
Colombia,
Albertin A, Casati A, Bergonzi P, Fano G, Torri G. Effects of two target-controlled concentrations (1 and 3 ng/ml) of remifentanil on MAC(BAR) of sevoflurane. Anesthesiology. 2004 Feb;100(2):255-9. — View Citation
Coleridge HM, Coleridge JCC. Reflexes evoked from the tracheobronchial tree and lungs. In: Handbook of Physiology, Section 3: the Respiratory System, Vol II: Control of Breathing, Part I (Cherniack NS, Widdicombe JG, eds). Washington, DC:American Physiological Society, 1986;395-429.
Dennis R. Cómo estimar el tamaño de la muestra en investigación con humanos. Acta Méd Colom. 1989;14: 92-99.
Dobson AJ. Calculating simple size. Transactions of the Menzie Foundation. 1984; 7:75-79.
Eger EI 2nd. Age, minimum alveolar anesthetic concentration, and minimum alveolar anesthetic concentration-awake. Anesth Analg. 2001 Oct;93(4):947-53. Review. — View Citation
Fagan C, Frizelle HP, Laffey J, Hannon V, Carey M. The effects of intracuff lidocaine on endotracheal-tube-induced emergence phenomena after general anesthesia. Anesth Analg. 2000 Jul;91(1):201-5. — View Citation
Grahame-Smith DG. How will knowledge of the human genome affect drug therapy? Br J Clin Pharmacol. 1999 Jan;47(1):7-10. — View Citation
Guler G, Akin A, Tosun Z, Eskitascoglu E, Mizrak A, Boyaci A. Single-dose dexmedetomidine attenuates airway and circulatory reflexes during extubation. Acta Anaesthesiol Scand. 2005 Sep;49(8):1088-91. — View Citation
Hohlrieder M, Tiefenthaler W, Klaus H, Gabl M, Kavakebi P, Keller C, Benzer A. Effect of total intravenous anaesthesia and balanced anaesthesia on the frequency of coughing during emergence from the anaesthesia. Br J Anaesth. 2007 Oct;99(4):587-91. Epub 2007 Jul 27. — View Citation
Irwin RS. Complications of cough: ACCP evidence-based clinical practice guidelines. Chest. 2006 Jan;129(1 Suppl):54S-58S. Review. — View Citation
Jun NH, Lee JW, Song JW, Koh JC, Park WS, Shim YH. Optimal effect-site concentration of remifentanil for preventing cough during emergence from sevoflurane-remifentanil anaesthesia. Anaesthesia. 2010 Sep;65(9):930-5. doi: 10.1111/j.1365-2044.2010.06450.x. — View Citation
Lee B, Lee JR, Na S. Targeting smooth emergence: the effect site concentration of remifentanil for preventing cough during emergence during propofol-remifentanil anaesthesia for thyroid surgery. Br J Anaesth. 2009 Jun;102(6):775-8. doi: 10.1093/bja/aep090. Epub 2009 May 2. — View Citation
Lee DH, Park SJ. Effects of 10% lidocaine spray on arterial pressure increase due to suspension laryngoscopy and cough during extubation. Korean J Anesthesiol. 2011 Jun;60(6):422-7. doi: 10.4097/kjae.2011.60.6.422. Epub 2011 Jun 17. — View Citation
Leech P, Barker J, Fitch W. Proceedings: Changes in intracranial pressure and systemic arterial pressure during the termination of anaesthesia. Br J Anaesth. 1974 Apr;46(4):315-6. — View Citation
Lema FE, Tafur LA, Giraldo C, Delgado MA. [Incidence of cough after desflurane and sevoflurane administration through a laryngeal mask: a controlled clinical trial]. Rev Esp Anestesiol Reanim. 2010 Mar;57(3):141-6. Spanish. — View Citation
Lerou JG. Nomogram to estimate age-related MAC. Br J Anaesth. 2004 Aug;93(2):288-91. Epub 2004 Jun 25. — View Citation
Manyam SC, Gupta DK, Johnson KB, White JL, Pace NL, Westenskow DR, Egan TD. Opioid-volatile anesthetic synergy: a response surface model with remifentanil and sevoflurane as prototypes. Anesthesiology. 2006 Aug;105(2):267-78. — View Citation
Matsuura T, Oda Y, Tanaka K, Mori T, Nishikawa K, Asada A. Advance of age decreases the minimum alveolar concentrations of isoflurane and sevoflurane for maintaining bispectral index below 50. Br J Anaesth. 2009 Mar;102(3):331-5. doi: 10.1093/bja/aen382. Epub 2009 Jan 24. — View Citation
Mendel P, Fredman B, White PF. Alfentanil suppresses coughing and agitation during emergence from isoflurane anesthesia. J Clin Anesth. 1995 Mar;7(2):114-8. — View Citation
Mertens MJ, Olofsen E, Engbers FH, Burm AG, Bovill JG, Vuyk J. Propofol reduces perioperative remifentanil requirements in a synergistic manner: response surface modeling of perioperative remifentanil-propofol interactions. Anesthesiology. 2003 Aug;99(2):347-59. — View Citation
Minogue SC, Ralph J, Lampa MJ. Laryngotracheal topicalization with lidocaine before intubation decreases the incidence of coughing on emergence from general anesthesia. Anesth Analg. 2004 Oct;99(4):1253-7, table of contents. — View Citation
Neelakanta G, Miller J. Minimum alveolar concentration of isoflurane for tracheal extubation in deeply anesthetized children. Anesthesiology. 1994 Apr;80(4):811-3. — View Citation
Nishina K, Mikawa K, Maekawa N, Obara H. Fentanyl attenuates cardiovascular responses to tracheal extubation. Acta Anaesthesiol Scand. 1995 Jan;39(1):85-9. — View Citation
Olofsen E, Sleigh JW, Dahan A. The influence of remifentanil on the dynamic relationship between sevoflurane and surrogate anesthetic effect measures derived from the EEG. Anesthesiology. 2002 Mar;96(3):555-64. — View Citation
Ramsay MA, Savege TM, Simpson BR, Goodwin R. Controlled sedation with alphaxalone-alphadolone. Br Med J. 1974 Jun 22;2(5920):656-9. — View Citation
Saghaei M, Reisinejad A, Soltani H. Prophylactic versus therapeutic administration of intravenous lidocaine for suppression of post-extubation cough following cataract surgery: a randomized double blind placebo controlled clinical trial. Acta Anaesthesiol Taiwan. 2005 Dec;43(4):205-9. — View Citation
Sant'Ambrogio G, Widdicombe J. Reflexes from airway rapidly adapting receptors. Respir Physiol. 2001 Mar;125(1-2):33-45. Review. — View Citation
Shajar MA, Thompson JP, Hall AP, Leslie NA, Fox AJ. Effect of a remifentanil bolus dose on the cardiovascular response to emergence from anaesthesia and tracheal extubation. Br J Anaesth. 1999 Oct;83(4):654-6. — View Citation
Tafur LA, Gómez JM, Parra LE. Validación de nomogramas de remifentanil y propofol para la administración de anestesia total endovenosa. Rev. Col. Anest. 2009; 37:21-8.
Tagaito Y, Isono S, Nishino T. Upper airway reflexes during a combination of propofol and fentanyl anesthesia. Anesthesiology. 1998 Jun;88(6):1459-66. — View Citation
Van Poucke GE, Bravo LJ, Shafer SL. Target controlled infusions: targeting the effect site while limiting peak plasma concentration. IEEE Trans Biomed Eng. 2004 Nov;51(11):1869-75. — View Citation
Widdicombe JG. Vagal reflexes in the airways. In: Neural Regulation of the Airways in Health and Disease (Kaliner M, Barnes PJ, eds). New York:Marcel Dekker, 1988;187-202.
Wilhelm W, Schlaich N, Harrer J, Kleinschmidt S, Müller M, Larsen R. Recovery and neurological examination after remifentanil-desflurane or fentanyl-desflurane anaesthesia for carotid artery surgery. Br J Anaesth. 2001 Jan;86(1):44-9. — View Citation
* Note: There are 33 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Cough | Number of episodes and duration of cough that occur when the patient responds to verbal stimulus and extubated. Cough Scale Grade 0 = No cough Grade 1 = Mild (only episode of cough) Grade 2 = Moderate (more than 1episode of cough during less than 5 seconds) Grade 3 = Severe (More than one episode of cough that lasted more than 5 seconds or purposeless movements of the extremities). |
It is evaluated by the scale of cough over a two hour period after surgery: is assessed at 5 minutes turned off the halogenated inhalation anesthetics, thereafter every minute until the patient responds to verbal stimulus and can be extubated | No |
Secondary | Wake time. | When vaporizer where closed until the patient responds to the verbal stimulus and is extubated. Defined as the time taken to open eyes after having turned off the halogenated inhalation anesthetics. |
During two hours after surgery, five minutes after turning off halogenated inhaled anesthetics, then every minute until the patient opens his eyes and is extubated. | No |
Secondary | Ramsay scale at the time of extubation | Ramsay scale: score objective system for measuring drug-induced sedation Score 1: Anxious or restless or both Score 2: Cooperative, orientated and tranquil Score 3: Responding to commands Score 4: Brisk response to stimulus Score 5: Sluggish response to stimulus Score 6: No response to stimulus |
During two hours after surgery, the estimated time period during which the event was assessed five (5) minutes after every minute, until answered | No |
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