Different effects on circulatory control during volatile induction and maintenance of anesthesia and total intravenous anesthesia: autonomic nervous activity and arterial cardiac baroreflex function evaluated by blood pressure and heart rate variability analysis.

[1]  P. Duke,et al.  The effect of halothane with nitrous oxide on baroreflex control of heart rate in man , 1980, Canadian Anaesthetists' Society journal.

[2]  P. Duke,et al.  Baroreflex Control of Heart Rate in Man Awake and during Enflurane and Enflurane—Nitrous Oxide Anesthesia , 1980, Anesthesiology.

[3]  M. Turiel,et al.  Power Spectral Analysis of Heart Rate and Arterial Pressure Variabilities as a Marker of Sympatho‐Vagal Interaction in Man and Conscious Dog , 1986, Circulation research.

[4]  J. Kampine,et al.  Effects of fentanyl-diazepam-nitrous oxide anaesthesia on arterial baroreflex control of heart rate in man. , 1986, British journal of anaesthesia.

[5]  T. Ebert,et al.  Differential effects of nitrous oxide on baroreflex control of heart rate and peripheral sympathetic nerve activity in humans. , 1990, Anesthesiology.

[6]  J. Saul,et al.  Transfer function analysis of the circulation: unique insights into cardiovascular regulation. , 1991, The American journal of physiology.

[7]  T Yamamura,et al.  Arterial tonometry for noninvasive, continuous blood pressure monitoring during anesthesia. , 1991, Anesthesiology.

[8]  [Energy index of heart rate spectral analysis for the assessment of autonomic nerve activities]. , 1991, Masui. The Japanese journal of anesthesiology.

[9]  T Ishikawa,et al.  Blood Pressure Measurement by Arterial Tonometry in Controlled Hypotension , 1991, Anesthesia and analgesia.

[10]  [Differential effects of isoflurane, sevoflurane and halothane on autonomic function determined by spectral analysis of heart rate variability]. , 1994, Masui. The Japanese journal of anesthesiology.

[11]  D. Galletly,et al.  Heart rate variability during propofol anaesthesia. , 1994, British journal of anaesthesia.

[12]  J Sellgren,et al.  Sympathetic Muscle Nerve Activity, Peripheral Blood Flows, and Baroreceptor Reflexes in Humans during Propofol Anesthesia and Surgery , 1994, Anesthesiology.

[13]  L. Fleisher,et al.  Changes in Heart Rate Variability Under Propofol Anesthesia: A Possible Explanation for Propofol‐Induced Bradycardia , 1994, Anesthesia and analgesia.

[14]  T. Ebert,et al.  Neurocirculatory Responses to Sevoflurane in Humans: A Comparison to Desflurane , 1995, Anesthesiology.

[15]  A. Malliani,et al.  Heart rate variability. Standards of measurement, physiological interpretation, and clinical use , 1996 .

[16]  G. Breithardt,et al.  Heart rate variability: standards of measurement, physiological interpretation and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. , 1996 .

[17]  B. Biber,et al.  Effects of fentanyl, nitrous oxide, or both, on baroreceptor reflex regulation in the cat. , 1996, British journal of anaesthesia.

[18]  B. H. Layne,et al.  Low power, type II errors, and other statistical problems in recent cardiovascular research. , 1997, The American journal of physiology.

[19]  A. Porta,et al.  Relationship between spectral components of cardiovascular variabilities and direct measures of muscle sympathetic nerve activity in humans. , 1997, Circulation.

[20]  I. Smith,et al.  Inhalation induction with sevoflurane: a double-blind comparison with propofol. , 1997, British journal of anaesthesia.

[21]  Comparison of vital capacity induction with sevoflurane to intravenous induction with propofol for adult ambulatory anesthesia. , 1999 .

[22]  B D Levine,et al.  Effect of head-down-tilt bed rest and hypovolemia on dynamic regulation of heart rate and blood pressure. , 2000, American journal of physiology. Regulatory, integrative and comparative physiology.

[23]  M. V. Shah,et al.  Clinical comparison of 'single agent' anaesthesia with sevoflurane versus target controlled infusion of propofol. , 2000, British journal of anaesthesia.

[24]  Makoto Tanaka,et al.  The Recovery Profile of Baroreflex Control of Heart Rate After Isoflurane or Sevoflurane Anesthesia in Humans , 2001, Anesthesia and analgesia.

[25]  Rong Zhang,et al.  Mechanism of blood pressure and R‐R variability: insights from ganglion blockade in humans , 2002, The Journal of physiology.

[26]  P. Rosseel,et al.  Effect of VIMA with sevoflurane versus TIVA with propofol or midazolam-sufentanil on the cytokine response during CABG surgery. , 2002, European journal of anaesthesiology.

[27]  Yuchiao Chang,et al.  Postoperative nausea and vomiting after total intravenous anesthesia with propofol and remifentanil or alfentanil: how important is the opioid? , 2002, Journal of clinical anesthesia.

[28]  Ryoichi Ochiai,et al.  Changes in heart rate variability in sevoflurane and nitrous oxide anesthesia: effects of respiration and depth of anesthesia. , 2002, Journal of clinical anesthesia.

[29]  G. Keleş,et al.  Volatile induction and maintenance of anesthesia using laryngeal mask airway in pediatric patients , 2004, Journal of Anesthesia.

[30]  Naoyuki Hirata,et al.  Differential Effects of Propofol and Sevoflurane on Heart Rate Variability , 2003, Anesthesiology.

[31]  Z. Baysal,et al.  The effects of remifentanil and alfentanil-based total intravenous anesthesia (TIVA) on the endocrine response to abdominal hysterectomy. , 2004, Journal of clinical anesthesia.

[32]  Alberto Porta,et al.  Comparison of various techniques used to estimate spontaneous baroreflex sensitivity (the EuroBaVar study). , 2004, American journal of physiology. Regulatory, integrative and comparative physiology.

[33]  M. TerRiet,et al.  Rapid sevoflurane induction compared with thiopental. , 2004, Journal of clinical anesthesia.

[34]  Xin Wang,et al.  Fentanyl inhibits GABAergic neurotransmission to cardiac vagal neurons in the nucleus ambiguus , 2004, Brain Research.

[35]  J. Hartikainen,et al.  The effect of carbon dioxide, respiratory rate and tidal volume on human heart rate variability , 2004, Acta anaesthesiologica Scandinavica.

[36]  Toshiaki Nishikawa,et al.  Effects of nitrous oxide on baroreflex gain and heart rate variability , 2004, Acta Anaesthesiologica Scandinavica.