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Biomedical subjects

B Plaud

Publications and source records attributed to B Plaud.

At least 19 recordsLinked to original sources

[Hypothermia after spinal anaesthesia: implication of morphine?].

Spinal anaesthesia is the gold standard for elective caesarean section. This technique presents several adverse effects. We report a severe case of hypothermia (33.3 degrees C) after spinal administration of bupivacaine (10 mg) and morphine (100 microg) for elective caesarean section. After excluding other causes of hypothermia, this one could be explained by both the own effects of local anaesthesia (i.e. peripheral vasodilatation) and by the central effect of intrathecal morphine. Because hypothermia is not predictable after spinal injection of morphine both monitoring of central temperature and active warming of the patients could be proposed. Naloxone has been proposed in a case of hypothermia related to spinal injection of morphine.

Adult↗

Sevoflurane effects on retrobulbar arteries blood flow in children.

BACKGROUND: Measure of blood flow velocity in retrobulbar vessels is performed to determine the severity of ophthalmic pathologies as glaucoma. In children, this measure is usually performed under general anaesthesia. Sevoflurane is known to not modify cerebral blow flow velocities. However, its effect on retrobulbar circulation is not known. This study was designed to evaluate the effect of sevoflurane on retrobulbar circulation flow velocity in children undergoing examination for ocular disorders under general anaesthesia. METHODS: Thirteen mechanically ventilated children (Fi(O2))=1) were included. Blood flow velocities of central retinal artery, ophthalmic artery, and middle cerebral artery were measured by Doppler ultrasound during 1 and 2 age-adjusted minimal alveolar concentration (MAC) sevoflurane anaesthesia. Intra-ocular pressure and non-invasive haemodynamic parameters were also measured. End-tidal carbon dioxide tension was controlled during all the study period. RESULTS: Mean arterial pressure decreased from 1 to 2 age-adjusted MAC sevoflurane (58 [12] vs 54 [12] mm Hg, P=0.01). In the ophthalmic artery, end diastolic velocity (EDV) decreased significantly at 2 MAC (1 MAC: 4.4 [4] cm s(-1) vs 2 MAC: 1.4 [2.4] cm s(-1); P=0.04) and resistivity index (RI) increased significantly (1 MAC: 0.83 [0.11] vs 2 MAC: 0.93 [0.09]; P=0.007). Systolic velocity, EDV, and RI remained constant in the central retinal artery and in the middle cerebral artery. CONCLUSION: High alveolar concentration of sevoflurane decreased blood flow velocity in the ophthalmic artery, but not in the central retinal and the middle cerebral arteries in children ventilated in hyperoxic condition. This effect was related to a decrease in mean arterial pressure. This vessel-dependent effect may be explained by the different autoregulatory mechanisms of these arteries. In the present hyperoxic conditions, the vascular effect of sevoflurane may have been limited in the central retinal artery and not in the ophthalmic artery.

Anesthesia, General↗

Early exploration of diplopia with magnetic resonance imaging after peribulbar anaesthesia.

We report the cases of five patients who have experienced postoperative diplopia after cataract surgery under peribulbar anaesthesia and in whom orbital Magnetic Resonance Imaging was performed immediately after the diagnosis. In four patients, the imaging study showed a T2 hyper-intensity signal and swelling of one extraocular muscle that was interpreted as oedema. Therefore, these cases were most probably a result of an accidental i.m. injection of local anaesthetics. In the other patient, the imaging study revealed no abnormality.

Aged↗

Cuff compliance of pediatric and adult cuffed tracheal tubes: an experimental study.

BACKGROUND: Tracheal mucosal damage related to tracheal intubation has been widely described in pediatric and adult patients. High volume-low pressure cuffs (HVLPC) are being advertised as safe to avoid this particularly unpleasant complication. Compliances of these supposed pediatric and adult HVLPC are not mentioned by manufacturers and still remain unknown. METHODS: The compliance of HVLPC was measured in vitro and defined as the straight portion of the pressure-volume curve. Cuff pressure was measured after incremental 0.1 ml filling volumes of air for sizes 3.0-8.0 of internal diameter of Rüsch and Mallinckrodt tracheal tubes. Compliances were assessed in air and in a rigid tube. The filling volume to achieve a 25-mmHg intracuff pressure was also measured. RESULTS: In air, each 0.1 ml step almost linearly increased cuff pressure by 1 mmHg (size 8.0) to 9 mmHg (size 3). In air, the volume needed to maintain a cuff pressure < 25 mmHg was small for sizes 3-5.5 (0.35-2 ml). The 25 mmHg inflated cuff volume and compliance were decreased within a rigid tube, especially for adult sizes. In a rigid tube simulating a trachea, the compliances of almost every Rüsch tracheal tube were statistically higher than those of the Mallinckrodt. CONCLUSION: We conclude that the tested tracheal tube cuffs have low compliance and cannot be defined as high volume-low pressure.

Equipment Failure↗

[Neuromuscular blockade monitoring at the corrugator supercilii and ocular myasthenia gravis].

A 67-year-old patient suffering from an ocular myasthenia gravis was scheduled for an elective ENT surgery. General anaesthesia was induced intravenously. Neuromuscular responses after train-of-four stimulation were normal at both the adductor pollicis (T(4)/T(1) = 1) and the corrugator supercilii (4 visual responses). Then cisatracurium (0,15 mg kg(-1)) was administered to allow tracheal intubation. The laryngoscopy attempted 45 s after cisatracurium injection (no response at the supercilii, T(1)/T(0) = 1 at the adductor pollicis) was unsuccessful because of closing and moving vocal cords. The second attempt was successful 4 min after cisatracurium injection (no response at the corrugator supercilii, T(1)/T(0) = 0.05 at the adductor pollicis). Residual neuromuscular blockade was antagonized at the end of surgery (1 h long) allowing an uneventful extubation. We concluded that monitoring neuromuscular blockade at the corrugator supercilii to assess the intubating conditions is not recommended in a case of ocular myasthenia gravis.

Aged↗

[Pressure-volume relationship for paediatric cuffed tracheal tube].

OBJECTIVE: Define the pressure-volume relationship of the cuff of paediatric cuffed tracheal tubes. STUDY DESIGN: Experimental study. MATERIALS AND METHODS: The cuff pressure was measured after incremental 0.1 ml filling volumes for 6 sizes (3.0 to 5.5 mm of internal diameter) of paediatric high volume-low pressure cuffed-tracheal tubes. The pressure-volume relationship of the cuff was assessed with and without resistance to the filling. Results were expressed with medium +/- SD. RESULT: Each increment increased the cuff pressure, without resistance, of 7.3 +/- 1.7 mmHg for sizes 3.0, 3.5 and 4.0, 4.8 +/- 1.6 mmHg for size 4.5, and 2.3 +/- 0.9 mmHg for sizes 5 and 5.5. The resistance decreased the filling volume of the cuff for each size of tracheal tubes. CONCLUSION: The margin of safety provided by cuff of smallest cuffed tracheal tubes is too small. Then, the smallest sizes (3.0 to 4.5) should not be called low pressure-high volume cuff.

Air Pressure↗

[Orbital exenteration: an unusual cause of failure of assisted ventilation from a face mask].

Orbitary exenteration for tumor may concern ethmoidal wall, and may create a large communication between the orbital cavity and the cavum. We present the case of a patient scheduled for ocular prosthetic surgery after an unilateral orbitary exenteration. After intravenous induction of the general anaesthesia, anaesthesiologist failed to achieve adequate facial mask ventilation because of a great gas leakage from cavum to orbital cavity. Inserting packing in the orbitary cavity allowed to decrease gas leakage and to get adequate facemask ventilation. We recommend orbitary radiographic and clinical evaluations for patient with orbitary exenteration before general anaesthesia to evaluate the communication between the orbital cavity and the cavum. Such an anatomic communication may result in inefficient facial mask ventilation.

Anesthesia, General↗

The interpretation of train-of-four monitoring in intensive care: what about the muscle site and the current intensity?

OBJECTIVES: To investigate the effect of current intensity and choice of the stimulated muscle group on train-of-four (TOF) interpretation in the intensive care unit (ICU). DESIGN AND SETTING: Intervention study in a surgical intensive care unit. PATIENTS: 13 ventilated patients requiring prolonged muscle relaxation. MEASUREMENTS AND RESULTS: Prior to blockade TOF responses of left and right orbicularis oculi, adductor pollicis, and plantar flexors were recorded by setting the current intensity at 20, 40, 60, and 80 mA. The minimal current intensity (MCI) providing a supramaximal response was then identified for each muscle. Cisatracurium was then infused aiming to continuously observe a TOF at 2/4 on the left orbicularis oculi at 40 mA. The responses to TOF on all the muscle sites were further recorded at 40, 60, and 80 mA when the endpoint was reached for the first time, and after a 48-h infusion. After cessation of infusion the delay to observe 4/4 responses at TOF was recorded at each site at 40 mA or at MCI if MCI was above 40 mA. MCI did not differ between muscle groups. When the fixed endpoint was reached for the first time on left orbicularis oculi, the TOF response at 40 mA on right orbicularis oculi differed significantly. In contrast, no difference was observed between left and right sides at 40 mA at the other sites, nor at any sites at 60 and 80 mA. The TOF response on orbicularis oculi (left and right sides together) was different at 40 mA, compared to 60 and 80 mA. TOF responses at orbicularis oculi at 60 or 80 mA significantly differed from responses on adductor pollicis or plantar flexor, orbicularis oculi being less sensitive to cisatracurium than adductor pollicis or plantar flexor. After a 48-h infusion the same differences in sensitivities were observed between the muscle groups. At any current intensity the recovery was slower at adductor pollicis than at orbicularis oculi or plantar flexor. CONCLUSIONS: For a good TOF interpretation in the ICU the current intensity should be tested before onset of blockade. The orbicularis oculi is less sensitive to cisatracurium than adductor pollicis and plantar flexor both at onset and after a prolonged infusion. The recovery from relaxation is faster on orbicularis oculi and plantar flexor than on adductor pollicis.

APACHE↗

The corrugator supercilii, not the orbicularis oculi, reflects rocuronium neuromuscular blockade at the laryngeal adductor muscles.

BACKGROUND: Some studies suggest that the orbicularis oculi is resistant to neuromuscular blocking drugs and behaves like laryngeal muscles. Others report little or no difference between the orbicularis oculi and the adductor pollicis. These discrepancies could be related to the exact site of recording. The purpose of this study was to compare two monitoring sites around the eye with the adductor pollicis and the laryngeal adductor muscles. METHODS: After institutional approval and informed consent, the evoked response to train-of-four stimulation was measured in 12 patients by acceleromyography at the thumb (adductor pollicis), the eyelid (orbicularis oculi), and the superciliary arch (corrugator supercilii) after 0.5 mg/kg rocuronium during propofol-fentanyl-nitrous oxide anesthesia. In 12 other patients, laryngeal adductor neuromuscular blockade was assessed via the cuff of the tracheal tube and compared with the adductor pollicis and the corrugator supercilii after 0.6 mg/kg rocuronium. RESULTS: After 0.5 mg/kg, maximum blockade (%T1, mean +/- SD) was less at the corrugator supercilii (80+/-20%) than at the adductor pollicis (100+/-1%) and the orbicularis oculi (93+/-8%) (P < 0.01). Clinical duration (25%T1) was shorter at the corrugator supercilii (12+/-7 min) than at the adductor pollicis (25+/-4 min) and orbicularis oculi (24+/-10 min) (P < 0.01). After 0.6 mg/kg, maximum blockade was similar at the corrugator supercilii (88+/-8%) and the laryngeal adductor muscles (89+/-11%). Clinical duration at the corrugator supercilii and the laryngeal adductors was 17+/-7 and 17+/-10 min, respectively. CONCLUSIONS: Muscles around the eye vary in their response to rocuronium. The response of the superciliary arch (corrugator supercilii) reflects blockade of laryngeal adductor muscles. However, the eyelid (orbicularis oculi) and thumb (adductor pollicis) have similar sensitivities.

Adolescent↗

A multicenter evaluation of the time-course of action of two doses of rapacuronium after early and late reversal with neostigmine.

UNLABELLED: Early reversal of rapacuronium may accelerate return of neuromuscular function. This study was designed to compare early (2 min after rapacuronium) or late (at 25% recovery of the first twitch [T1] of train-of-four) reversal of rapacuronium with neostigmine. We studied 119 subjects between the ages of 18 and 75 yr. Anesthesia was induced with fentanyl and thiopental and maintained with nitrous oxide, propofol, and fentanyl. Mechanomyographic neuromuscular monitoring was performed by using train-of-four stimulation of the ulnar nerve. Two groups received 1.5 mg/kg rapacuronium followed by neostigmine (50 microg/kg) and glycopyrrolate (10 microg/kg) either at 2 min after rapacuronium bolus or at 25% T1 recovery. The other two groups received 2.0 mg/kg rapacuronium, after which neostigmine was similarly given. For each rapacuronium dose, the time from the administration of rapacuronium to the start of T1 recovery or 25% T1 recovery was significantly shorter in subjects who received the reversal 2 min after rapacuronium. However, late recovery, defined by times from administration of rapacuronium to 70%, or 80% T4/T1 recovery, was not influenced by early reversal administration. We conclude that initial recovery is accelerated by early administration of neostigmine. Time to full recovery after rapacuronium administration is, however, dose-dependent and not significantly altered by early administration of neostigmine. IMPLICATIONS: "Rescue reversal," which includes the administration of neostigmine shortly after the administration of rapacuronium, may accelerate the return of spontaneous breathing (early recovery), but does not shorten the time to complete recovery of upper airway function.

Adolescent↗

Temporal relation between acoustic and force responses at the adductor pollicis during nondepolarizing neuromuscular block.

BACKGROUND: Contracting muscle emits sounds. The purpose of this study was to compare the time course of muscular paralysis at the adductor pollicis muscle (AP) with use of acoustic myography and mechanomyography. METHODS: Thirteen elective surgery patients, American Society of Anesthesiologists physical status I, received rocuronium (0.6 mg/kg intravenously) as a bolus dose during general anesthesia. Force of AP was measured with use of a strain gauge, and sounds were recorded simultaneously with use of a small condenser microphone fixed on the palmar surface of the hand over the AP. Supramaximal stimulation was applied to the ulnar nerve at 0.1 Hz for 45-60 min. In seven patients, the response to train-of-four stimulation was also recorded during recovery. RESULTS: Force and sounds both were equally sensitive in measuring maximum block. The relation between sound and force was curvilinear, with good agreement near 0 and 100% and acoustic response exceeding mechanical response at intermediate levels of block. The acoustic signal had a slower onset and a faster recovery than the force response. The fade response of sound to train-of-four stimulation also recovered faster than that of force. CONCLUSION: Acoustic myography is an alternative method to monitor muscular paralysis that is easy to set up and applicable to most superficial muscles. However, the time course of relaxation at AP using acoustic myography differs from the time course of force relaxation. Therefore, these two methods are not equivalent when applied to AP.

Adult↗

[Pharmacodynamics and safety of mivacurium in infants and children under halothane-nitrous oxide anesthesia].

OBJECTIVES: To determine pharmacodynamic effects and safety of mivacurium in paediatric patients. STUDY DESIGN: Multicentric, prospective, open, non-randomized study. PATIENTS: Forty-eight three-month-old to eight-year-old physical class ASA I or II children. METHOD: Anaesthesia was induced and maintained with halothane and nitrous oxide. Tracheal intubation was performed without a neuromuscular blocking agent. Neuromuscular blockade was measured with a strain force transducer after train-of-four stimulation of the ulnar nerve at the wrist every ten seconds. A single bolus dose of mivacurium (0.2 mg.kg-1) was injected during 15 seconds in patients allocated into three groups. Group 1: three to 12-month-old infants (n = 15), group 2: one- to three-year-old children (n = 16) and group 3: three- to eight-year-old children (n = 17). Onset and recovery parameters were measured in each patient. Heart rate and noninvasive arterial blood pressure were recorded every minute for five minutes after mivacurium injection. RESULTS: Following halothane administration for 29 and 32 min, and a FEThalothane = 1 vol%, mivacurium (0.2 mg.kg-1) determined a 100% neuromusmcular blockade in all patients. The onset time was 71 +/- 34 s (mean +/- SD) in all patients and did not differ between groups. Time to 25% and 95% recovery of the first twitch and recovery index for all the patients were 12 +/- 3 min, 19 +/- 5 min and 4 +/- 2 min respectively and did not differ between groups. No prolonged paralysis was observed. No significant changes of HR and BP occurred. CONCLUSIONS: Following 0.2 mg.kg-1 of mivacurium in patients aged between three months to eight years, a complete blockade occurs with a rapid onset time and a short duration of action, without significant cardiovascular effect.

Anesthetics, Inhalation↗

Visual estimation of onset time at the orbicularis oculi after five muscle relaxants: application to clinical monitoring of tracheal intubation.

UNLABELLED: The onset time of neuromuscular blockade at the adductor pollicis (AP) is different among neuromuscular blocking drugs, but these discrepancies had never been studied at the orbicularis oculi (OO). The purpose of this study was to verify if the differences in onset time observed at the AP still existed at the OO and to score the intubating conditions using monitoring at the OO after five muscle relaxants. The study included 172 adults aged 18-75 yr. Anesthesia was induced with fentanyl and propofol. Atracurium (0.5 mg/kg), mivacurium (0.20 mg/kg), rocuronium (0.6 mg/kg), succinylcholine (1.0 mg/kg), or vecuronium (0.08 mg/kg) was injected by random allocation. Time to complete disappearance of the response at the OO was assessed visually after train-of-four stimulation of the facial nerve. Laryngoscopy was then performed, and intubating conditions were determined on a scale of 1-4. Results were based on 150 patients. Onset time at the OO was (mean +/- SD): succinylcholine (57 +/- 17 s) < mivacurium (99 +/-19 s) = rocuronium (99 +/- 47 s) < atracurium (129 +/-33 s) = vecuronium (135 +/- 38 s) (P < 0.05). Overall intubating conditions were excellent (84%), good (14%), poor (1.3%), impossible (0.7%), and were similar among the five groups. We conclude that differences in onset time of muscle relaxants observed at the AP were also found at the OO. Visual estimation of the response at the OO correctly predicted good-to-excellent intubating conditions in more than 90% of cases for all the currently available muscle relaxants. IMPLICATIONS: Onset time of neuromuscular blockade, as estimated visually at the orbicularis oculi, depends on the muscle relaxants given. Regardless of the relaxant used, intubating conditions at loss of orbicularis oculi are acceptable.

Adolescent↗