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Biomedical subjects

R M Kacmarek

Publications and source records attributed to R M Kacmarek.

At least 73 records · Page 4Linked to original sources

The response of flow-triggered infant ventilators.

Patient-triggered ventilation (PTV) has not been feasible for infants because of large trigger pressures and long delay times with pressure-triggered systems. Recently, four infant ventilators with flow triggering have become available. We questioned if delay times, trigger pressures, and trigger work with these ventilators would be acceptable for PTV in infants. All ventilators were attached via 3-, 4-, and 5-mm endotracheal tubes to a spontaneously breathing infant lung model. The lung simulator was set at an inspiratory time of 0.65 s, tidal volume of 15, 30, and 45 ml, and 0 and 5 cm H2O positive end-expiratory pressure (PEEP). Delay time, trigger pressure, and trigger work were determined from pressure measured at the proximal airway, trachea, and alveolus. There were significant differences between the endotracheal tube sizes, sites of measurement, ventilatory demand and ventilator brand at each PEEP level for delay time, trigger pressure, and trigger work (p < 0.001). Delay time was greatest with the 3-mm endotracheal tube at high ventilatory drive (maximum 138.2 +/- 2.1 ms). Both trigger pressure (minimum 0.23 +/- 0.02 cm H2O) and trigger work (minimum 0.05 +/- 0.01 g.ml) increased with decreasing endotracheal tube size, increasing ventilatory demand, use of PEEP, and site of measurement: alveolus > trachea > airway (maximum: trigger pressure 5.04 +/- 0.02 cm H2O; trigger work 114.48 +/- 0.88 g.ml). PTV may not be appropriate under conditions of increased ventilatory drive and small endotracheal tube size in infants.

Age Factors↗

The effects of applied vs auto-PEEP on local lung unit pressure and volume in a four-unit lung model.

BACKGROUND: The application of positive end-expiratory pressure (PEEP) and maintenance of increased mean airway pressure (MAP) has been associated with improved oxygenation in adult respiratory distress syndrome. Recently, attention has been directed toward elevating MAP by establishing auto-PEEP when ventilating with an inverse inspiratory to expiratory ratio in opposition to applied PEEP. We theorized that FRC distribution and local lung unit end-expiratory pressure (EEP) would be different when equal levels of PEEP were established by applying PEEP or by producing auto-PEEP. METHODS: Using a four-chamber lung model with each chamber having a different time constant (TC), we applied equal levels of applied PEEP (I:E ratio 1:3) and auto-PEEP (I:E ratio 3:1) and evaluated local lung unit EEP and end expiratory lung volume (EELV). RESULTS: During all trials with applied PEEP, local lung unit EEP was equal to applied PEEP, whereas during auto-PEEP local EEP differed (p < 0.01). At a tracheal auto-PEEP level of 12.7 cm H2O, the lung unit with the longest TC (slow lung unit) had an EEP of 15.8 cm H2O, while the shortest TC unit (fast lung unit) had an EEP of 10.1 cm H2O (p < 0.01). Similarly, local EELVs were more maldistributed with auto-PEEP than with applied PEEP. At a tracheal PEEP level of 12.7 cm H2O, the EELV increase in the slow lung unit with auto-PEEP was 1,054 mL vs 918 with applied PEEP (p < 0.01), whereas the fast lung unit's EELV increase with auto-PEEP was 142 mL compared with 212 mL with applied PEEP (p < 0.01). CONCLUSION: Comparing equal levels of the auto-PEEP with applied PEEP, a greater maldistribution of local lung unit EEP and EELV was established with the auto-PEEP. During auto-PEEP, the greatest EEP and EELV occurred in the slow lung unit, and the lowest EEP and EELV developed in the fast lung unit.

Adult↗

Introducing new mechanical ventilation technology: the hospital perspective.

The introduction of innovative mechanical ventilation technology requires a careful assessment of the cost-benefit relationship of the new technology. Justification for purchase can be sometimes be made on the basis of improved patient safety and physiologic response. Improved patient outcome is much more difficult to demonstrate. It is clear in today's health-care environment that outcome-based research is needed before new technology is introduced to the marketplace, if that new technology is to become part of the average community-hospital complement of mechanical ventilators.

Capital Expenditures↗

Prolonged inhalation of low concentrations of nitric oxide in patients with severe adult respiratory distress syndrome. Effects on pulmonary hemodynamics and oxygenation.

BACKGROUND: Nitric oxide (NO) inhalation selectively decreases pulmonary artery hypertension and improves arterial oxygenation in patients with the adult respiratory distress syndrome (ARDS). In this study of patients with severe ARDS, we sought to determine the effect of inhaled NO dose and time on pulmonary artery pressure and oxygen exchange and to determine which patients with ARDS are most likely to show this response. METHODS: Thirteen patients with severe ARDS (hospital mortality 67%) inhaled 0-40 parts per million (ppm) NO. Seven of these patients continued to breathe 2-20 ppm NO for 2-27 days. RESULTS: Inhaling 5-40 ppm NO decreased mean pulmonary artery pressure in a dose-related fashion (from 34 +/- 7 to 30 +/- 7 mmHg at 20 ppm NO). Systemic arterial pressure did not change. The ratio of arterial oxygen tension to inspired oxygen fraction increased (from 126 +/- 36 to 149 +/- 38 mmHg) and the venous admixture decreased (from 31.2 +/- 5.5 to 28.2 +/- 5.2%) without a clear dose-response effect. During prolonged NO inhalation, 2-20 ppm NO effectively reduced mean pulmonary artery pressure (38 +/- 7 vs. 31 +/- 6 mmHg) and increased arterial oxygen tension (79 +/- 10 vs. 114 +/- 27 mmHg) without evidence of tachyphylaxis. The decrease of pulmonary vascular resistance during NO inhalation correlated with the level of pulmonary vascular resistance without NO (r = -0.72). The reduction of venous admixture correlated with the level of venous admixture without NO (r = -0.78). CONCLUSIONS: Long-term NO inhalation at low concentrations selectively decreases mean pulmonary artery pressure and improves arterial oxygen tension in patients with ARDS. The selective pulmonary vasodilation effect is most pronounced in ARDS patients with the greatest degree of pulmonary vasoconstriction.

Administration, Inhalation↗

Imposed work and oxygen delivery during spontaneous breathing with adult disposable manual ventilators.

BACKGROUND: Manual ventilators (resuscitators) are used primarily to ventilate the lungs of patients lacking spontaneous ventilatory effort. However, in many settings patients are allowed to breathe through the manual ventilator. Although many aspects of manual ventilator function have been studied, very little has been reported on the use of manual ventilators during spontaneous breathing. The purpose of this study was to evaluate inspiratory and expiratory imposed work of breathing and oxygen delivery during spontaneous breathing through disposable manual ventilators. METHODS: Simulated spontaneous breathing was established with a two-chambered test lung, with one chamber serving as the test chamber and the other as the driving chamber. Imposed work of breathing was evaluated with decelerating inspiratory flow at a rate of 20 breaths/min at tidal volume (VT) 0.25 1 and peak flow 40 l/min, at VT 0.5 l and peak flow 80 l/min, and VT 0.81 and peak flow 120 l/min. Flow (integrated to volume) and pressure were measured between the manual ventilator and test lung, and inspiratory and expiratory imposed work of breathing were calculated by integration of the volume-pressure curve. Oxygen concentration was measured with an oxygen analyzer placed between the manual ventilator and the test lung at 20 breaths/min, VT 0.5 l, and flow 45 l/min. An oxygen flow of 15 l/min was added to the device for all evaluations. Two of the manual ventilators had built-in positive end-expiratory pressure valves, and imposed work was evaluated at 10 cmH2O with these. RESULTS: There were significant differences in imposed work between inspiration and expiration (P < 0.001) and among the three levels of ventilatory demand (P < 0.001). For each ventilatory demand, there was a significant difference in work between manual ventilator brands for inspiratory work and expiratory work (P < 0.001). At a VT of 0.5 l and peak flow of 80 l/min, the pooled inspiratory imposed work for all manual ventilators was 0.44 +/- 0.12 J/l, and the pooled expiratory imposed work was 0.29 +/- 0.05 J/l. With 10 cmH2O positive end-expiratory pressure, the inspiratory imposed work was very high (> 1 J/l). Four of the devices were unable to deliver more than 0.85 oxygen concentration at the spontaneous ventilatory pattern evaluated. CONCLUSIONS: Adult disposable manual ventilators produce a substantial imposed work of spontaneous breathing, which is increased with the addition of positive end-expiratory pressure. With some manual ventilators, a high oxygen concentration may not be delivered during spontaneous breathing. We recommend that patients not be allowed to spontaneously breathe through disposable manual ventilators.

Adult↗

Comparison of inspiratory work of breathing between flow-triggered and pressure-triggered demand flow systems in rabbits.

OBJECTIVES: Flow-triggered continuous positive airway pressure decreases the inspiratory work of breathing in adults when compared with pressure-triggered continuous positive airway pressure. However, the effect of flow-triggered continuous positive airway pressure on work of breathing in neonates is not known. Our objective was to determine if flow-triggering was superior to pressure triggering in the presence of narrow endotracheal tubes, such as those tubes used in neonates. DESIGN: Prospective evaluation using within-animal comparison of flow-triggering and pressure-triggering demand flow systems. SETTING: The animal laboratory in a university hospital. SUBJECTS: Six spontaneously breathing white rabbits, tracheostomized and intubated with 3- and 4-mm inner diameter endotracheal tubes. INTERVENTIONS: The animals were connected to a ventilator through a standard respiratory circuit. The ventilator was randomly operated in the following modes: flow-triggered continuous positive airway pressure, pressure-triggered continuous positive airway pressure, flow-triggered with 5 cm H2O pressure support ventilation, and pressure-triggered with 5 cm H2O pressure support ventilation. MEASUREMENTS AND MAIN RESULTS: Esophageal pressure, airway pressure, and flow signals were monitored. Control data were obtained while the rabbits were breathing room air through the endotracheal tube. With 3-mm inner diameter endotracheal tubes, the negative deflection of esophageal pressure during flow-triggered continuous positive airway pressure was significantly less than control; however, negative deflection of esophageal pressure during pressure-triggered continuous positive airway pressure did not significantly differ from control. The application of 5 cm H2O pressure support ventilation with flow-triggering decreased negative deflection of esophageal pressure significantly compared with flow-triggered continuous positive airway pressure, pressure-triggered continuous positive airway pressure, and control. With endotracheal tube inner diameter of 4 mm, flow-triggered continuous positive airway pressure and pressure-triggered continuous positive airway pressure did not show any differences compared to control. Negative deflection of esophageal pressure differed under all conditions except control when results with the 3-mm inner diameter endotracheal tube were compared with the 4-mm inner diameter endotracheal tube. CONCLUSIONS: Flow-triggering is superior to pressure-triggering in the presence of a 3-mm inner diameter endotracheal tube. This difference was not clear with a 4-mm inner diameter endotracheal tube. The size of the endotracheal tube may be the most important variable in evaluating the approach used to ventilate small neonates.

Air Pressure↗

Effects of disposable or interchangeable positive end-expiratory pressure valves on work of breathing during the application of continuous positive airway pressure.

OBJECTIVE: To determine which of a series of disposable or interchangeable positive end-expiratory pressure (PEEP) devices functions with the least imposition of inspiratory and expiratory work during continuous positive airway pressure. DESIGN: Prospective laboratory evaluation performed on a lung model. SETTING: Research laboratory at a university medical center. INTERVENTIONS: A spontaneously breathing lung model, created from a training test lung and a volume ventilator, were used to simulate a patient spontaneously breathing at a tidal volume of 0.4 L, peak inspiratory flow of 40 L/min, an inspiration/expiration ratio of 1:2, and a respiratory rate of 20 breaths/min. Ten PEEP valves attached to a continuous high-flow system were evaluated. MEASUREMENTS AND MAIN RESULTS: All of the PEEP valves studied imposed high levels of both inspiratory and expiratory work of breathing. The BE-171 and BE-142 valves (Instrumentation Industries) imposed the least amount of inspiratory work. In general, imposed inspiratory work accounted for approximately 70% to 80% of total imposed work of breathing. CONCLUSIONS: All of the disposable/interchangeable PEEP valves that were studied imposed a considerable amount of both inspiratory and expiratory work, even when the continuous flow provided exceeded the peak inspiratory flow demands of the lung model. The primary reason for the high imposed work levels is the high gas-flow resistance of all of the valves studied.

Airway Resistance↗

Syringe-actuated metered dose inhalers: a quantitative laboratory evaluation of albuterol delivery through nozzle extensions.

The metered dose inhaler (MDI) is a device that can be used to supply aerosolized bronchodilators to the tracheobronchial tree of patients requiring endotracheal intubation. Because direct actuation of the MDI into the breathing circuit is inefficient, a technique of extending the MDI nozzle with small-bore, long, intravenous catheters has been devised. To facilitate connecting the MDI to the extension and actuating the release of aerosol, insertion of the MDI cannister into the barrel of a large syringe attached to the Luer hub of the extension has been proposed but not quantitatively evaluated. The purpose of this study was to test, in a laboratory model, the performance of syringe-actuated MDIs attached to nozzle extensions. The deposition of the bronchodilator albuterol in the delivery device and distal to the extension was quantified spectrophotometrically. Maximum distal delivery of drug from nozzle extensions fashioned from small-bore (19-gauge) catheters was 80% of the actuated release. Loss of drug to the inner surface of the syringe plus extension varied inversely with the number of successive actuations. Syringes from two manufacturers in two sizes were compared and found to perform comparably. Syringes could be attached to the Luer connector of the secondary sampling channel of special pediatric-sized endotracheal tubes (ETTs) and the channels were evaluated as nozzle extensions, with distal delivery > 80% as efficient as the 19-gauge intravenous catheter. We conclude that syringe actuation of MDIs through nozzle extensions is an efficient method for supplying the aerosol distal to the tip of the ETT.(ABSTRACT TRUNCATED AT 250 WORDS)

Albuterol↗

Diaphragmatic shortening after thoracic surgery in humans. Effects of mechanical ventilation and thoracic epidural anesthesia.

BACKGROUND: Diaphragmatic function is believed to be inhibited after thoracic surgery and may be improved by thoracic epidural anesthesia. METHODS: Diaphragmatic function after a thoracotomy was monitored by implanting one pair of sonomicrometry crystals and two electromyogram (EMG) electrodes on the costal diaphragm of six patients undergoing an elective pulmonary resection. Crystals and EMG electrodes remained in place for 12-24 h. RESULTS: During mechanical ventilation, costal diaphragmatic length (as a percent of rest length; %LFRC) decreased passively as tidal volume (VT) increased (%LFRC = 2.81 + 1.12 x 10(-2) VT (ml), r = 0.99). During spontaneous ventilation, the costal shortening (2.1 +/- 2.3 %LFRC) was less than during mechanical ventilation (7.9 +/- 3.0 %LFRC, P < 0.05) at the same VT. Comparing spontaneous ventilation before and 30 min after thoracic epidural anesthesia, there were increases of VT (390 +/- 78 to 555 +/- 75 ml), vital capacity (1.37 +/- 0.16 to 1.68 +/- 0.21 l), and esophageal (-8.5 +/- 1.5 to -10.6 +/- 1.7 cmH2O), gastric (-0.7 +/- 0.8 to +0.8 +/- 0.8 cmH2O), and transdiaphragmatic (7.7 +/- 1.5 to 11.5 +/- 1.9 cmH2O) pressures, but diaphragmatic EMG and shortening fraction remained constant. In three of six patients, epidural anesthesia produced paradoxical segment lengthening upon inspiration. CONCLUSIONS: Thoracotomy and pulmonary resection produce a marked reduction of active diaphragmatic shortening, which is not reversed by thoracic epidural anesthesia despite improvement of other indices of respiratory function.

Adenocarcinoma↗

Regional diaphragmatic length and EMG activity during inspiratory pressure support and CPAP in awake sheep.

We examined diaphragmatic mechanics in awake sheep during quiet breathing (QB) and the randomized application of 5, 10, and 15 cmH2O continuous positive airway pressure (CPAP), inspiratory pressure support (IPS), and equal combinations of IPS and CPAP (IPS/CPAP). We measured esophageal, gastric, and transdiaphragmatic (Pdi) pressures and regional length, shortening, and electromyogram (EMG) activity of both costal and crural diaphragmatic segments. Segmental resting length normalized to QB decreased during 15 cmH2O CPAP (costal, 19.2 +/- 3.3%; crural, 7.5 +/- 2.1%; P < 0.05) and during 15/15 cmH2O IPS/CPAP (costal 25.3 +/- 4.8%, crural 9.9 +/- 2.6%; P < 0.05). Only during 15 cmH2O IPS did costal shortening fraction increase (67% QB; P < 0.05). Compared with QB, during 15 cmH2O CPAP, end-tidal CO2 increased 6 Torr, regional EMG activity increased threefold, and Pdi increased 58%. During 15 cmH2O IPS these values decreased 3 Torr, threefold, and 44% respectively, but during IPS/CPAP they remained unchanged. Expiratory gastric pressure (Exp-Pga) reached 4.3 +/- 0.4 cmH2O at 15 cmH2O CPAP, but during IPS/CPAP Exp-Pga was less (maximum of 1.7 +/- 0.4 cmH2O) than at comparable CPAP (P < 0.05), despite the shorter diaphragmatic length. We conclude that: 1) IPS alters the actions of the diaphragm during CPAP, 2) Exp-Pga is poorly coupled to diaphragmatic end-expiratory length, and 3) both IPS and the release of Exp-Pga assist active diaphragmatic shortening.

Animals↗

Small bore nozzle extensions to improve the delivery efficiency of drugs from metered dose inhalers: laboratory evaluation.

Metered dose inhalers (MDIs) are frequently used to supply aerosolized drugs, particularly bronchodilators, to the tracheobronchial tree of patients with endotracheal tubes in the intensive care unit or in the operating room. The efficiency of delivery to the lungs of agents such as the beta 2-adrenergic agonists is known to be low. In an in vitro model, we evaluated a means of improving the delivery of drug released from an MDI beyond the distal tip of the endotracheal tube. Extensions of the MDI nozzle were fashioned from modified intravenous catheters or sections of small bore polyethylene tubing. A model trachea/carina was constructed and suspended above a collecting device. An albuterol MDI was actuated through the nozzle extension and into the model airway. We measured the quantity of albuterol deposited in the nozzle extension, in the trachea/carina and in the distal collecting device. Particle size distribution was determined with a cascade impactor. The results indicate an inverse relationship between the quantity of drug delivered distally and the inner diameter of the nozzle extension, with a marked increase in delivery for an inner diameter < 1 mm. Ninety percent of the actuated dose from the MDI exited a 0.76-mm inner diameter nozzle extension. From 20 to 30% of the nominal MDI dose was recovered from the distal collector, 70% of which deposited in the particle size range of 1 to 5 microns. Deposition in the trachea/carina was high, but this was reduced by introducing a flare in the tip of the nozzle extension, which did not affect the dose reaching the distal collector.(ABSTRACT TRUNCATED AT 250 WORDS)

Aerosols↗

Effects of aminophylline on regional diaphragmatic shortening after thoracotomy in the awake lamb.

Aminophylline has been reported to augment diaphragmatic contraction, although this remains a controversial finding. We studied the effect of aminophylline on regional diaphragmatic shortening, changes in transdiaphragmatic pressure (delta Pdi), and integrated regional electromyographic (EMG) activity of the diaphragm (Edi) after a right thoracotomy in nine lambs using sonomicrometry, esophageal and gastric balloons, and EMG. Sonomicrometer crystals and EMG leads were implanted into the costal and crural regions of the diaphragm through a right thoracotomy, and a tracheostomy was performed. The animals were studied while awake within 4 days after surgery. Fractional costal and crural diaphragmatic shortening was measured using the sonomicrometer; delta Pdi was calculated from esophageal and gastric pressures. Respiratory variables were measured through the tracheostomy. Data were collected during quiet breathing and during CO2 rebreathing. After control measurements, aminophylline (10 mg/kg) was administered intravenously, producing a serum concentration of 17.7 +/- 1.5 micrograms/ml. Aminophylline did not augment shortening, increase delta Pdi, or overcome postoperative diaphragmatic inhibition acutely in the awake sheep after a right lateral thoracotomy. A small decrease of end-tidal CO2, from 5.2% to 4.9%, was measured at rest during aminophylline infusion, but Edi was unchanged. Although during CO2 rebreathing diaphragmatic shortening increased, the addition of aminophylline did not further augment shortening. Our data in awake lambs suggest that aminophylline does not improve diaphragmatic contraction in the acute postoperative period.

Aminophylline↗

Improvement in exercise capacity after nocturnal positive pressure ventilation and tracheostomy in a postpoliomyelitis patient.

Progressive neuromuscular symptoms years after recovery from acute paralytic poliomyelitis have been termed the PPS. We describe a 52-year-old man who contracted poliomyelitis at age 9 years who fully recovered and 33 years later developed progressive dyspnea. Neurologic evaluation revealed bilateral paralysis of the vocal cords, generalized weakness, and accentuated mouth occlusion pressure and ventilatory responses to hypercapnic, hyperoxic breathing. An EMG and muscle biopsy showed changes consistent with acute and chronic denervation. Cardiopulmonary exercise evaluation demonstrated a pulmonary mechanical limit with excessive ventilation relative to CO2 output. Tracheostomy and nocturnal positive pressure ventilation resulted in increased respiratory muscle strength, normalization of ventilatory drive and marked improvement in exercise capacity.

Dyspnea↗

Evaluation of a double-enclosure double-vacuum unit scavenging system for ribavirin administration.

BACKGROUND: Because of our concern for the safety of bedside caregivers who care for infants receiving ribavirin for long periods of time each day for many days, we evaluated the effectiveness of a double-tent enclosure with vacuum scavengers during simulated and actual patient administration. MATERIALS & METHODS: Part 1--We sought to determine whether two or three scavenging pumps were necessary, by 3 8-h trials with 2 pumps and 3 8-h trials with 3 pumps. Entry into and replacement of mannequin occurred according to protocol. Continuous samples were obtained from three locations in the room. Part 2--The double-tent, double-pump scavenger system was evaluated with patient simulation for a 16-h period. Part 3--The double-tent, double-pump system was evaluated during actual patient use. Air samples were also collected during ribavirin administration via mechanical ventilator circuit with filters in the expiratory limb. Coded environmental samples were analyzed by liquid chromatography. RESULTS: Environmental levels were effectively decreased below published maximal acceptable levels. CONCLUSIONS: Use of a double-enclosure, double-pump scavenging system and implementation of entry protocols ensure reduction of environmental ribavirin levels below recommended maximum levels during administration to spontaneously breathing patients. Use of expiratory filters adequately controls environmental ribavirin levels during mechanical ventilation.

Adult↗