VesaliusA.De humani corporis fabrica, Lib VII, Cap. XIX De vivorum sectione nonnulla. Basle, Operinus, 1543, 658.
2.
Consensus Conference on the Essentials of Mechanical Ventilators. Respir Care1992; 37:999–1130.
3.
MorrisAH, WallaceCJ, ClemmerTP, . Extracorporeal CO2 removal therapy for adult respiratory distress syndrome patients. Respir Care1990;35:224–31.
4.
HicklingK.Low volume ventilation with permissive hypercapnia in the adult respiratory distress syndrome. Clin Intensive Care1992; 3:67–78.
5.
LewandowskiK, SlamaK, FalkeKJ. Approaches to improve survival in ARDS. In: VincentJL, ed. Yearbook of intensive care and emergency medicine. Berlin: Springer Verlag, 1992; 372–83.
6.
SuchytaMR, ClemmerTP, OrmeJFJr, MorrisAH, ElliottCG. Increased survival of ARDS patients with severe hypoxemia. Chest1991; 99:951–55.
7.
O'RourkeP, CroneR, VacantiJ, Wareet al. Extracorporeal membrane oxygenation and conventional medical therapy in neonates with persistent pulmonary hypertension of the new-born: a prospective randomized study. Pediatrics1989; 84:957–63.
8.
GattinoniL, PesentiA, MascheroniD, . Low-frequency positive-pressure ventilation with extracorporeal CO2 removal in severe acute respiratory failure. JAMA1986; 256:881–86.
9.
MorrisAH, WallaceCJ, ClemmerTP, OrmeJFJr, . Final report: computerized protocol controlled clinical trial of new therapy which includes ECCO2R for ARDS (abstract). Am Rev Respir Dis1992; 145(2):A184.
10.
PiersonDJ. Persistent bronchopleural air leak during mechanical ventilation. Respir Care1982; 27:408.
11.
PownerDJ, ClineCD, RodmanGHJr. Effect of chest tube suction on gas flow through a bronchopleural fistula. Crit Care Med1985; 13:99–101.
12.
MuizelaarJP, MarmarouA, WardJD, ChoiSC, . Adverse effects of prolonged hyperventilation in patients with severe head injury: a randomized clinical trial. J Neurosurg1991; 75:731–39.
13.
CooperKR. Respiratory complications in patients with serious head injuries. In: BeckerDP, GudeurarSK eds. Textbook of head injury. Philadelphia: WB Saunders Co, 1989; 260.
RasanenJ, NikkiP, HeikkilaJ.Acute myocardial infarction complicated by respiratory failure: the effects of mechanical ventilation. Chest1984; 85:21–8.
16.
WeberKT, JanickiJS, HunterWC, . The contractile behavior of the heart and its functional coupling to the circulation. Prog Cardiovasc Dis1982; 24:375–400.
17.
MathruM, RaoTL, El-EtrAA, . Hemodynamic response to changes in ventilatory patterns in patients with normal and poor left ventricular reserve. Crit Care Med1982; 10:423–6.
GibsonGJ, PrideNB, DavisJN, . Pulmonary mechanics in patients with respiratory muscle weakness. Am Rev Respir Dis1977; 115:389–95.
20.
TobinMJ. Respiratory muscles in disease. Clin Chest Med1988; 9:263–86.
21.
ManselJK, NormanJR. Respiratory complications and management of spinal cord injuries. Chest1990; 97:1446–52.
22.
PepePE, MariniJ.Occult positive end-expiratory pressure in mechanically ventilated patients with airflow obstruction: the auto-PEEP effect. Am Rev Respir Dis1982; 126:166–170.
23.
WilliamsTJ, TuxenDV, ScheinkestelCD, . Risk factors for morbidity in mechanically ventilated patients with acute severe asthma. Am Rev Respir Dis1992; 146:607–15.
24.
ScottLR, BensonMS, PiersonDJ. Effect of inspiratory flow-rate and circuit compressible volume on auto-PEEP during mechanical ventilation. Respir Care1986; 31:1075–79.
25.
MariniJJ, CappsJS, CulverBH. The inspiratory work of breathing during assisted mechanical ventilation. Chest1985; 87:612–18.
26.
DarioliR, PerretC.Mechanical control hypoventilation in status asthmaticus. Am Rev Respir Dis1984; 129:385–87.
27.
MenitoveSM, GoldringRM. Combined ventilator and bicarbonate strategy in the management of status asthmaticus. Am J Med1983; 74:898–90.
28.
MeyersJR, LembeckL, O'KaneH, . Changes in functional residual capacity of the lungs after operation. Arch Surg1975;110:576–83.
29.
AliJ, WeiselRD, LayugAB, . Consequences of postoperative alterations in respiratory mechanics. Am J Surg1974; 128:376–82.
30.
RegisterSD, DownsJB, StockMC, . Is 50% oxygen harmful?Crit Care Med1987; 15:598–601.
31.
CullenDJ, CullenBL. Postanesthetic complications. Surg Clin North Am1975; 55:987–98.
32.
ParishJM, GraceyDR, SouthernPA, . Differential mechanical ventilation in respiratory failure due to severe unilateral lung disease. Mayo Clin Proc1984; 59:822–28.
RoussosC, MacklemPT. Inspiratory muscle fatigue. In: FishmanAP, MacklemPT, MeadJ, eds. Handbook of physiology. Bethesda MD: American Physiological Society, 1986; 511–24.
36.
KacmarekRM, VenegasJ.Mechanical ventilatory rates and tidal volumes. Respir Care1987; 32:466–78.
37.
HicklingKG, HendersonSJ, JacksonR.Low mortality associated with low volume, pressure limited ventilation with permissive hypercapnia in severe adult respiratory distress syndrome. Intensive Care Med1990; 16:372–77.
38.
GattinoniL, PesentiA, BombinoM, . Relationships between lung computed tomographic density, gas exchange, and PEEP in acute respiratory failure. Anesthesiology1988; 69:824–32.
39.
GattinoniL, PesentiA, AvalliL, . Pressure-volume curve of total respiratory system in acute respiratory failure: computed tomographic scan study. Am Rev Respir Dis1987; 136:730–36.
40.
MariniJJ. New approaches to the ventilatory management of the adult respiratory distress syndrome. J Crit Care1992; 87:256–57.
41.
SmithTC, MariniJJ. Impact of PEEP on lung mechanics and work of breathing in severe airflow obstruction. J Appl Physiol1988; 65:1488–99.
42.
MariniJJ, RodriguezRM, LambV.The inspiratory workload of patient-initiated mechanical ventilation. Am Rev Respir Dis1986; 134:902–09.
43.
KacmarekRM. Management of the patient-mechanical ventilator system. In: PiersonDJ, KacmarekRM, eds. Foundations of respiratory care. New York: Churchill Livingstone Inc, 1992; 973–97.
44.
MariniJJ, RavenscraftSA. Mean airway pressure: physiologic determinants and clinical importance-Part 2: Clinical implications. Crit Care Med1992; 20:1604–16.
45.
Al-SaadyN, BennettED. Decelerating inspiratory flow waveform improves lung mechanics and gas exchange in patients on intermittent positive pressure ventilation. Intensive Care Med1985; 11:68–75.
46.
BakerAB, RestallR, ClarkBW. Effects of varying inspiratory flow waveform and time in intermittent positive pressure ventilation: emphysema. Br J Anaesth1982; 54:547–54.
47.
SassoonCSH, LodiaR, RheemanCH, . Inspiratory muscle work of breathing during flow-by, demand-flow, and continuous-flow systems in patients with chronic obstructive pulmonary disease. Am Rev Respir Dis1992; 145:1219–22.
48.
StollerJK, KacmarekRM. Ventilatory strategies in the management of the adult respiratory distress syndrome. Clin Chest Med1990; 11:755–72.
49.
SuterPM, FairleyHB, IsenbergMD. Optimum end-expiratory airway pressure in patients with acute pulmonary failure. N Engl J Med1975; 292:284–89.
50.
FewellJE, AdendscheinDR, CarlsonCJ, . Mechanisms of decreased right and left ventricular end-diastolic volumes during continuous positive-pressure ventilation in dogs (editorial). Circ Res1980; 47:467–72.
51.
BenitoS, LemaireF.Pulmonary pressure-volume relationship in acute respiratory distress syndrome in adults: role of positive end-expiratory pressure. J Crit Care1990; 5:27–34.
52.
BannerMJ, BlanchPB, KirbyRR. Imposed work of breathing and methods of triggering a demand-flow, continuous positive airway pressure system. Crit Care Med1993; 21:183–90.
53.
HessD, TaborT.Comparison of six methods to calculate airway resistance in adult mechanically ventilated patients. J Clin Monit (in press).
54.
SassoonCSH. Mechanical ventilator design and function: the trigger variable. Respir Care1992; 37:1056–69.
55.
HirschC, KacmarekRM, StanekK.Work of breathing during CPAP and PSV imposed by the new generation mechanical ventilators: a lung model study. Respir Care1991; 36:815–28.
56.
PloysongsangY, BransonRD, RashkinMC, . Effect of flow rate and duration of use on the pressure drop across six artificial noses. Respir Care1989; 34:902–07.
57.
Humidifiers for medical use. Part I: Heated humidifiers. International Standards (ISO/IS 8185, 1984). International Organization for Standardization, Technical Committee. New York: American National Standard Institute, 1985.
58.
BeydonL, ChasseM, HarfA, . Inspiratory work of breathing during spontaneous ventilation using demand valves and continuous flow systems. Am Rev Respir Dis1988; 138:300–04.
59.
PetrofBJ, LegareM, GoldbergP, . Continuous positive airway pressure reduces work of breathing and dyspnea during weaning from mechanical ventilation of patients with severe airflow obstruction. Am Rev Resp Dis1990; 141:281–89.
60.
ShapiroM, WilsonRK, CasarG, . Work of breathing through different sized endotracheal tubes. Crit Care Med1986; 14:1028–31.
61.
MacIntyreN, NishimuraM, UsadaY, . The Nagoya conference on system design and patient-ventilator interactions during pressure support ventilation. Chest1990; 97:1463–66.
62.
American Association for Respiratory Care. Consensus statement on the essentials of mechanical ventilators-1992. Respir Care1992; 37:1000–08.
MariniIJ, SmithTC, LambVJ. External work output and force generation during synchronized intermittent mechanical ventilation. Effect of machine assistance on breathing effort. Am Rev Respir Dis1988; 138:1169–79.
65.
MacIntyreNR. Respiratory function during pressure support ventilation. Chest1986; 89:677–83.
66.
YounesM.Patient-ventilator interaction with pressure-assisted modalities of ventilatory support. Semin Respir Med1993; 14:299–322.
67.
MacIntyreNR, HoLi. Effect of initial flow rate and breath termination criteria on pressure support ventilation. Chest1991; 99:134–38.
68.
BransonRD, CampbellRS, DavisKJr, . Altering flow rate during maximum pressure support ventilation. Respir Care1990; 35:1056–64.
69.
YounesM.Proportional assist ventilation, a new approach to ventilator support. Theory. Am Rev Respir Dis1992; 145:114–20.
70.
PingletonSK. Complications of acute respiratory failure. Am Rev Respir Dis1988; 137:1463–93.
71.
HeffnerJE. Airway management in the critically ill patient. Clin Care Clinics1990; 6:533–50.
72.
MariniJJ, KelsenSG. Re-targeting ventilatory objectives in adult respiratory distress syndrome. New treatment prospects-persistent questions. Am Rev Respir Dis1992; 146:2–3.
DreyfussD, BassetG, SolerP, . Intermittent positive pressure hyperventilation with high inflation pressures produces pulmonary microvascular injury in rats. Am Rev Respir Dis1985; 132:880–84.
75.
DreyfussD, SolerP, BassetG, . High inflation pressure pulmonary edema. Respective effects of high airway pressure, high tidal volume and positive end-expiratory pressure. Am Rev Respir Dis1988; 137:1159–64.
76.
FuZ, CostelloML, TsukimotoK, . High lung volume increases stress failure in pulmonary capillaries. J Appl Physiol1992; 73:123–33.
77.
MuscedereJG, MullenJBM, GanK, . Tidal ventilation at low airway pressures can cause pulmonary barotrauma (abstract). Am Rev Respir Dis1992; 145:A454.
78.
ParkerJR, HernandezLA, LongneckerGL, . Lung edema caused by high peak airway pressure in dogs. Role of increased microvascular filtration pressure and permeability. Am Rev Respir Dis1990; 142:321–28.
79.
ParkerJC, HernandezLA, PeevyKJ. Mechanisms of ventilator-induced lung injury. Crit Care Med1993; 21:131–43.
80.
WebbH, TierneyD.Experimental pulmonary edema due to intermittent positive pressure ventilation with high inflation pressures. Protection by positive end-expiratory pressure. Am Rev Respir Dis1974; 110:556–65.
81.
TsunoK, PratoP, KolobowT.Acute lung injury from mechanical ventilation at moderately high airway pressures. J Appl Physiol1990; 69:956–61.
82.
MaunderRJ, ShumanWP, McHughJW, . Preservation of normal lung regions in the adult respiratory distress syndrome. Analysis by computed tomography. JAMA1986; 255:2463–65.
PesentiA.Target blood gases during ARDS ventilatory management (editorial). Intensive Care Med1990; 16:349–51.
85.
HIFI Study Group. High-frequency oscillatory ventilation compared with conventional mechanical ventilation in the treatment of respiratory failure in preterm infants. N Engl J Med1989; 320:88–93.
86.
NahumA, BurkeWC, RavenscraftSA, . Lung mechanics and gas exchange during pressure-control ventilation in dogs. Augmentation of CO2 elimination by an intratracheal catheter. Am Rev Respir Dis1992; 146:965–73.
87.
MarcyTW, MariniIJ. Inverse ratio ventilation in ARDS. Rationale and implementation. Chest1991; 100:494–504.
RoubyJJ. Pressure release ventilation. In: VincentJL, ed. Update in intensive care and emergency medicine. Berlin: Springer-Verlag, 1990; 185–95.
90.
RoubyJJ, Ben AmeurM, JawishD, . Continuous positive airway pressure (CPAP) vs intermittent mandatory pressure release (IMPRV) in patients with acute respiratory failure. Intensive Care Med1992; 18:69–75.
91.
MortensenJD. Augmentation of blood gas transfer by means of an intravascular blood gas exchange (IVOX). In: MariniJJ, RoussosC, eds. Ventilatory Failure. Berlin: Springer-Verlag, 1991; 318–46.
PinskyMR. Effects of mechanical ventilation on the cardiovascular system. Clin Chest Clinics1990; 6:663–78.
94.
MariniJJ, RavenscraftSA. Mean airway pressure: physiologic determinants and clinical importance-Part 1: Physiologic determinants and measurements. Crit Care Med1992; 20:1461–72.
95.
TuxenDV, LaneS.The effects of ventilatory pattern on hyperinflation, airway pressures, and circulation in mechanical ventilation of patients with severe air-flow obstruction. Am Rev Respir Dis1987; 136:872–79.
96.
RanieriVM, GiulianiR, EissaNT, . Oxygen delivery-consumption relationship in septic adult patients: the effects of positive end-pressure. J Crit Care1992; 7:150–57.
97.
RussellJA, RoncoJJ, LockhatD, . Oxygen delivery and consumption and ventricular preload are greater in survivors than in nonsurvivors of the adult respiratory distress syndrome. Am Rev Respir Dis1990; 141:659–65.
Hansen-FlaschenJ, CowanJ, RapsEC. Neuromuscular blockade in the intensive care unit. More than we bargained for. Am Rev Respir Dis1993; 147:234–36.
100.
VialeJP, AnnatG, BertrandO, . Additional inspiratory work in intubated patients breathing with continuous positive airway pressure systems. Anesthesiology1985; 63:536–39.
101.
WardME, CorbeilC, GibbonsW, . Optimization of respiratory muscle relaxation during mechanical ventilation. Anesthesiology1988; 69:29–35.
102.
DownsJB, KleinEF, DesautelsD, . Interminent mandatory ventilation: a new approach to weaning patients from mechanical ventilators. Chest1973; 64:331–35.
SchachterEN, TuckerD, BeckGJ. Does intermittent mandatory ventilation accelerate weaning?JAMA1981; 246:1210–14.
105.
TomlinsonJR, MillerKS, LorchDG, . A prospective comparison of IMV and T-piece weaning from mechanical ventilation. Chest1989; 96:348–52.
106.
BrochardL, HarfA, LorinoH, LemaireF.Inspiratory pressure support prevents diaphragmatic fatigue during weaning from mechanical ventilation. Am Rev Respir Dis1989; 139:513–21.
107.
FiastroJF, HabibMP, QuanSF. Pressure support compensation for inspiratory work due to endotracheal tubes and demand continuous positive airway pressure. Chest1988; 93:499–505.
108.
BrochardL, RuaF, LorinoH, . Inspiratory pressure support compensates for the additional work of breathing caused by the endotracheal tube. Anesthesiology1991; 75:739–45.
109.
AnnatGJ, VialeJP, DereymezCP, . Oxygen cost of breathing and diaphragmatic pressure-time index. Measurement in patients with COPD during weaning with pressure support ventilation. Chest1990; 98:411–14.
110.
HurstJM, BransonRD, DavisKJr, BarretteRR. Cardiopulmonary effects of pressure support ventilation. Arch Surg1989; 124:1067–70.
111.
TorresT, KacmarekRM, KimballWR, . Regional diaphragmatic length and EMG activity during inspiratory pressure support and CPAP in awake sheep. J Appl Physiol (in press).
112.
MartinLD, RaffertyJF, WetzelRC, . Inspiratory work and response times of a modified pediatric volume ventilator during synchronized intermittent mandatory ventilation and pressure support ventilation. Anesthesiology1989; 71:977–81.
113.
KatzJA, MarksJD. Inspiratory work with and without continuous positive airway pressure in patients with acute respiratory failure. Anesthesiology1985; 63:589–607.
114.
SaitoS, TokiokaH, KosakaF.Efficacy of flow-by during continuous positive airway pressure ventilation. Crit Care Med1990; 18:654–56.
115.
HewlettAM, PlottAS, TerryVG. Mandatory minute volume. A new technique in weaning from mechanical ventilation. Anesthesia1977; 32:163–69.
116.
LaabanJP, LemaireF, BaronJF, . Influence of caloric intake on the respiratory mode during mandatory minute ventilation. Chest1985; 87:67–72.
117.
EastTD, ElkhuizenHM, PaceNL. Pressure support with mandatory minute ventilation supplied by the Ohmeda CPU-1 prevents hypoventilation due to respiratory depression in a canine model. Respir Care1989; 34:795–800.
118.
SittingDF, GardnerRM, MorrisAH, . Clinical evaluation of computer-based respiratory care algorithms. Int J Clin Monit Comput1990; 7:177–85.
119.
StricklandJJr, HassonJH. A computer-controlled ventilator weaning system. Chest1991; 100:1096–99.
120.
DojatM, BrochardL, LemaireF, . A knowledge-based system for assisted ventilation of patients in intensive care units. Int J Clin Monit Comput1992; 9:239–50.
121.
HicklingKG. Ventilatory management of ARDS: can it affect outcome?Intensive Care Med1990; 16:219–26.
122.
KolobowT, MorettiMP, FumagalliR, . Severe impairment in lung function induced by high peak airway pressure during mechanical ventilation. Am Rev Respir Dis1987; 135:312–15.
123.
McCullochPR, ForkertPG, FroeseAB. Lung volume maintenance prevents lung injury during high frequency oscillatory ventilation in surfactant-deficient rabbits. Am Rev Respir Dis1988; 137:1185–92.
124.
FroeseAB, BryanAC. High frequency ventilation. Am Rev Respir Dis1987; 135:1363–74.
125.
FusciardiJ, RoubyJJ, BarakatT, . Hemodynamic effects of high-frequency jet ventilation in patients with and without circulatory shock. Anesthesiology1986; 65:485–91.
126.
PinskyMR, MarquezJ, MartinD, . Ventricular assist by cardiac cycle-specific increases in intrathoracic pressure. Chest1987; 91:709–15.
127.
RoubyJJ. High-frequency ventilation. In: VincentJL, ed. Update in intensive care and emergency medicine. Berlin: Springer-Verlag, 1990; 201–13.
128.
KoltonM, CattranEB, KentG, . Oxygenation during high-frequency ventilation compared with conventional mechanical ventilation in two models of lung injury. Anesth Analg1982; 61:323–32.
129.
HamiltonPP, OhayemiA, SmythJA, . Comparison of conventional and high-frequency ventilation, oxygenation and lung pathology. J Appl Physiol1983; 55:131–38.
130.
CarlonGC, HowlandW, RayCJr, . High frequency jet ventilation: A prospective randomized evaluation. Chest1983; 84:551–59.
131.
CirceoLE, HeardSO, GriffithsE, . Overwhelming necrotizing tracheobronchitis due to inadequate humidification during high-frequency jet ventilation. Chest1991; 100:268–69.
132.
RoubyJJ, SimonneauG, BenhamouD, . Factors influencing pulmonary volumes and CO2 elimination during high-frequency jet ventilation. Anesthesiology1985; 63:473–82.
133.
Perez FontanJJ, HeldtGP, GregoryGA. Mean airway pressure and alveolar pressure during high-frequency jet ventilation in rabbits. J Appl Physiol1986; 61:456–63.
134.
RoubyJJ, FusciardiJ, BourgainJL, . High-frequency jet ventilation in postoperative respiratory failure: determinants of oxygenation. Anesthesiology1983; 59:281–87.
135.
SlutskyAS. Nonconventional methods of ventilation. Am Rev Respir Dis1988; 138:175–83.
136.
KacmarekRM, HessD.Pressure-controlled inverse-ratio ventilation: panacea or auto-PEEP?Respir Care1990; 35:945–48.
137.
ArgirasEP, BlakeleyCR, DunnillMS, . High PEEP decreases hyaline membrane formation in surfactant deficient lung. Br J Anaesth1987; 59:1278–85.
138.
GarnerW, DownsJB, StockCM, . Airway pressure release ventilation (APRV): A human trial. Chest1988; 94:779–81.
RasanenJ, DownsJB, StockMC. Cardiovascular effects of conventional positive pressure ventilation and airway pressure release ventilation. Chest1988; 93:911–15.
141.
TobinMJ, YangK.Weaning from mechanical ventilation. Crit Care Clinics1990; 6:725–47.
142.
TobinMJ, PerezW, GuentherSM, . The pattern of breathing during successful and unsuccessful trials of weaning from mechanical ventilation. Am Rev Respir Dis1986; 134:1111–18.
143.
SassoonCS, TeTT, MahutteCK, . Airway occlusion pressure. An important indicator for successful weaning in patients with chronic obstructive pulmonary disease. Am Rev Respir Dis1987; 135:107–13.
144.
SahnSA, LakshminarayanS.Bedside criteria for discontinuation of mechanical ventilation. Chest1973; 63:1002–05.
145.
TahvanainenJ, SalmenperaM, NikkiP.Extubation criteria after weaning from intermittent mandatory ventilation and continuous positive airway pressure. Crit Care Med1983; 11:702–07.
146.
LemaireF, TeboulJ, CinottiL, . Acute left ventricular dysfunction during unsuccessful weaning from mechanical ventilation. Anesthesiology1988; 69:171–79.
147.
HollidayJE, HyersTM. The reduction of weaning time from mechanical ventilation using tidal volume and relaxation biofeedback. Am Rev Respir Dis1990; 141:1214–20.
148.
YangKL, TobinMJ. A prospective study of indexes predicting the outcome of trials of weaning from mechanical ventilation. N Engl J Med1991; 324:1445–50.
149.
JabourER, RabilDM, TruwitJD, . Evaluation of a new weaning index based on ventilatory endurance and the efficiency of gas exchange. Am Rev Respir Dis1991; 144:531–37.
150.
TomlinsonJR, MillerKS, LorchDG, . A prospective comparison of IMV and T-piece weaning from mechanical ventilation. Chest1989; 96:348–52.
MacIntyreNR. Respiratory function during pressure support ventilation. Chest1986; 89:677–83.
153.
BrochardL, PluskwaF, LemaireF.Improved efficacy of spontaneous breathing with inspiratory pressure support. Am Rev Respir Dis1987; 136:411–15.
154.
KacmarekRM. Inspiratory pressure support: does it make a difference. Intensive Care Med1989; 15:337–39.
155.
KacmarekRM. New forms of mechanical ventilation in the adult. Clin Chest Med1988; 9:47–54.
156.
CohenIL, BariN, StrosbergMA, . Reduction of duration and cost of mechanical ventilation in an intensive care unit by use of a ventilatory management team. Crit Care Med1991; 19:1278–84.
157.
AldrichTK, KarpelJP, UhrlassRM, . Weaning from mechanical ventilation: adjunctive use of inspiratory muscle resistive training. Crit Care Med1989; 17:143–147.