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Erschienen in: Intensive Care Medicine 12/2003

01.12.2003 | Review

Evaluation and management of decompression illness—an intensivist’s perspective

verfasst von: Kay Tetzlaff, Erik S. Shank, Claus M. Muth

Erschienen in: Intensive Care Medicine | Ausgabe 12/2003

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Abstract

Decompression illness (DCI) is becoming more prevalent as more people engage in activities involving extreme pressure environments such as recreational scuba-diving. Rapid diagnosis and treatment offer these patients the best chance of survival with minimal sequelae. It is thus important that critical care physicians are able to evaluate and diagnose the signs and symptoms of DCI. The cornerstones of current treatment include the administration of hyperbaric oxygen and adjunctive therapies such as hydration and medications. However, managing patients in a hyperbaric environment does present additional challenges with respect to the particular demands of critical care medicine in an altered pressure environment. This article reviews the underlying pathophysiology, clinical presentation and therapeutic options available to treat DCI, from the intensivist’s perspective.
Literatur
1.
Zurück zum Zitat Strauss RH (1979) Diving medicine. Am Rev Respir Dis 119:1001–1023PubMed Strauss RH (1979) Diving medicine. Am Rev Respir Dis 119:1001–1023PubMed
2.
Zurück zum Zitat Melamed Y, Shupak A, Bitterman H (1992) Medical problems associated with underwater diving. N Engl J Med 326:30–35PubMed Melamed Y, Shupak A, Bitterman H (1992) Medical problems associated with underwater diving. N Engl J Med 326:30–35PubMed
3.
Zurück zum Zitat Neuman TS (2002) Arterial gas embolism and decompression sickness. News Physiol Sci 17:77–81PubMed Neuman TS (2002) Arterial gas embolism and decompression sickness. News Physiol Sci 17:77–81PubMed
4.
Zurück zum Zitat Calder IM (1985) Autopsy and experimental observations on factors leading to barotrauma in man. Undersea Biomed Res 12:165–182PubMed Calder IM (1985) Autopsy and experimental observations on factors leading to barotrauma in man. Undersea Biomed Res 12:165–182PubMed
5.
Zurück zum Zitat Clarke D, Gerard W, Norris T (2002) Pulmonary barotrauma-induced cerebral arterial gas embolism with spontaneous recovery: commentary on the rationale for therapeutic recompression. Aviat Space Environ Med 73:139–146PubMed Clarke D, Gerard W, Norris T (2002) Pulmonary barotrauma-induced cerebral arterial gas embolism with spontaneous recovery: commentary on the rationale for therapeutic recompression. Aviat Space Environ Med 73:139–146PubMed
6.
Zurück zum Zitat Eckenhoff RG, Olstad CS, Carrod G (1990) Human dose-response relationship for decompression and endogenous bubble formation. J Appl Physiol 69:914–918PubMed Eckenhoff RG, Olstad CS, Carrod G (1990) Human dose-response relationship for decompression and endogenous bubble formation. J Appl Physiol 69:914–918PubMed
7.
Zurück zum Zitat Butler BD, Hills BA (1979) The lung as a filter for microbubbles. J Appl Physiol 47:537–543PubMed Butler BD, Hills BA (1979) The lung as a filter for microbubbles. J Appl Physiol 47:537–543PubMed
8.
Zurück zum Zitat Butler BD, Hills BA (1985) Transpulmonary passage of venous air emboli. J Appl Physiol 59:543–547PubMed Butler BD, Hills BA (1985) Transpulmonary passage of venous air emboli. J Appl Physiol 59:543–547PubMed
9.
Zurück zum Zitat Kerut EK, Norfleet WT, Plotnick GD, Giles TD (2001) Patent foramen ovale: a review of associated conditions and the impact of physiological size. J Am Coll Cardiol 38:613–623PubMed Kerut EK, Norfleet WT, Plotnick GD, Giles TD (2001) Patent foramen ovale: a review of associated conditions and the impact of physiological size. J Am Coll Cardiol 38:613–623PubMed
10.
Zurück zum Zitat Wilmshurst PT, Byrne JC, Webb-Peploe MM (1989) Relation between intra-atrial shunts and decompression sickness in divers. Lancet ii:1302–1306 Wilmshurst PT, Byrne JC, Webb-Peploe MM (1989) Relation between intra-atrial shunts and decompression sickness in divers. Lancet ii:1302–1306
11.
Zurück zum Zitat Ward CA, McCullough D, Fraser WD (1987) Relation between complement activation and susceptibility to decompression sickness. J Appl Physiol 62:1160–1166PubMed Ward CA, McCullough D, Fraser WD (1987) Relation between complement activation and susceptibility to decompression sickness. J Appl Physiol 62:1160–1166PubMed
12.
Zurück zum Zitat Helps SC, Gorman DF (1991) Air embolism of the brain in rabbits pretreated with mechlorethamine. Stroke 22:351–354PubMed Helps SC, Gorman DF (1991) Air embolism of the brain in rabbits pretreated with mechlorethamine. Stroke 22:351–354PubMed
13.
Zurück zum Zitat Levin LL, Stewart GJ, Lynch PR, Bove AA (1981) Blood and blood vessel wall changes induced by decompression sickness in dogs. J Appl Physiol 50:944–949PubMed Levin LL, Stewart GJ, Lynch PR, Bove AA (1981) Blood and blood vessel wall changes induced by decompression sickness in dogs. J Appl Physiol 50:944–949PubMed
14.
Zurück zum Zitat Divers Alert Network. Report on decompression illness, diving fatalities and project dive exploration (2001) The DAN annual review of recreational scuba-diving injuries and fatalities based on 1999 data. Divers Alert Network, Durham, NC Divers Alert Network. Report on decompression illness, diving fatalities and project dive exploration (2001) The DAN annual review of recreational scuba-diving injuries and fatalities based on 1999 data. Divers Alert Network, Durham, NC
15.
Zurück zum Zitat British Thoracic Society fitness to dive group, a subgroup of the British Thoracic Society standards of care committee (2003) British Thoracic Society guidelines on respiratory aspects of fitness for diving. Thorax 58:3–13 British Thoracic Society fitness to dive group, a subgroup of the British Thoracic Society standards of care committee (2003) British Thoracic Society guidelines on respiratory aspects of fitness for diving. Thorax 58:3–13
16.
Zurück zum Zitat Tetzlaff K, Reuter M, Leplow B, Heller M, Bettinghausen E (1997) Risk factors for pulmonary barotrauma in divers. Chest 112:654–659PubMed Tetzlaff K, Reuter M, Leplow B, Heller M, Bettinghausen E (1997) Risk factors for pulmonary barotrauma in divers. Chest 112:654–659PubMed
17.
Zurück zum Zitat Zaugg M, Kaplan V, Widmer U, Bauman PC, Russi EW (1998) Fatal air embolism in an airplane passenger with a giant intrapulmonary bronchogenic cyst. Am J Respir Crit Care Med 157:1686–1689PubMed Zaugg M, Kaplan V, Widmer U, Bauman PC, Russi EW (1998) Fatal air embolism in an airplane passenger with a giant intrapulmonary bronchogenic cyst. Am J Respir Crit Care Med 157:1686–1689PubMed
18.
Zurück zum Zitat Saary MJ, Gray GW (2001) A review of the relationship between patent foramen ovale and type II decompression sickness. Aviat Space Environ Med 72:1113–1120PubMed Saary MJ, Gray GW (2001) A review of the relationship between patent foramen ovale and type II decompression sickness. Aviat Space Environ Med 72:1113–1120PubMed
19.
Zurück zum Zitat Ryles MT, Pilmanis AA (1996) The initial signs and symptoms of altitude decompression sickness. Aviat Space Environ Med 67:983–989PubMed Ryles MT, Pilmanis AA (1996) The initial signs and symptoms of altitude decompression sickness. Aviat Space Environ Med 67:983–989PubMed
20.
Zurück zum Zitat Krause KM, Pilmanis AA (2000) The effectiveness of ground level oxygen treatment for altitude decompression sickness in human research subjects. Aviat Space Environ Med 71:115–118PubMed Krause KM, Pilmanis AA (2000) The effectiveness of ground level oxygen treatment for altitude decompression sickness in human research subjects. Aviat Space Environ Med 71:115–118PubMed
21.
Zurück zum Zitat Wilmshurst P, Bryson P (2000) Relationship between the clinical features of neurological decompression illness and its causes. Clin Sci 99:65–75 Wilmshurst P, Bryson P (2000) Relationship between the clinical features of neurological decompression illness and its causes. Clin Sci 99:65–75
22.
Zurück zum Zitat Freiburger JJ, Denoble PJ, Pieper CF, Uguccioni DM, Pollock NW, Vann RD (2002) The relative risk of decompression sickness during and after air travel following diving. Aviat Space Environ Med 73:980–984 Freiburger JJ, Denoble PJ, Pieper CF, Uguccioni DM, Pollock NW, Vann RD (2002) The relative risk of decompression sickness during and after air travel following diving. Aviat Space Environ Med 73:980–984
23.
Zurück zum Zitat Dick APK, Massey EW (1985) Neurologic presentation of decompression sickness and air embolism in sport divers. Neurology 35:667–671PubMed Dick APK, Massey EW (1985) Neurologic presentation of decompression sickness and air embolism in sport divers. Neurology 35:667–671PubMed
24.
Zurück zum Zitat Balldin UI, Pilmanis AA, Webb JT (2002) Pulmonary decompression sickness at altitude: early symptoms and circulating gas emboli. Aviat Space Environ Med 73:996–999PubMed Balldin UI, Pilmanis AA, Webb JT (2002) Pulmonary decompression sickness at altitude: early symptoms and circulating gas emboli. Aviat Space Environ Med 73:996–999PubMed
25.
Zurück zum Zitat Nachum Z, Shupak A, Spitzer O, Sharoni Z, Doweck I, Gordon CR (2001) Inner ear decompression sickness in sport compressed-air diving. Laryngoscope 111:851–856PubMed Nachum Z, Shupak A, Spitzer O, Sharoni Z, Doweck I, Gordon CR (2001) Inner ear decompression sickness in sport compressed-air diving. Laryngoscope 111:851–856PubMed
26.
Zurück zum Zitat Shank ES, Muth CM (2001) Case report on a diver with decompression injury, elevation of serum transaminases and rhabdomyolysis. Ann Emerg Med 37:533–536PubMed Shank ES, Muth CM (2001) Case report on a diver with decompression injury, elevation of serum transaminases and rhabdomyolysis. Ann Emerg Med 37:533–536PubMed
27.
Zurück zum Zitat Leitch DR, Green RD (1986) Pulmonary barotrauma in divers and the treatment of cerebral arterial gas embolism. Aviat Space Environ Med 57:931–938PubMed Leitch DR, Green RD (1986) Pulmonary barotrauma in divers and the treatment of cerebral arterial gas embolism. Aviat Space Environ Med 57:931–938PubMed
28.
Zurück zum Zitat Neuman TS, Bove AA (1990) Combined arterial gas embolism and decompression sickness following no-stop dives. Undersea Biomed Res 17:429–436PubMed Neuman TS, Bove AA (1990) Combined arterial gas embolism and decompression sickness following no-stop dives. Undersea Biomed Res 17:429–436PubMed
29.
Zurück zum Zitat Ball R (1993) Effect of severity, time to recompression with oxygen and re-treatment on outcome in forty-nine cases of spinal cord decompression sickness. Undersea Hyperb Med 20:133–145PubMed Ball R (1993) Effect of severity, time to recompression with oxygen and re-treatment on outcome in forty-nine cases of spinal cord decompression sickness. Undersea Hyperb Med 20:133–145PubMed
30.
Zurück zum Zitat Rudge FW, Shafer MR (1991) The effect of delay on treatment outcome in altitude-induced decompression sickness. Aviat Space Environ Med 62:687–690PubMed Rudge FW, Shafer MR (1991) The effect of delay on treatment outcome in altitude-induced decompression sickness. Aviat Space Environ Med 62:687–690PubMed
31.
Zurück zum Zitat Moon RE, Sheffield PJ (1997) Guidelines for treatment of decompression illness. Aviat Space Environ Med 68:234–243PubMed Moon RE, Sheffield PJ (1997) Guidelines for treatment of decompression illness. Aviat Space Environ Med 68:234–243PubMed
32.
Zurück zum Zitat Smith RM, Neuman TS (1994) Elevation of serum creatine kinase in divers with arterial gas embolization. N Engl J Med 330:19–24PubMed Smith RM, Neuman TS (1994) Elevation of serum creatine kinase in divers with arterial gas embolization. N Engl J Med 330:19–24PubMed
33.
Zurück zum Zitat Hyldegaard O, Madsen J (1994) Effect of air, heliox and oxygen breathing on air bubbles in aqueous tissues in the rat. Undersea Hyperb Med 21:413–424PubMed Hyldegaard O, Madsen J (1994) Effect of air, heliox and oxygen breathing on air bubbles in aqueous tissues in the rat. Undersea Hyperb Med 21:413–424PubMed
34.
Zurück zum Zitat Kizer KW (1987) Dysbaric cerebral air embolism in Hawaii. Ann Emerg Med 16:535–541PubMed Kizer KW (1987) Dysbaric cerebral air embolism in Hawaii. Ann Emerg Med 16:535–541PubMed
35.
Zurück zum Zitat Annane D, Trouché G, Delisle F, Devauchelle P, Paraire F, Raphael JC, Gajdos P (1994) Effects of mechanical ventilation with normobaric oxygen therapy on the rate of air removal from cerebral arteries. Crit Care Med 22:851–857PubMed Annane D, Trouché G, Delisle F, Devauchelle P, Paraire F, Raphael JC, Gajdos P (1994) Effects of mechanical ventilation with normobaric oxygen therapy on the rate of air removal from cerebral arteries. Crit Care Med 22:851–857PubMed
36.
Zurück zum Zitat Boussuges A, Blanc P, Molenat F, Bergmann E, Sainty JM (1996) Haemoconcentration in neurological decompression illness. Int J Sports Med 17:351–355PubMed Boussuges A, Blanc P, Molenat F, Bergmann E, Sainty JM (1996) Haemoconcentration in neurological decompression illness. Int J Sports Med 17:351–355PubMed
37.
Zurück zum Zitat Muth CM, Shank ES (2000) Gas embolism. N Engl J Med 342:476–482PubMed Muth CM, Shank ES (2000) Gas embolism. N Engl J Med 342:476–482PubMed
38.
Zurück zum Zitat Butler BD, Laine GA, Leiman BC, Warters D, Kurusz M, Sutton T, Katz J (1988) Effects of the Trendelenburg position on the distribution of arterial air emboli in dogs. Ann Thorac Surg 45:198–202PubMed Butler BD, Laine GA, Leiman BC, Warters D, Kurusz M, Sutton T, Katz J (1988) Effects of the Trendelenburg position on the distribution of arterial air emboli in dogs. Ann Thorac Surg 45:198–202PubMed
39.
Zurück zum Zitat Wass CT, Lanier WL, Hofer RE, Scheithauer BW, Andrews AG (1995) Temperature changes of ≥1°C alter functional neurological outcome and histopathology in a canine model of complete cerebral ischemia. Anesthesiology 83:325–335PubMed Wass CT, Lanier WL, Hofer RE, Scheithauer BW, Andrews AG (1995) Temperature changes of ≥1°C alter functional neurological outcome and histopathology in a canine model of complete cerebral ischemia. Anesthesiology 83:325–335PubMed
40.
Zurück zum Zitat Branger AB, Eckmann DM (1999) Theoretical and experimental intravascular gas embolism absorption dynamics. J Appl Physiol 87:1287–1295PubMed Branger AB, Eckmann DM (1999) Theoretical and experimental intravascular gas embolism absorption dynamics. J Appl Physiol 87:1287–1295PubMed
42.
Zurück zum Zitat Mink RB, Dutka AJ (1995) Hyperbaric oxygen after global cerebral ischemia in rabbits reduces brain vascular permeability and blood flow. Stroke 26:2307–2312PubMed Mink RB, Dutka AJ (1995) Hyperbaric oxygen after global cerebral ischemia in rabbits reduces brain vascular permeability and blood flow. Stroke 26:2307–2312PubMed
43.
Zurück zum Zitat Thom SR, Mendiguren I, Hardy K, Bolotin T, Fisher D, Nebolon M, Kilpatrick L (1997) Inhibition of human neutrophil beta2-integrin-dependent adherence by hyperbaric O2. Am J Physiol 272:C770–777PubMed Thom SR, Mendiguren I, Hardy K, Bolotin T, Fisher D, Nebolon M, Kilpatrick L (1997) Inhibition of human neutrophil beta2-integrin-dependent adherence by hyperbaric O2. Am J Physiol 272:C770–777PubMed
44.
Zurück zum Zitat Hyldegaard O, Kerem D, Melamed Y (2001) Effect of combined recompression and air, oxygen or heliox breathing on air bubbles in the rat. J Appl Physiol 90:1639–1647PubMed Hyldegaard O, Kerem D, Melamed Y (2001) Effect of combined recompression and air, oxygen or heliox breathing on air bubbles in the rat. J Appl Physiol 90:1639–1647PubMed
45.
Zurück zum Zitat Leitch DR, Greenbaum LJ Jr, Hallenbeck JM (1984) Cerebral air embolism: II. Effect of pressure and time on cortical evoked potential recovery. Undersea Biomed Res 11:237–248PubMed Leitch DR, Greenbaum LJ Jr, Hallenbeck JM (1984) Cerebral air embolism: II. Effect of pressure and time on cortical evoked potential recovery. Undersea Biomed Res 11:237–248PubMed
46.
Zurück zum Zitat McDermott JJ, Dutka AJ, Koller WA, Flynn ET (1992) Effects of an increased pO2 during recompression therapy for the treatment of experimental cerebral arterial gas embolism. Undersea Biomed Res 19:403–413PubMed McDermott JJ, Dutka AJ, Koller WA, Flynn ET (1992) Effects of an increased pO2 during recompression therapy for the treatment of experimental cerebral arterial gas embolism. Undersea Biomed Res 19:403–413PubMed
47.
Zurück zum Zitat Shupak A, Melamed Y, Ramon Y, Bentur Y, Abramovich A, Kol S (1997) Helium and oxygen treatment of severe air-diving-induced neurologic decompression sickness. Arch Neurol 54:305–311PubMed Shupak A, Melamed Y, Ramon Y, Bentur Y, Abramovich A, Kol S (1997) Helium and oxygen treatment of severe air-diving-induced neurologic decompression sickness. Arch Neurol 54:305–311PubMed
48.
Zurück zum Zitat Muth CM, Radermacher P, Shank ES (2002) When HBO meets the ICU—intensive care patients in the hyperbaric environment. In: Bakker DJ, Cramer FS (eds) Hyperbaric surgery. Best Publishing, Flagstaff, USA, pp 111–158 Muth CM, Radermacher P, Shank ES (2002) When HBO meets the ICU—intensive care patients in the hyperbaric environment. In: Bakker DJ, Cramer FS (eds) Hyperbaric surgery. Best Publishing, Flagstaff, USA, pp 111–158
49.
Zurück zum Zitat Weaver LK (1999) Operational use and patient care in the monoplace hyperbaric chamber. Respir Care Clin N Am 5:51–92PubMed Weaver LK (1999) Operational use and patient care in the monoplace hyperbaric chamber. Respir Care Clin N Am 5:51–92PubMed
50.
Zurück zum Zitat Weaver LK, Howe S (1992) Normobaric measurement of arterial oxygen tension in subjects exposed to hyperbaric oxygen. Chest 102:1175–1181PubMed Weaver LK, Howe S (1992) Normobaric measurement of arterial oxygen tension in subjects exposed to hyperbaric oxygen. Chest 102:1175–1181PubMed
51.
Zurück zum Zitat Barach P (2000) Management of the critically ill patient in the hyperbaric chamber. Int Anesthesiol Clin 38:153–66PubMed Barach P (2000) Management of the critically ill patient in the hyperbaric chamber. Int Anesthesiol Clin 38:153–66PubMed
52.
Zurück zum Zitat Lavon H, Shupak A, Tal D, Ziser A, Abramovich A, Yanir Y, Shoshani O, Gil A, Leiba R, Nachum Z (2002) Performance of infusion pumps during hyperbaric conditions. Anesthesiology 96:849–854PubMed Lavon H, Shupak A, Tal D, Ziser A, Abramovich A, Yanir Y, Shoshani O, Gil A, Leiba R, Nachum Z (2002) Performance of infusion pumps during hyperbaric conditions. Anesthesiology 96:849–854PubMed
53.
Zurück zum Zitat Presswood G, Zamboni WA, Stephenson LL, Santos PM (1994) Effect of artificial airway on ear complications from hyperbaric oxygen. Laryngoscope 104:1383–1384PubMed Presswood G, Zamboni WA, Stephenson LL, Santos PM (1994) Effect of artificial airway on ear complications from hyperbaric oxygen. Laryngoscope 104:1383–1384PubMed
54.
Zurück zum Zitat Camporesi EM (1999) Anesthesia in the hyperbaric environment. In: Jain KK (ed) Textbook of hyperbaric medicine, 3rd edn. Hogrefe & Huber, Seattle, pp 549–555 Camporesi EM (1999) Anesthesia in the hyperbaric environment. In: Jain KK (ed) Textbook of hyperbaric medicine, 3rd edn. Hogrefe & Huber, Seattle, pp 549–555
55.
Zurück zum Zitat Blanch PB, Desaultes DA, Gallagher TJ (1991) Deviations in function of mechanical ventilators during hyperbaric compression. Respir Care 36:808–814 Blanch PB, Desaultes DA, Gallagher TJ (1991) Deviations in function of mechanical ventilators during hyperbaric compression. Respir Care 36:808–814
56.
Zurück zum Zitat Stahl W, Radermacher P, Calzia E (2000) Functioning of ICU ventilators under hyperbaric conditions—comparison of volume- and pressure-controlled modes. Intensive Care Med 26:442–448PubMed Stahl W, Radermacher P, Calzia E (2000) Functioning of ICU ventilators under hyperbaric conditions—comparison of volume- and pressure-controlled modes. Intensive Care Med 26:442–448PubMed
57.
Zurück zum Zitat Ryu KH, Hindman BJ, Reasoner DK, Dexter F (1996) Heparin reduces neurological impairment after cerebral arterial gas embolism in the rabbit. Stroke 27:303–310PubMed Ryu KH, Hindman BJ, Reasoner DK, Dexter F (1996) Heparin reduces neurological impairment after cerebral arterial gas embolism in the rabbit. Stroke 27:303–310PubMed
58.
Zurück zum Zitat Kizer KW (1981) Corticosteroids in treatment of serious decompression sickness. Ann Emerg Med 10:485–488PubMed Kizer KW (1981) Corticosteroids in treatment of serious decompression sickness. Ann Emerg Med 10:485–488PubMed
59.
Zurück zum Zitat Ito U, Ohno K, Suganuma Y, Suzuki Y, Inaba Y (1980) The effect of steroids on ischemic brain edema. Stroke 11:166–172PubMed Ito U, Ohno K, Suganuma Y, Suzuki Y, Inaba Y (1980) The effect of steroids on ischemic brain edema. Stroke 11:166–172PubMed
60.
Zurück zum Zitat Sapolsky RM, Pulsinelly WA (1985) Glucocorticoids potentiate ischemic injury to neurons: therapeutic implications. Science 229:1397–1400PubMed Sapolsky RM, Pulsinelly WA (1985) Glucocorticoids potentiate ischemic injury to neurons: therapeutic implications. Science 229:1397–1400PubMed
61.
Zurück zum Zitat Dutka AJ, Mink RB, Pearson RR, Hallenbeck JM (1992) Effects of treatment with dexamethasone on recovery from cerebral arterial gas embolism. Undersea Biomed Res 19:131–141PubMed Dutka AJ, Mink RB, Pearson RR, Hallenbeck JM (1992) Effects of treatment with dexamethasone on recovery from cerebral arterial gas embolism. Undersea Biomed Res 19:131–141PubMed
62.
Zurück zum Zitat Bracken MB, Shepard MJ, Collins WF, Holford TR, Young W, Baskin DS, Eisenberg HM, Flamm E, Leo-Summers L, Maroon J, et al. (1990) A randomized, controlled trial of methylprednisolone or naloxone in the treatment of acute spinal-cord injury. Results of the Second National Acute Spinal Cord Injury Study. N Engl J Med 322:1405–1411PubMed Bracken MB, Shepard MJ, Collins WF, Holford TR, Young W, Baskin DS, Eisenberg HM, Flamm E, Leo-Summers L, Maroon J, et al. (1990) A randomized, controlled trial of methylprednisolone or naloxone in the treatment of acute spinal-cord injury. Results of the Second National Acute Spinal Cord Injury Study. N Engl J Med 322:1405–1411PubMed
63.
Zurück zum Zitat Evans DE, Kobrine AI, LeGrys DC, Bradley ME (1984) Protective effect of lidocaine in acute cerebral ischemia induced by air embolism. J Neurosurg 60:257–263PubMed Evans DE, Kobrine AI, LeGrys DC, Bradley ME (1984) Protective effect of lidocaine in acute cerebral ischemia induced by air embolism. J Neurosurg 60:257–263PubMed
64.
Zurück zum Zitat Evans DE, Catron PW, McDermott JJ, Thomas LB, Kobrine AI, Flynn ET (1989) Therapeutic effect of lidocaine in experimental cerebral ischemia induced by air embolism. J Neurosurg 70:97–102PubMed Evans DE, Catron PW, McDermott JJ, Thomas LB, Kobrine AI, Flynn ET (1989) Therapeutic effect of lidocaine in experimental cerebral ischemia induced by air embolism. J Neurosurg 70:97–102PubMed
65.
Zurück zum Zitat Dutka AJ, Mink R, McDermott JJ, Clark JB, Hallenbeck JM (1992) Effect of lidocaine on somatosensory evoked response and cerebral blood flow after canine cerebral air embolism. Stroke 23:1515–1520PubMed Dutka AJ, Mink R, McDermott JJ, Clark JB, Hallenbeck JM (1992) Effect of lidocaine on somatosensory evoked response and cerebral blood flow after canine cerebral air embolism. Stroke 23:1515–1520PubMed
66.
Zurück zum Zitat Mitchell SJ, Pellett O, Gorman DF (1999) Cerebral protection by lidocaine during cardiac operations. Ann Thorac Surg 67:1117–1124PubMed Mitchell SJ, Pellett O, Gorman DF (1999) Cerebral protection by lidocaine during cardiac operations. Ann Thorac Surg 67:1117–1124PubMed
67.
Zurück zum Zitat Moon RE (1997) Treatment of decompression sickness and arterial gas embolism. In: Bove AA (ed) Diving medicine. Saunders, Philadelphia, pp 184–204 Moon RE (1997) Treatment of decompression sickness and arterial gas embolism. In: Bove AA (ed) Diving medicine. Saunders, Philadelphia, pp 184–204
68.
Zurück zum Zitat Warren LP, Djang WT, Moon RE, Camporesi EM, Sallee DS, Anthony DC, Massey EW, Burger PC, Heinz ER (1988) Neuroimaging of scuba diving injuries to the CNS. Am J Radiol 151:1003–1008 Warren LP, Djang WT, Moon RE, Camporesi EM, Sallee DS, Anthony DC, Massey EW, Burger PC, Heinz ER (1988) Neuroimaging of scuba diving injuries to the CNS. Am J Radiol 151:1003–1008
69.
Zurück zum Zitat Reuter M, Tetzlaff K, Hutzelmann A, Fritsch G, Steffens JC, Bettinghausen, Heller M (1997) MR imaging of the central nervous system in diving-related decompression illness. Acta Radiol 38:940–944PubMed Reuter M, Tetzlaff K, Hutzelmann A, Fritsch G, Steffens JC, Bettinghausen, Heller M (1997) MR imaging of the central nervous system in diving-related decompression illness. Acta Radiol 38:940–944PubMed
71.
Zurück zum Zitat The COPD Guidelines Group of the Standards of Care Committee of the BTS (1997) BTS Guidelines for the Management of Chronic Obstructive Pulmonary Disease. Thorax 52 (Suppl 5): S1-S28 The COPD Guidelines Group of the Standards of Care Committee of the BTS (1997) BTS Guidelines for the Management of Chronic Obstructive Pulmonary Disease. Thorax 52 (Suppl 5): S1-S28
72.
Zurück zum Zitat Germonpré P, Dendale P, Unger P, Balestra C (1998) Patent foramen ovale and decompression sickness in sports divers. J Appl Physiol 84:1622–1626PubMed Germonpré P, Dendale P, Unger P, Balestra C (1998) Patent foramen ovale and decompression sickness in sports divers. J Appl Physiol 84:1622–1626PubMed
73.
Zurück zum Zitat Walsh KP, Wilmshurst PT, Morrison WC (1999) Transcatheter closure of patent foramen ovale using the Amplatzer septal occluder to prevent recurrence of neurological decompression illness in divers. Heart 81:257–261PubMedPubMedCentral Walsh KP, Wilmshurst PT, Morrison WC (1999) Transcatheter closure of patent foramen ovale using the Amplatzer septal occluder to prevent recurrence of neurological decompression illness in divers. Heart 81:257–261PubMedPubMedCentral
Metadaten
Titel
Evaluation and management of decompression illness—an intensivist’s perspective
verfasst von
Kay Tetzlaff
Erik S. Shank
Claus M. Muth
Publikationsdatum
01.12.2003
Verlag
Springer Berlin Heidelberg
Erschienen in
Intensive Care Medicine / Ausgabe 12/2003
Print ISSN: 0342-4642
Elektronische ISSN: 1432-1238
DOI
https://doi.org/10.1007/s00134-003-1999-1

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