Page 308 - Fluid, Electrolyte, and Acid-Base Disorders in Small Animal Practice
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Respiratory Acid-Base Disorders   299


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            as nebulized furosemide, 56  opioids , corticosteroids, 61  12. Brunson DB, Hogan KJ. Malignant hyperthermia: a syn-
            and application of chest wall vibration 10  have been   drome not a disease. Vet Clin North Am Small Anim Pract
            suggestedtorelievedyspneaandanyassociatedrespiratory    2004;34:1419–33.
                                                                13. Bureau M, Bouverot P. Blood and CSF acid-base changes
            acid-base disturbances. In any case, the recognition of dys-
                                                                    and rate of ventilatory acclimatization of awake dogs to
            pnea in our veterinary patients as an abnormal, unpleasant  3,550 m. Respir Physiol 1975;24:203–16.
            stimulus associated with respiratory abnormalities may  14. Caruana-Montaldo B, Gleeson K, Zwillich CW. The
            alter our future medical management of disorders        control  of  breathing  in  clinical  practice.  Chest
                                                                    2000;117:205–25.
            associated with respiratory acid-base abnormalities.
                                                                15. de Morais HAS, DiBartola SP. Ventilatory and metabolic
                                                                    compensation in dogs with acid-base disturbances. J Vet
            SUMMARY                                                 Emerg Crit Care 1991;1:39–49.
                                                                16. DiBartola SP, de Morais HAS. Respiratory acid-base
            Respiratory acid-base disorders and derangements in arte-  disorders. In: DiBartola SP, editor. Fluid therapy in small
                                                                    animal practice. Philadelphia: WB Saunders; 1992.
            rial blood gases are common entities that may lead to
                                                                    p. 258–75.
            increasedmorbidityandmortalityinsmallanimalpatients.  17. Epstein SK, Singh N. Respiratory acidosis. Respir Care
            Early and proper diagnosis of these disease states is essen-  2001;46:366–83.
            tial in providing correct and effective therapy. More wide-  18. Feldman JL. Neurophysiology of breathing in mammals.
            spread availability of cost-effective, “bedside” portable  In: Bloom FE, Mountcastle VB, editors. Handbook of
                                                                    physiology. Section I, the nervous system, vol. 4, Intrinsic
            blood gas analyzers in small animal practice allows the
                                                                    regulatory systems of the brain. Bethesda: American
            practitioner to monitor acid-base and oxygenation status  Physiological Society; 1986. p. 463–524.
            of the patient, thus providing more efficient, high quality  19. Feldman JL, Mitchell GS, Nattie EE. Breathing: rhythmic-
            care for the compromised small animal patient.          ity, plasticity, chemosensitivity. Annu Rev Neurosci
                                                                    2003;26:239–66.
                                                                20. Galla JH, Luke RG. Chloride transport and disorders of
                                                                    acid-base balance. Annu Rev Physiol 1988;50:141–58.
            REFERENCES                                          21. Gandevia SC, Killian KJ, Campbell EJ. The effect of respi-
                                                                    ratory muscle fatigue on respiratory sensations. Clin Sci
             1. Adrogue ´ HJ, Madias NE. Management of life-threatening  (Lond) 1981;60(4):463–6.
               acid-base  disorders  (two  parts).  N  Engl  J  Med  22. Gennari FJ, Goldstein MB, Schwartz WB. The nature of
               1998;338:26–34.                                      the renal adaptation to chronic hypocapnia. J Clin Invest
             2. Adrogue ´ HJ, Madias NE. Changes in plasma potassium  1972;51:1722–30.
               concentration during acute acid-base disturbances. Am J  23. Gennari FJ, Kassirer JP. Respiratory alkalosis. In: Cohen JJ,
               Med 1981;71:456–67.                                  Kassirer JP, editors. Acid-base. Boston: Little, Brown &
             3. Alberti E, Hoyer S, Hamer J, et al. The effect of carbon  Co.; 1982. p. 349–76.
               dioxide on cerebral blood flow and cerebral metabolism  24. Giebisch G, Berger L, Pitts RF. The extrarenal response to
               in dogs. Br J Anaesth 1975;47:941–7.                 acute acid-base disturbances of respiratory origin. J Clin
             4. Alfaro V, Torras R, Iba ´n ˜ez J, et al. A physical-chemical  Invest 1955;34:231–45.
               analysis of the acid-base response to chronic obstructive  25. Gougoux A, Kaehny WD, Cohen JJ. Renal adaptation to
               pulmonary  disease.  Can  J  Physiol  Pharmacol      chronic hypocapnia: dietary constraints to achieving H
               1996;74:1229–35.                                     {SY}þ{/SY} retention. Am J Physiol 1975;229:1330–7.
             5. Arvidsson S, Haggendal E, Winso I. Influence on cerebral  26. Gray BA, Blalock JM. Interpretation of the alveolar-arterial
               blood flow of infusion of sodium bicarbonate during respi-  oxygen difference in patients with hypercapnia. Am Rev
               ratory acidosis and alkalosis in the dog. Acta Anaesthesiol  Respir Dis 1991;143:4–8.
               Scand 1981;25:146–52.                            27. Greene KE, Peters JI. Pathophysiology of acute respiratory
             6. Ballantyne D, Scheid P. Central chemosensitivity of respira-  failure. Clin Chest Med 1994;15:1–12.
               tion: a brief overview. Respir Physiol 2001;129:5–12.  28. Hampson NB, Jo ¨bsis-VandlerVliet FF, Piantadosi CA.
             7. Barnard P, Andronikou S, Pokorski M, et al. Time-depen-  Skeletal muscle oxygen availability during respiratory
               dent effect of hypoxia on carotid body chemosensory  acid-base  disturbances  in  cats.  Respir  Physiol
               function. J Appl Physiol 1987;63:685–91.             1987;70:143–58.
             8. Bateman SW. Ventilating the lung injured patient: what’s  29. Hara Y, Nezu Y, Harada Y, et al. Secondary chronic
               new? In: Proceedings of the American College of Veterinary  respiratory acidosis in a dog following the cervical cord
               Surgeons Symposium. 2001. p. 562–5 Chicago.          compression by an intradural glioma. J Vet Med Sci
             9. Binks AP, Moosavi SH, Banzett RB, et al. Tightness” sen-  2002;64:863–6.
               sation of asthma does not arise from the work of breathing.  30. Harrington JT, Kassirer JP. Metabolic alkalosis. In:
               Am J Respir Crit Care Med 2002;165(1):78–82.         Cohen JJ, Kassirer JP, editors. Acid-base. Boston: Little,
            10. Bloch-Salisbury E, Binks AP, Banzett RB, et al. Mechanical  Brown & Co.; 1982. p. 227–306.
               chest-wall vibration does not relieve air hunger. Respir  31. Hodgkin JE, Soeprono FF, Chan DM. Incidence of
               Physiol Neurobiol 2003;134(3):177–90.                metabolic alkalemia in hospitalized patients. Crit Care
            11. Brofman JD, Leff AR, Munoz NM, et al. Sympathetic   Med 1980;8:725–8.
               secretory response to hypercapnic acidosis in swine. J Appl  32. Ho ¨hne C, Boemke W, Schleyer N, et al. Low sodium intake
               Physiol 1990;69:710–7.                               does not impair renal compensation of hypoxia-induced
                                                                    respiratory alkalosis. J Appl Physiol 2002;92:2097–104.
                                                                33. Hughes JMB. Pulmonary gas exchange. In: Hughes JMB,
            { For review see: Zebraski et al, 2000. 88              Pride NB, editors. Lung function tests. Physiological
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