Seminars in Nephrology
Volume 26, Issue 3 , Pages 249-257, May 2006

Water Intake and the Neural Correlates of the Consciousness of Thirst

  • Michael J. McKinley

      Affiliations

    • Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Australia
    • Department of Physiology, Monash University, Clayton, Australia
    • Department of Physiology and Pathology, Dentistry School, Paulista State University, Araraquara, Brazil.
    • Corresponding Author InformationAddress reprint requests to Professor M. J. McKinley, Howard Florey Institute, University of Melbourne, Parkville, Victoria, 3010, Australia.
  • ,
  • Derek A. Denton

      Affiliations

    • Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Australia
    • Department of Physiology, Monash University, Clayton, Australia
    • Department of Physiology and Pathology, Dentistry School, Paulista State University, Araraquara, Brazil.
  • ,
  • Brian J. Oldfield

      Affiliations

    • Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Australia
    • Department of Physiology, Monash University, Clayton, Australia
    • Department of Physiology and Pathology, Dentistry School, Paulista State University, Araraquara, Brazil.
  • ,
  • Lisandra B. De Oliveira

      Affiliations

    • Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Australia
    • Department of Physiology, Monash University, Clayton, Australia
    • Department of Physiology and Pathology, Dentistry School, Paulista State University, Araraquara, Brazil.
  • ,
  • Michael L. Mathai

      Affiliations

    • Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Parkville, Australia
    • Department of Physiology, Monash University, Clayton, Australia
    • Department of Physiology and Pathology, Dentistry School, Paulista State University, Araraquara, Brazil.

Thirst and resultant water drinking can arise in response to deficits in both the intracellular and extracellular fluid compartments. Inhibitory influences mediating the satiation of thirst also are necessary to prevent overhydration. The brain regions that underpin the generation or inhibition of thirst in these circumstances can be categorized as sensory, integrative, or cortical effector sites. The anterior cingulate cortex and insula are activated in thirsty human beings as shown by functional brain-imaging techniques. It is postulated that these sites may be cortical effector regions for thirst. A major sensory site for generating thirst is the lamina terminalis in the forebrain. Osmoreceptors within the organum vasculosum of the lamina terminalis and subfornical organ detect systemic hypertonicity. The subfornical organ mediates the dipsogenic actions of circulating angiotensin II and relaxin. Major integrative sites are the nucleus of the tractus solitarius, the lateral parabrachial nucleus, the midbrain raphé nuclei, the median preoptic nucleus, and the septum. Despite these advances, most of the neural pathways and neurochemical mechanisms subserving the genesis of thirst remain to be elucidated.

Keywords:  dehydration , cingulate , insula , lamina terminalis , integrative regions

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 Supported in part by the National Health and Medical Research Council of Australia project grants 232306 and 350437 (M.J.M., B.J.O., and M.L.M.) and by the Brazilian Federal Agency CAPES (BEX 1124-05/6) (L.B.D.).

PII: S0270-9295(06)00012-X

doi:10.1016/j.semnephrol.2006.02.001

Seminars in Nephrology
Volume 26, Issue 3 , Pages 249-257, May 2006