- Section 1 Patients and their treatment
- Section 2 Background to medicine
- Section 3 Cell biology
- Section 4 Immunological mechanisms
- Section 5 Principles of clinical oncology
- Section 6 Old age medicine
- Section 7 Pain and palliative care
- Section 8 Infectious diseases
- Section 9 Sexually transmitted diseases
- Section 10 Environmental medicine, occupational medicine, and poisoning
- Section 11 Nutrition
- Section 12 Metabolic disorders
- Section 13 Endocrine disorders
- Section 14 Medical disorders in pregnancy
- Section 15 Gastroenterological disorders
- Section 16 Cardiovascular disorders
- Section 17 Critical care medicine
- Section 18 Respiratory disorders
- Section 19 Rheumatological disorders
- Section 20 Disorders of the skeleton
- Section 21 Disorders of the kidney and urinary tract
- 21.1 Structure and function of the kidney
- 21.2 Electrolyte disorders
- 21.2.1 Disorders of water and sodium homeostasis
- 21.2.2 Disorders of potassium homeostasis
- 21.3 Clinical presentation of renal disease
- 21.4 Clinical investigation of renal disease
- 21.5 Acute kidney injury
- 21.6 Chronic kidney disease
- 21.7 Renal replacement therapy
- 21.8 Glomerular diseases
- 21.9 Tubulointerstitial diseases
- 21.10 The kidney in systemic disease
- 21.11 Renal diseases in the tropics
- 21.12 Renal involvement in genetic disease
- 21.13 Urinary tract infection
- 21.14 Disorders of renal calcium handling, urinary stones, and nephrocalcinosis
- 21.15 The renal tubular acidoses
- 21.16 Disorders of tubular electrolyte handling
- 21.17 Urinary tract obstruction
- 21.18 Malignant diseases of the urinary tract
- 21.19 Drugs and the kidney
- Section 22 Haematological disorders
- Section 23 Disorders of the skin
- Section 24 Neurological disorders
- Section 25 Disorders of the eye
- Section 26 Psychiatric and drug-related disorders
- Section 27 Forensic medicine
- Section 28 Sport and exercise medicine
- Section 29 Biochemistry in medicine
- Section 30 Acute medicine
(p. 4729) Electrolyte disorders
Water intake and the excretion of water are tightly regulated processes that are able to maintain a near-constant serum osmolality. Sodium disorders (dysnatraemias—hyponatraemia or hypernatraemia) are almost always due to an imbalance between water intake and water excretion. Understanding the aetiology of sodium disorders depends on understanding the concept of electrolyte-free water clearance—this is a conceptual amount of water that represents the volume that would need to be subtracted (if electrolyte-free water clearance is positive) or added (if negative) to the measured urinary volume to make the electrolytes contained within the urine have the same tonicity as the plasma electrolytes. It is the concentration of the electrolytes in the urine, not the osmolality of the urine, which ultimately determines the net excretion of water. Hyponatraemia (serum sodium concentration <135 mmol/litre) is a common electrolyte disorder. It is almost invariably due to impaired water excretion, often in states where antidiuretic hormone release is (1) a normal response to a physiological stimulus such as pain, nausea, volume depletion, postoperative state, or congestive heart failure; or (2) a pathophysiological response as occurs with thiazide diuretics, other types of medications, or in the syndrome of inappropriate diuresis; with both often exacerbated in hospital by (3) inappropriate iatrogenic administration of hypotonic fluids. Hypernatraemia (serum sodium concentration >145 mmol/litre) is a common electrolyte disorder that occurs when water intake is inadequate to keep up with water losses. Since the thirst mechanism is such a powerful stimulus, hypernatraemia almost invariably occurs in the context of an illness and care that restricts the patient’s access to water. This chapter discusses the clinical features, management, and prevention of hyponatraemia and hypernatraemia.
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- Section 1 Patients and their treatment
- Section 2 Background to medicine
- Section 3 Cell biology
- Section 4 Immunological mechanisms
- Section 5 Principles of clinical oncology
- Section 6 Old age medicine
- Section 7 Pain and palliative care
- Section 8 Infectious diseases
- Section 9 Sexually transmitted diseases
- Section 10 Environmental medicine, occupational medicine, and poisoning
- Section 11 Nutrition
- Section 12 Metabolic disorders
- Section 13 Endocrine disorders
- Section 14 Medical disorders in pregnancy
- Section 15 Gastroenterological disorders
- Section 16 Cardiovascular disorders
- Section 17 Critical care medicine
- Section 18 Respiratory disorders
- Section 19 Rheumatological disorders
- Section 20 Disorders of the skeleton
- Section 21 Disorders of the kidney and urinary tract
- 21.1 Structure and function of the kidney
- 21.2 Electrolyte disorders
- 21.2.1 Disorders of water and sodium homeostasis
- 21.2.2 Disorders of potassium homeostasis
- 21.3 Clinical presentation of renal disease
- 21.4 Clinical investigation of renal disease
- 21.5 Acute kidney injury
- 21.6 Chronic kidney disease
- 21.7 Renal replacement therapy
- 21.8 Glomerular diseases
- 21.9 Tubulointerstitial diseases
- 21.10 The kidney in systemic disease
- 21.11 Renal diseases in the tropics
- 21.12 Renal involvement in genetic disease
- 21.13 Urinary tract infection
- 21.14 Disorders of renal calcium handling, urinary stones, and nephrocalcinosis
- 21.15 The renal tubular acidoses
- 21.16 Disorders of tubular electrolyte handling
- 21.17 Urinary tract obstruction
- 21.18 Malignant diseases of the urinary tract
- 21.19 Drugs and the kidney
- Section 22 Haematological disorders
- Section 23 Disorders of the skin
- Section 24 Neurological disorders
- Section 25 Disorders of the eye
- Section 26 Psychiatric and drug-related disorders
- Section 27 Forensic medicine
- Section 28 Sport and exercise medicine
- Section 29 Biochemistry in medicine
- Section 30 Acute medicine