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Applied Physiology in Intensive Care Medicine

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Cover of 'Applied Physiology in Intensive Care Medicine'

Table of Contents

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    Book Overview
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    Chapter 1 Intrinsic (or auto-) PEEP during controlled mechanical ventilation
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    Chapter 2 Intrinsic (or auto-) positive end-expiratory pressure during spontaneous or assisted ventilation
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    Chapter 3 Work of breathing
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    Chapter 4 Interpretation of airway pressure waveforms
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    Chapter 5 Measurement of respiratory system resistance during mechanical ventilation
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    Chapter 6 Understanding wasted/ineffective efforts in mechanically ventilated COPD patients using the Campbell diagram
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    Chapter 7 Dead space
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    Chapter 8 The multiple inert gas elimination technique (MIGET)
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    Chapter 9 Alveolar ventilation and pulmonary blood flow: The VA/QT concept
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    Chapter 10 Mechanisms of hypoxemia
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    Chapter 11 Pulse oximetry
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    Chapter 12 Effects of body temperature on blood gases
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    Chapter 13 Venous oximetry
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    Chapter 14 Influence of FIO2 on the PaO2/FIO2 ratio
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    Chapter 15 Hypoxemia due to increased venous admixture: influence of cardiac output on oxygenation
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    Chapter 16 Pulmonary vascular resistance A meaningless variable?
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    Chapter 17 Pulmonary artery occlusion pressure
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    Chapter 18 Clinical significance of pulmonary artery occlusion pressure
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    Chapter 19 Pulmonary capillary pressure
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    Chapter 20 Ventricular interdependence: how does it impact on hemodynamic evaluation in clinical practice?
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    Chapter 21 Cyclic changes in arterial pressure during mechanical ventilation
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    Chapter 22 Lactic acidosis
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    Chapter 23 Defining acute renal failure: physiological principles
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    Chapter 24 Hypotension during intermittent hemodialysis: new insights into an old problem
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    Chapter 25 Intracranial pressure Part one: Historical overview and basic concepts
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    Chapter 26 Intracranial pressure Part two: Clinical applications and technology
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    Chapter 27 Neuromonitoring in the intensive care unit. Part I. Intracranial pressure and cerebral blood flow monitoring
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    Chapter 28 Neuromonitoring in the intensive care unit. Part II. Cerebral oxygenation monitoring and microdialysis
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    Chapter 29 Fluid responsiveness in mechanically ventilated patients: a review of indices used in intensive care
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    Chapter 30 Different techniques to measure intra-abdominal pressure (IAP): time for a critical re-appraisal
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    Chapter 31 Tissue capnometry: does the answer lie under the tongue?
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    Chapter 32 Noninvasive monitoring of peripheral perfusion
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    Chapter 33 Ultrasonographic examination of the venae cavae
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    Chapter 34 Passive leg raising
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    Chapter 35 Sleep in the intensive care unit
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    Chapter 36 Magnesium in critical illness: metabolism, assessment, and treatment
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    Chapter 37 Pulmonary endothelium in acute lung injury: from basic science to the critically ill
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    Chapter 38 Pulmonary and cardiac sequelae of subarachnoid haemorrhage: time for active management?
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    Chapter 39 Applied Physiology in Intensive Care Medicine
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    Chapter 40 Right ventricular function and positive pressure ventilation in clinical practice: from hemodynamic subsets to respirator settings
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    Chapter 41 Acute right ventricular failure—from pathophysiology to new treatments
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    Chapter 42 Red blood cell rheology in sepsis
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    Chapter 43 Stress-hyperglycemia, insulin and immunomodulation in sepsis
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    Chapter 44 Hypothalamic-pituitary dysfunction in critically ill patients with traumatic and nontraumatic brain injury
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    Chapter 45 Matching total body oxygen consumption and delivery: a crucial objective?
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    Chapter 46 Normalizing physiological variables in acute illness: five reasons for caution
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    Chapter 47 Interpretation of the echocardiographic pressure gradient across a pulmonary artery band in the setting of a univentricular heart
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    Chapter 48 Ventilator-induced diaphragm dysfunction: the clinical relevance of animal models
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    Chapter 49 Understanding organ dysfunction in hemophagocytic lymphohistiocytosis
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    Chapter 50 Manipulating afterload for the treatment of acute heart failure
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    Chapter 51 Nosocomial pneumonia
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    Chapter 52 The introduction of positive endexpiratory pressure into mechanical ventilation: a retrospective
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    Chapter 53 Elastic pressure-volume curves in acute lung injury and acute respiratory distress syndrome
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    Chapter 54 The concept of “baby lung”
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    Chapter 55 The effects of anesthesia and muscle paralysis on the respiratory system
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    Chapter 56 Diaphragmatic fatigue during sepsis and septic shock
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    Chapter 57 The use of severity scores in the intensive care unit
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    Chapter 58 Oxygen transport—the oxygen delivery controversy
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    Chapter 59 Organ dysfunction during sepsis
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    Chapter 60 Ventilator-induced lung injury:from the bench to the bedside
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    Chapter 61 Remembrance of weaning past: the seminal papers
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    Chapter 62 Interactions between respiration and systemic hemodynamics. Part I: basic concepts
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    Chapter 63 Interactions between respiration and systemic hemodynamics. Part II: practical implications in critical care
Attention for Chapter 36: Magnesium in critical illness: metabolism, assessment, and treatment
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Chapter title
Magnesium in critical illness: metabolism, assessment, and treatment
Chapter number 36
Book title
Applied Physiology in Intensive Care Medicine
Published by
Springer, Berlin, Heidelberg, January 2009
DOI 10.1007/978-3-642-01769-8_36
Book ISBNs
978-3-64-201768-1, 978-3-64-201769-8
Authors

J. Luis Noronha, George M. Matuschak

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 37 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
South Africa 1 3%
Unknown 36 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 6 16%
Other 5 14%
Student > Bachelor 4 11%
Professor > Associate Professor 4 11%
Student > Master 3 8%
Other 6 16%
Unknown 9 24%
Readers by discipline Count As %
Medicine and Dentistry 17 46%
Agricultural and Biological Sciences 5 14%
Biochemistry, Genetics and Molecular Biology 2 5%
Nursing and Health Professions 1 3%
Chemical Engineering 1 3%
Other 1 3%
Unknown 10 27%