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Foreword
Contents
Introduction

Chapter 1 Historical Perspective
Robert Boyle (1627 - 1691)
Rediscovery
Caissons Disease
Paul Bert (1833-1886)
John Scott Haldane (1860-1936)
US Navy
Robert Workman
Professor Albert Bühlmann (1923–1994)

Chapter 2 Decompression Principles
Overview
The Air We Breathe
The Effects of Pressure
Dalton's Law
The Lungs
Henry's Law
Diffusion
Gas Transport
Perfusion
Saturation
Tissue Compartments
Half Times
Supersaturation
Critical Supersaturation
Controlling Ratio – M-Values
Ascent Rates
No-Stop Dives
Bubble Formation
Silent Bubbles
Safety Stops
Decompression Stops
Oxygen Window

Chapter 3 Decompression Illness
Burst Lung
Arterial Gas Embolism (AGE)
Interstitial Emphysema
Pneumothorax
Decompression Sickness
Decompression Classification
- Type I
- Type II
- Type III
- Type IV
Reclassification of DCS and AGE
Signs and Symptoms
Symptoms of the Bends by Frequency
Time of Onset of Symptoms
Predisposing Factors
Dehydration
Dive Profiles
Repetitive Diving
Temperature
Obesity
Exercise
Smoking
Age
Flying after Diving
Reverse Profile
Previous injury
PFO
Lung Shunts
Doppler Bubble Detection
Medical Implications of DCI
First Aid
Oxygen
5 Minute Neurological Exam
Recompression
In Water Recompression
Omitted Decompression

Chapter 4 Saturation Diving
Development Of Saturation Diving
Commercial Saturation Diving
Saturation Decompression

Chapter 5 Nitrox
Using Nitrox
Using Nitrox as Decompression Gas
The Oxygen Window Revisited

Chapter 6 Deep Stops and Bubble Models
Deep Stops
- Pyle Deep Stops Process
- Pyle Deep Stops – an Example
Gradient Factors
Dual Phase (Bubble) Models
Individual Bubble Behaviour
Multiple Bubble Behaviour
Gas Switches and Bubble Models
Specific Bubble Models
- Thermodynamic Model
Varying Permeability Model
Critical Volume Algorithm
Development of VPM
Reduced Gradient Bubble Model

Chapter 7 Mixed Gas
Choice of Gas
- Argon
- Neon
- Hydrogen
- Helium
Trimix
Trimix Decompression
Helium in Decompression Gases
Isobaric Counter Diffusion

Chapter 8 Other Decompression Models
RNPL – Slab Diffusion
BSAC-88
US Navy Exponential Linear Model
Probabilistic Models
DCIEM
Ratio Deco

Chapter 9 Decompression Calculations
Compartments, Half Times and Surfacing Ratios
- Hawkins (1935)
- Yarbrough (1937)
- Van Der Aue (1951)
- Workman M-Values (1965)
- Bühlmann
- ZH-L16A Set of M-Values for Nitrogen (1990)
- ZH-L16A Half-times, "a" and "b" Values for Nitrogen and Helium
- Conversion from Workman M-Values to Bühlmann Coefficients
- The DCAP MM11F6 Model (1988) for Nitrogen
- The DSAT Recreational Dive Planner (PADI) Model (1987)
- Variable Permeability Model (VPM)
- Alveolar Partial Pressure
- No Decompression Limits (NDL)
- Saturation Level Bühlmann
- Saturation Level Schreiner
- Ascent Ceiling
- Decompression Stops
- Calculating a Decompression Profile
- Gradient Factors
- Saturation Diving
- DCIEM
- Ratio Deco
Acknowledgements

References and Further Reading
- General
- 1 Historical Perspective
- 2 Decompression Principles
- 3 Decompression Illness
- 4 Saturation Diving
- 5 Nitrox
- 6 Deep Stops and Bubble Models
- 7 Mixed Gas
- 8 Other Decompression Models
- 9 Decompression Calculations

Index




Pär Ahlgren
Pär Ahlgren 2010-03-16 11:43:17
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Huvudinlägg Recension "DECO FOR DIVERS" Pär Ahlgren 2010-03-16 11:42
svara Fullständig innehållsförteckningPär Ahlgren2010-03-16 11:43
svara Sv: Recension "DECO FOR DIVERS"Elin Linde2010-03-16 21:39
svara Sv: Sv: Recension "DECO FOR DIVERS"Jonas Eriksson2012-09-14 19:36
svara Sv: Recension "DECO FOR DIVERS"Anki Bertilsson2013-04-07 00:29

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