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Sterilizing Techniques 4-H Veterinary Science Extension Veterinary Medicine Texas AgriLife Extension Service College of Veterinary Medicine and Biomedical Sciences Texas A&M System http://aevm.tamu.edu
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Objectives Discuss the factors that must be considered when selecting a sterilization method Describe the process of preparing instruments for sterilization Describe heat sterilization Read and convert temperature scales Describe gas sterilization Describe chemosterilization
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Sterilization Use of either physical or chemical procedures to destroy all microbial life that are resistant to disinfectants. Target microorganisms that exist on inanimate objects.
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What type to use Technologies available Types of instruments Types of materials Time availability Expense Safety
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Type of instrument sterilization Withstand moist heat Corrode with moist heat No heat method
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Preparation Free of debris Soaking Detergent Scrubbing Ultrasonic cleaning Dry
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Conversions Celsius to Fahrenheit
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Example So 50°C = 122°F
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Fahrenheit to Celsius
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Example So 122°F = 50°C
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Heat Sterilization Autoclave Most practical Use rust inhibitors Sodium nitrite Steam Time <15 # pressure 15 minutes @ 121°C 5 minutes @ 135°C Easy arrangement Not touching Corrosion may occur Also use a pressure cooker
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Dry Heat Oven Dry instruments important 2 hours at 175°C Disadvantages Loss of metal hardness and strength
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Direct Flame Disadvantage Loss of metal hardness and strength
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Gas Sterilization Ethylene oxide Requires pressure container Requires several hours Uses Heat sensitive equipment Disadvantages Hazardous gas output
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Chemosterilization Liquid glutaraldehyde Time efficient 30 – 60 minutes Uses Heat sensitive equipment Fiberoptic instruments Gastroscopes Endoscopes Laparoscopes Caution Handle carefully Rubber gloves required
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Boiling Water Disinfectant Uses Stainless steel instruments Time 30 minutes
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Storage Clean, dust free environment Aseptic condition
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