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Published byMervin Matthews Modified over 8 years ago
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Development of a Murine Perfusion System Nicola Asgill Fredrick Hilliard George Kittos
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Objectives Langendorff perfusion system Requirements: Miniature scale Fluid temperature controlled Inter-changeable components Drug introduction into perfusate
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Background Langendorff Perfusion System Simulates natural blood flow Retrograde fluid flow Attached to aorta Examine effects of drug on heart
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Considerations for project Why will this work? Controlled temperature, flow rate and pressure Improvement of heat stability Multi-drug delivery capability Disposable components Why is this important? Possible testing applications: Drug delivery Cardiac cell response
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Prototype
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Prototype Modifications for Preliminary Testing Flow will be gravity controlled Removal of Peristaltic Pump Removal of Flow Sensor Pump and Sensor will be added based on results of preliminary testing
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Peltier Element Max Current7.6A Max Power76 W Max Voltage16.3 V dT Max72°C Dimensions48x48x4.8mm 3
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Peltier Element Test Goals Show functionality – Heating capabilities Calculate Time Constant To heat from room temperature to 37 ± 1°C Determine appropriate input voltage
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Peltier Element Test Conclusion: Input Voltage of 8V – longer time to heat sample, needs to be faster to perfusate at constant temp. Input Voltage of 15V – faster heating, but found that this voltage will cause the device to fail. Input Voltage of 12V – faster heating and the device did not malfunction
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LabVIEW Temperature Control
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Transparent Glass Chamber Plexiglass Visualize electric activity in heart using dyes Staggered holes
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Transparent Glass Chamber
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Current Work Heating Perfusate to 37 ± 1°C Manufacturing Plexiglass chamber Verify and Validate the LabView Module for controlling and maintaining constant temperature Tygon Tubing Peltier Element
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Future Work Acquiring additional components Assembling Prototype Testing the perfusate heating apparatus Design and Test Control Valve System Harvesting the Mouse Heart
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Thanks Questions?
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