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January 2011
This article was originally published in
Journal of Heat Transfer
ISSN 0022-1481
EISSN 1528-8943
In this Issue
Guest Editorial
Special Issue on Heat and Mass Transfer in Biosystems
J. Heat Transfer. January 2011, 133(1): 010301.
doi: https://doi.org/10.1115/1.4002222
Topics:
Heat
,
Mass transfer
,
Drug delivery systems
,
Microorganisms
,
Biosensors
,
Heat transfer
,
Tissue engineering
Research Papers
The Constructal Law and the Design of the Biosphere: Nature and Globalization
J. Heat Transfer. January 2011, 133(1): 011001.
doi: https://doi.org/10.1115/1.4002223
Topics:
Design
,
Flow (Dynamics)
,
Engines
,
Water
Optimal Drug-Aerosol Delivery to Predetermined Lung Sites
J. Heat Transfer. January 2011, 133(1): 011002.
doi: https://doi.org/10.1115/1.4002224
Topics:
Aerosols
,
Drops
,
Drugs
,
Flow (Dynamics)
,
Lung
,
Particulate matter
,
Air flow
,
Mass transfer
,
Heat
,
Computer simulation
Using MicroCT Imaging Technique to Quantify Heat Generation Distribution Induced by Magnetic Nanoparticles for Cancer Treatments
J. Heat Transfer. January 2011, 133(1): 011003.
doi: https://doi.org/10.1115/1.4002225
Topics:
Imaging
,
Nanoparticles
,
Cancer
,
Heat
,
Heating
,
Temperature
,
Particulate matter
,
Tumors
,
Convection
,
Ferrofluids
Principles of Tissue Engineering With Nonthermal Irreversible Electroporation
J. Heat Transfer. January 2011, 133(1): 011004.
doi: https://doi.org/10.1115/1.4002301
Cryosurgery: Analysis and Experimentation of Cryoprobes in Phase Changing Media
J. Heat Transfer. January 2011, 133(1): 011005.
doi: https://doi.org/10.1115/1.4002302
Topics:
Biological tissues
,
Blood vessels
,
Cooling
,
Freezing
,
Heat
,
Temperature
,
Temperature distribution
,
Probes
,
Blood
,
Heat transfer
Modeling Bidirectional Transport of New and Used Organelles in Fast Axonal Transport in Neurons
J. Heat Transfer. January 2011, 133(1): 011007.
doi: https://doi.org/10.1115/1.4002304
Topics:
Diffusion (Physics)
,
Molecular motors
,
Motors
,
Proteins
,
Flux (Metallurgy)
,
Boundary-value problems
,
Traffic
,
Modeling
,
Probability
,
Recycling
Metabolic Mass Transfer in Monotonic Growth of Microorganisms
J. Heat Transfer. January 2011, 133(1): 011008.
doi: https://doi.org/10.1115/1.4002416
Topics:
Mass transfer
,
Microorganisms
,
Phase diagrams
Human Eye Response to Thermal Disturbances
J. Heat Transfer. January 2011, 133(1): 011009.
doi: https://doi.org/10.1115/1.4002360
Topics:
Blood
,
Convection
,
Cornea
,
Human eye
,
Modeling
,
Porous materials
,
Temperature
,
Natural convection
,
Porosity
,
Lenses (Optics)
Modeling Bioheat Transport at Macroscale
J. Heat Transfer. January 2011, 133(1): 011010.
doi: https://doi.org/10.1115/1.4002361
Topics:
Biological tissues
,
Blood
,
Heat
,
Heat conduction
,
Microscale devices
,
Porous materials
,
Temperature
,
Convection
,
Heat flux
,
Modeling
Skin Electroporation With Passive Transdermal Transport Theory: A Review and a Suggestion for Future Numerical Model Development
J. Heat Transfer. January 2011, 133(1): 011011.
doi: https://doi.org/10.1115/1.4002362
Topics:
Electroporation
,
Skin
,
Porous materials
,
Bricks
,
Mortar
,
Modeling
Adhesin-Specific Nanomechanical Cantilever Biosensors for Detection of Microorganisms
J. Heat Transfer. January 2011, 133(1): 011012.
doi: https://doi.org/10.1115/1.4002363
Topics:
Biosensors
,
Cantilevers
,
Microcantilevers
,
Microorganisms
,
Resonance
,
Membranes
Research Papers
Analysis of Heat Transfer in Consecutive Variable Cross-Sectional Domains: Applications in Biological Media and Thermal Management
J. Heat Transfer. January 2011, 133(1): 011006.
doi: https://doi.org/10.1115/1.4002303
Topics:
Boundary-value problems
,
Fluids
,
Temperature
,
Temperature distribution
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