Literature

Authorssort descendingYearTitle
C. - P. Chen, Denlinger, D. L., Lee, Jr., R. E.SubmittedSeasonal variation in generation time, diapause and cold hardiness in a central Ohio population of the flesh fly, Sarcophaga bullata
C. - P. Chen, Denlinger, D. L., Lee, Jr., R. E.SubmittedResponses of non-diapausing flesh flies (Diptera: Sarcophagidae) to low rearing temperatures: developmental rate, cold tolerance, and glycerol concentrations
C. - P. Chen, Denlinger, D. L., Lee, Jr., R. E.SubmittedCold-shock injury and rapid cold hardening in the flesh fly Sarcophaga crassipalpis
C. - P. Chen, Lee, Jr., R. E., Denlinger, D. L.SubmittedA comparison of the responses of tropical and temperate flies (Diptera: Sarcophagidae) to cold and heat stress
C. - P. Chen, Lee, Jr., R. E., Denlinger, D. L.SubmittedCold shock and heat shock: a comparison of the protection generated by brief pretreatment at less severe temperatures
D. J. Davis, Lee, Jr. R. E.SubmittedIntracellular freezing, viability, and composition of fat body cells from freeze-intolerant larvae of Sarcophaga crassipalpis
D. L. Denlinger, Joplin, K. H., Chen, C. - P., Lee, Jr., R. E.SubmittedCold shock and heat shock
J. D. Kelty, Killian, K. A., Lee, Jr., R. E.SubmittedCold shock and rapid cold-hardening of pharate adult flesh flies (Sarcophaga crassipalpis): Effects on behaviour and neuromuscular function following eclosion
J. D. Kelty, Lee, Jr. R. E.SubmittedDiapausing pupae of the flesh fly Sarcophaga crassipalpis (Diptera: Sarcophagidae) are more resistant to inoculative freezing than non-diapausing pupae
O. Kukal, Denlinger, D. L., Lee, Jr., R. E.SubmittedDevelopmental and metabolic changes induced b anoxia in diapausing and non-diapsausing flesh fly pupae
O. Kukal, Denlinger, D. L., Lee, Jr., R. E.SubmittedDevelopmental and metabolic changes induced by anoxia in diapausing and non-diapausing flesh fly pupae
R. E. Lee, Jr., Chen, C. - P., Denlinger, D. L.SubmittedCold shock and rapid cold-hardening in nonoverewintering insects
R. E. Lee, Jr., Chen, C. - P., Denlinger, D. L.SubmittedA rapid cold-hardening process in insects
R. E. Lee, Jr., Chen, C. - P., Meacham, M. H., Denlinger, D. L.SubmittedOntogenetic patterns of cold-hardiness and glycerol production in Sarcophaga crassipalpis
R. E. Lee, Jr., Costanzo, J. P., Lee, R. M.SubmittedReducing cold-hardiness of insect pests using ice nucleating active microbes
R. E. Lee, Jr., Damodaran, K., Yi, S. X., Lorigan, G. A.SubmittedRapid cold-hardening increases membrane fluidity and cold tolerance of insect cells
R. E. Lee, Jr., Damodaran, K., Yi, S. - X., Lorigan, G. A.SubmittedRapid cold-hardening increases membrane fluidity and cold tolerance of insect cells
R. E. Lee, Jr., Denlinger D. L.SubmittedOntogeny of cold-hardiness in diapausing and nondiapausing stages of the flesh fly Sarcophaga crassipalpis
R. E. Lee, Jr., Denlinger D. L.SubmittedOntogeny of cold-hardiness in the flesh fly Sarcophaga crassipalpis
R. E. Lee, Jr., Denlinger D. L.SubmittedCold tolerance in diapausing and non-diapausing stages of the flesh fly, Sarcophaga crassipalpis
R. E. Lee, Jr., Denlinger, D. L., Chen, C. - P.SubmittedInsect cold hardiness and diapause: regulatory relationships
R. E. Lee, Jr., Denlinger, D. L., Chen, C. - P., Meacham, M.SubmittedFreezing intolerance, an insect model system
S. X. Yi, Lee, Jr. R. E.SubmittedIn vivo and in vitro rapid cold-hardening protects cells from cold-shock injury in the flesh fly
Scratchpads developed and conceived by (alphabetical): Ed Baker, Katherine Bouton Alice Heaton Dimitris Koureas, Laurence Livermore, Dave Roberts, Simon Rycroft, Ben Scott, Vince Smith