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15 results

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Page 1
Thermal biology of mosquito-borne disease.
Mordecai EA, Caldwell JM, Grossman MK, Lippi CA, Johnson LR, Neira M, Rohr JR, Ryan SJ, Savage V, Shocket MS, Sippy R, Stewart Ibarra AM, Thomas MB, Villena O. Mordecai EA, et al. Among authors: ryan sj. Ecol Lett. 2019 Oct;22(10):1690-1708. doi: 10.1111/ele.13335. Epub 2019 Jul 8. Ecol Lett. 2019. PMID: 31286630 Free PMC article. Review.
Temperate pathogens exhibit broader thermal ranges and cooler thermal minima and optima than tropical pathogens. Among tropical pathogens, malaria and Ross River virus had lower thermal optima (25-26C) while dengue and Zika viruses had the highest (29C) thermal optima. ...
Temperate pathogens exhibit broader thermal ranges and cooler thermal minima and optima than tropical pathogens. Among tropical pathogens, m …
Effects of changes in temperature on Zika dynamics and control.
Ngonghala CN, Ryan SJ, Tesla B, Demakovsky LR, Mordecai EA, Murdock CC, Bonds MH. Ngonghala CN, et al. Among authors: ryan sj. J R Soc Interface. 2021 May;18(178):20210165. doi: 10.1098/rsif.2021.0165. Epub 2021 May 5. J R Soc Interface. 2021. PMID: 33947225 Free PMC article.
Temperature explains broad patterns of Ross River virus transmission.
Shocket MS, Ryan SJ, Mordecai EA. Shocket MS, et al. Among authors: ryan sj. Elife. 2018 Aug 28;7:e37762. doi: 10.7554/eLife.37762. Elife. 2018. PMID: 30152328 Free PMC article.
We built a mechanistic model for the thermal response of Ross River virus, an important mosquito-borne pathogen in Australia, Pacific Islands, and potentially at risk of emerging worldwide. ...
We built a mechanistic model for the thermal response of Ross River virus, an important mosquito-borne pathogen in Australia, Pacific …
Extensive regional variation in the phenology of insects and their response to temperature across North America.
Dunn PO, Ahmed I, Armstrong E, Barlow N, Barnard MA, Bélisle M, Benson TJ, Berzins LL, Boynton CK, Brown TA, Cady M, Cameron K, Chen X, Clark RG, Clotfelter ED, Cromwell K, Dawson RD, Denton E, Forbes A, Fowler K, Fraser KC, Gandhi KJK, Garant D, Hiebert M, Houchen C, Houtz J, Imlay TL, Inouye BD, Inouye DW, Jackson M, Jacobson AP, Jayd K, Juteau C, Kautz A, Killian C, Kinnear E, Komatsu KJ, Larsen K, Laughlin A, Levesque-Beaudin V, Leys R, Long E, Lougheed SC, Mackenzie S, Marangelo J, Miller C, Molano-Flores B, Morrissey CA, Nicholls E, Orlofske JM, Pearse IS, Pelletier F, Pitt AL, Poston JP, Racke DM, Randall JA, Richardson ML, Rooney O, Ruegg AR, Rush S, Ryan SJ, Sadowski M, Schoepf I, Schulz L, Shea B, Sheehan TN, Siefferman L, Sikes D, Stanback M, Styrsky JD, Taff CC, Uehling JJ, Uvino K, Wassmer T, Weglarz K, Weinberger M, Wenzel J, Whittingham LA. Dunn PO, et al. Among authors: ryan sj. Ecology. 2023 May;104(5):e4036. doi: 10.1002/ecy.4036. Epub 2023 Apr 4. Ecology. 2023. PMID: 36944538
A landscape-scale framework to identify refugia from multiple stressors.
Rojas IM, Jennings MK, Conlisk E, Syphard AD, Mikesell J, Kinoshita AM, West K, Stow D, Storey E, De Guzman ME, Foote D, Warneke A, Pairis A, Ryan S, Flint LE, Flint AL, Lewison RL. Rojas IM, et al. Among authors: ryan s. Conserv Biol. 2022 Feb;36(1):e13834. doi: 10.1111/cobi.13834. Epub 2021 Oct 26. Conserv Biol. 2022. PMID: 34476838 Free PMC article.
Sites with high refugial capacity (super-refugia sites) had on average 30% fewer extremely warm summers, 20% fewer fire events, 10% less exposure to altered river channels and riparian areas, and 50% fewer recreational trails than the surrounding landscape. ...
Sites with high refugial capacity (super-refugia sites) had on average 30% fewer extremely warm summers, 20% fewer fire events, 10% less exp …
Developing antisense oligonucleotides for a TECPR2 mutation-induced, ultra-rare neurological disorder using patient-derived cellular models.
Williams LA, Gerber DJ, Elder A, Tseng WC, Baru V, Delaney-Busch N, Ambrosi C, Mahimkar G, Joshi V, Shah H, Harikrishnan K, Upadhyay H, Rajendran SH, Dhandapani A, Meier J, Ryan SJ, Lewarch C, Black L, Douville J, Cinquino S, Legakis H, Nalbach K, Behrends C, Sato A, Galluzzi L, Yu TW, Brown D, Agrawal S, Margulies D, Kopin A, Dempsey GT. Williams LA, et al. Among authors: ryan sj. Mol Ther Nucleic Acids. 2022 Jun 22;29:189-203. doi: 10.1016/j.omtn.2022.06.015. eCollection 2022 Sep 13. Mol Ther Nucleic Acids. 2022. PMID: 35860385 Free PMC article.
Monitoring long-term vegetation condition dynamics in persistent semi-arid wetland communities using time series of Landsat data.
Wen L, Mason TJ, Ryan S, Ling JE, Saintilan N, Rodriguez J. Wen L, et al. Among authors: ryan s. Sci Total Environ. 2023 Dec 20;905:167212. doi: 10.1016/j.scitotenv.2023.167212. Epub 2023 Sep 18. Sci Total Environ. 2023. PMID: 37730050
We used generalized additive models (GAM) to explore the response of vegetation to seasonality, river flow and climatic conditions. We found that EVI was a useful metric to monitor both wetland condition and response to climatic and hydrological drivers. Wetland communitie …
We used generalized additive models (GAM) to explore the response of vegetation to seasonality, river flow and climatic conditions. W …
15 results