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Subspecies and Distribution. S.f.floridanusJ.A.Allen,1890—FloridaPeninsulaexceptSEtip(SEUSA). S.f.alacerBangs,1896—CSUSA,inSEKansas,C&SMissouri,EOklahoma,Arkansas,extremeWTennessee,ETexas,mostofMississippi,extremeWCAlabama,andLouisiana.S.fammophilusHowell,1939—EtipoftheFloridaPeninsula(SEUSA).S.faviusOsgood,1910—ConejoI(LosTestigos),offNEVenezuela.S.faztecus].A.Allen,1890—S&EOaxaca,andSWtipofChiapas(SWMexico). S.f.chapmani].A.Allen,1899—W&STexas(SUSA),ECoahuila,N&ENuevoLeon,andmostofTamaulipas(NEMexico). S.f.chiapensisNelson,1904—NEtipofOaxacaandC&SChiapas(Mexico),andWGuatemala. S.f.connectensNelson,1904—STamaulipas,VeracruzexcepttheS,SanLuisPotosi,NEQuerétaro,NEHidalgo,NPuebla,andNOaxaca(EMexico). S.f.continentisOsgood,1912—NWVenezuela. S.f.costaricensisHarris1933—NWCostaRica. S.f.cumanicusThomas,1897—N&CVenezuela. S.f.hesperiusHoffmeister&Lee,1963—NW&CArizona(SWUSA). S.f.hitchensiMearns,1911—SmithandFishermanIsinNorthamptonCounty,EVirginia(EUSA). S.f.holzneriMearns,1896—SEArizona,andSWtipofNewMexico(SWUSA),ESonora,Chihuahua,WDurango,WZacatecas,andESinaloa(NWMexico). S.f.hondurensisGoldman,1932—SEGuatemala,SW&SHonduras,ElSalvador,andNW&CNicaragua. S.fllanensisBlair,1938—SWKansas,SEtipofColorado,WOklahoma,andNCTexas(CUSA). S.f.macrocorpusDiersing&Wilson,1980—Nayarit,SWJalisco,andSWMichoacan(WMexico). S.f.mallurusThomas,1898—EUSA,fromMaineSWtoE&SPennsylvania,andEWestVirginia,WthroughSKentuckytomostofTennessee(excepttheextremeW),andStomostofAlabama(excepttheextremeW)andNFlorida. S.f.margaritaeMiller,1898—MargaritaI,offNVenezuela. S.f.mearnsii].A.Allen,1894—NC&NEUSA,fromMinnesotaEtoMichigan,andStoENebraska,NEKansas,NMissouri,Kentucky,NWtipofVirginia,WWestVirginia,Ohio,N&WPennsylvania,NW&NNewYork,andWVermont,alsoSC&SECanada,inSEOntario,andSEQuebec. S.f.nigronuchalisHartert,1894—ArubaandCuracaoIs(NetherlandsAntilles),offNVenezuela. S.f.orinociThomas,1900—VichadaDepartment(EColombia)andVenezuelaSoftheOrinocoRiver. S.f.orizabaeMerriam,1893—SECoahuila,SWNuevoLeon,SEZacatecas,SanLuisPotosi,Guanajuato,Querétaro,Hidalgo,NWVeracruz,México,andPuebla(CMexico).S.fpaulsoniSchwartz,1956—SEtipoftheFloridaPeninsula(SEUSA). S.f.purgatusThomas,1920—CundinamarcaandTolimaDepartments(CColombia). S.f.restrictusNelson,1907—SWNayarit,C&SJalisco,EColima,andSWMichoacan(Mexico). S.f.russatusJ.A.Allen,1904—SEtipofVeracruz(Mexico). S.f.similisNelson,1907—NCUSA,fromNorthDakota,SWMontana,andNWMinnesotaStoNE&SEWyoming,NEColorado,andNKansas,alsoinSCCanada,SManitoba,andSESaskatchewan(Canada). S.f.subcinctusMiller,1899—Aguascalientes,C&NEJalisco,SWGuanajuato,andNMichoacan(Mexico). S. f. superciliarisJ. A. Allen, 1899 — La Guajira, Magdalena, Atlantico and Bolivar departments (N Colombia). S. [> yucatanicus Miller, 1899 — NW Yucatan Peninsula (SE Mexico). The subspecies mearnsii has been introduced into Vancouver I (SW Canada) and into Washington and Oregon states (NW USA). Also introduced into Italy and the Alps. in Leporidae
Subspecies and Distribution. S.f.floridanusJ.A.Allen,1890—FloridaPeninsulaexceptSEtip(SEUSA). S.f.alacerBangs,1896—CSUSA,inSEKansas,C&SMissouri,EOklahoma,Arkansas,extremeWTennessee,ETexas,mostofMississippi,extremeWCAlabama,andLouisiana.S.fammophilusHowell,1939—EtipoftheFloridaPeninsula(SEUSA).S.faviusOsgood,1910—ConejoI(LosTestigos),offNEVenezuela.S.faztecus].A.Allen,1890—S&EOaxaca,andSWtipofChiapas(SWMexico). S.f.chapmani].A.Allen,1899—W&STexas(SUSA),ECoahuila,N&ENuevoLeon,andmostofTamaulipas(NEMexico). S.f.chiapensisNelson,1904—NEtipofOaxacaandC&SChiapas(Mexico),andWGuatemala. S.f.connectensNelson,1904—STamaulipas,VeracruzexcepttheS,SanLuisPotosi,NEQuerétaro,NEHidalgo,NPuebla,andNOaxaca(EMexico). S.f.continentisOsgood,1912—NWVenezuela. S.f.costaricensisHarris1933—NWCostaRica. S.f.cumanicusThomas,1897—N&CVenezuela. S.f.hesperiusHoffmeister&Lee,1963—NW&CArizona(SWUSA). S.f.hitchensiMearns,1911—SmithandFishermanIsinNorthamptonCounty,EVirginia(EUSA). S.f.holzneriMearns,1896—SEArizona,andSWtipofNewMexico(SWUSA),ESonora,Chihuahua,WDurango,WZacatecas,andESinaloa(NWMexico). S.f.hondurensisGoldman,1932—SEGuatemala,SW&SHonduras,ElSalvador,andNW&CNicaragua. S.fllanensisBlair,1938—SWKansas,SEtipofColorado,WOklahoma,andNCTexas(CUSA). S.f.macrocorpusDiersing&Wilson,1980—Nayarit,SWJalisco,andSWMichoacan(WMexico). S.f.mallurusThomas,1898—EUSA,fromMaineSWtoE&SPennsylvania,andEWestVirginia,WthroughSKentuckytomostofTennessee(excepttheextremeW),andStomostofAlabama(excepttheextremeW)andNFlorida. S.f.margaritaeMiller,1898—MargaritaI,offNVenezuela. S.f.mearnsii].A.Allen,1894—NC&NEUSA,fromMinnesotaEtoMichigan,andStoENebraska,NEKansas,NMissouri,Kentucky,NWtipofVirginia,WWestVirginia,Ohio,N&WPennsylvania,NW&NNewYork,andWVermont,alsoSC&SECanada,inSEOntario,andSEQuebec. S.f.nigronuchalisHartert,1894—ArubaandCuracaoIs(NetherlandsAntilles),offNVenezuela. S.f.orinociThomas,1900—VichadaDepartment(EColombia)andVenezuelaSoftheOrinocoRiver. S.f.orizabaeMerriam,1893—SECoahuila,SWNuevoLeon,SEZacatecas,SanLuisPotosi,Guanajuato,Querétaro,Hidalgo,NWVeracruz,México,andPuebla(CMexico).S.fpaulsoniSchwartz,1956—SEtipoftheFloridaPeninsula(SEUSA). S.f.purgatusThomas,1920—CundinamarcaandTolimaDepartments(CColombia). S.f.restrictusNelson,1907—SWNayarit,C&SJalisco,EColima,andSWMichoacan(Mexico). S.f.russatusJ.A.Allen,1904—SEtipofVeracruz(Mexico). S.f.similisNelson,1907—NCUSA,fromNorthDakota,SWMontana,andNWMinnesotaStoNE&SEWyoming,NEColorado,andNKansas,alsoinSCCanada,SManitoba,andSESaskatchewan(Canada). S.f.subcinctusMiller,1899—Aguascalientes,C&NEJalisco,SWGuanajuato,andNMichoacan(Mexico). S. f. superciliarisJ. A. Allen, 1899 — La Guajira, Magdalena, Atlantico and Bolivar departments (N Colombia). S. [> yucatanicus Miller, 1899 — NW Yucatan Peninsula (SE Mexico). The subspecies mearnsii has been introduced into Vancouver I (SW Canada) and into Washington and Oregon states (NW USA). Also introduced into Italy and the Alps.
Subspecies and Distribution. S.a.aquaticusLinnaeus,1758—Massachusetts,SENewYork,Connecticut,RhodeIsland,EPennsylvania,NewJersey,Maryland,Delaware,WestVirginia,Virginia,EKentucky,WNorthCarolina,ETennessee,NWSouthCarolina,andNGeorgia(USA). S.a.alleniR.H.Baker,1951—SCTexas(USA). S.a.anastasaeBangs,1898—AnastasiaI,Florida(USA). S.a.aereusBangs,1896—SKansas,Oklahoma,NETexas,Arkansas,andLouisiana(USA). S.a.australisF.M.Chapman,1893—SEGeorgiaandmostofFlorida(USA). S.a.bassiA.H.Howell,1939—knownonlyfromthetypelocalityinS.a.County,EFlorida(USA). S.a.carytH.H.T.Jackson,1914—SSouthDakota,SEWyoming,NEColorado,W&CNebraska,andNWKansas(USA). S.a.howelliH.H.T.Jackson,1914—Mississippi,SELouisiana,Alabama,extremeNWFlorida,W&NGeorgia,mostofNorthandSouthCarolina,andextremeSCVirginia(USA). S.a.inflatusH.H.T.Jackson,1914—extremeSTexas(USA)andNETamaulipas(Mexico). S.a.machrinoidesH.H.T.Jackson,1914—SMinnesota,ENebraska,Iowa,EKansas,Missouri,NEOklahoma,andNArkansas(USA). S.a.machrinusRafinesque,1832—SOntario(Canada)andWisconsin,Michigan,IIlinois,Indiana,Ohio,W&CKentucky,WWestVirginia,andW&CTennessee(USA). S.a.montanusR.H.Baker,1951—NCoahuila(Mexico)andadjacentTexas(USA). S.a.nanusW.B.Davis,1942—ETexas(USA). S.a.parvusRhoads,1894—EFlorida(USA). S.a.porteriSchwartz,1952—SFlorida(USA). S. a. texanusJ. A. Allen, 1893 — Presidio County, SW Texas (USA). in Talpidae
Subspecies and Distribution. S.a.aquaticusLinnaeus,1758—Massachusetts,SENewYork,Connecticut,RhodeIsland,EPennsylvania,NewJersey,Maryland,Delaware,WestVirginia,Virginia,EKentucky,WNorthCarolina,ETennessee,NWSouthCarolina,andNGeorgia(USA). S.a.alleniR.H.Baker,1951—SCTexas(USA). S.a.anastasaeBangs,1898—AnastasiaI,Florida(USA). S.a.aereusBangs,1896—SKansas,Oklahoma,NETexas,Arkansas,andLouisiana(USA). S.a.australisF.M.Chapman,1893—SEGeorgiaandmostofFlorida(USA). S.a.bassiA.H.Howell,1939—knownonlyfromthetypelocalityinS.a.County,EFlorida(USA). S.a.carytH.H.T.Jackson,1914—SSouthDakota,SEWyoming,NEColorado,W&CNebraska,andNWKansas(USA). S.a.howelliH.H.T.Jackson,1914—Mississippi,SELouisiana,Alabama,extremeNWFlorida,W&NGeorgia,mostofNorthandSouthCarolina,andextremeSCVirginia(USA). S.a.inflatusH.H.T.Jackson,1914—extremeSTexas(USA)andNETamaulipas(Mexico). S.a.machrinoidesH.H.T.Jackson,1914—SMinnesota,ENebraska,Iowa,EKansas,Missouri,NEOklahoma,andNArkansas(USA). S.a.machrinusRafinesque,1832—SOntario(Canada)andWisconsin,Michigan,IIlinois,Indiana,Ohio,W&CKentucky,WWestVirginia,andW&CTennessee(USA). S.a.montanusR.H.Baker,1951—NCoahuila(Mexico)andadjacentTexas(USA). S.a.nanusW.B.Davis,1942—ETexas(USA). S.a.parvusRhoads,1894—EFlorida(USA). S.a.porteriSchwartz,1952—SFlorida(USA). S. a. texanusJ. A. Allen, 1893 — Presidio County, SW Texas (USA).
Distribution. SE Canada (S Ontario and S Quebec) and NE USA (W Maine, New Hampshire, Vermont, New York, Massachusetts, N Connecticut, N Rhode Island, Ohio, Pennsylvania, N New Jersey, West Virginia, NW Maryland, W Virginia, E Kentucky, E Tennessee, W North Carolina, extreme NE Georgia, and extreme NW South Carolina). in Talpidae
Distribution. SE Canada (S Ontario and S Quebec) and NE USA (W Maine, New Hampshire, Vermont, New York, Massachusetts, N Connecticut, N Rhode Island, Ohio, Pennsylvania, N New Jersey, West Virginia, NW Maryland, W Virginia, E Kentucky, E Tennessee, W North Carolina, extreme NE Georgia, and extreme NW South Carolina).
FIGURE 8. Faxonius elix n in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 8. Faxonius elix n. sp.: Male Form I holotype (A–D; H, J, K), morphotype male Form II (E, F), and allotype female (G, I). Lateral aspect of carapace (A); mesial and lateral aspect of Form I male gonopod, respectively (B–C), mesial view of entire gonopod of Form I male (D); mesial and lateral aspect of form II male gonopod, respectively (E–F); ventral aspect of epistome (G); dorsal view of carapace (H); ventral view of female annulus ventralis (I); dorsal view of antennal scale (J); dorsal view of right chelae (K). Photographs by Guenter Schuster.
FIGURE 7 in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 7. Comparative plate of key diagnostic differences between Faxonius jeffersoni and Faxonius elix n. sp. Photos include MI gonopod (left column), rostrum (center column), and mandible (right column) of F. elix n. sp. (top row) and F. jeffersoni (bottom row). Arrows point to diagnostic characteristics for F. elix n. sp. Photographs by Guenter Schuster.
FIGURE 4 in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 4. Phylogenetic analyses of the mitochondrial gene cytochrome oxidase subunit 1 (CO1) using newly generated sequence data and all publicly available Cambaridae sequence data. TOP LEFT: Maximum Likelihood analysis of all Cambaridae with the genus Faxonius highlighted (gray box). Star on the bottom clade indicates the same branch as the phylogeny on the right. Bottom Left: Unrooted phylogenetic network of the genus Faxonius. Blue circle indicates the same clade as the phylogeny on the right. Right: Excerpt from the tree on the left showing the focal group of this study, including F. jeffersoni and F. elix. Black dots above branches indicate maximum likelihood values>95%.
FIGURE 2 A–G in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 2 A–G. Box pots of scaled body measurements of FI male Faxonius jeffersoni and Faxonius elix, new species. Black dots represent outliers. Measurements made to the nearest 0.01mm.
FIGURE 10. Typical habitat for Faxonius elix n in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 10. Typical habitat for Faxonius elix n. sp. throughout its range with signs of anthropogenic alternation.
FIGURE 3 in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 3. Results of principle components analysis of standardized measurements of Faxonius elix n. sp. and Faxonius jeffersoni. Triangles represent F. jeffersoni. Circles represent F. elix n. sp. Polygons were constructed based on 95% confidence intervals.
FIGURE 1 in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 1. Field surveys undertaken to collect individuals for genetic and morphometric analysis. Crosses represent localities where Faxonius elix was detected. Circles represent areas where F. jeffersoni was detected. Stars represent localities where F. ronaldi was detected. Triangles represent areas where F. illinoiensis was detected.
FIGURE 9. Type locality for Faxonius elix n in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 9. Type locality for Faxonius elix n. sp., Fern Creek at Feganbush Lane (Kentucky Highway 864) crossing, Jefferson County, Kentucky (38.160374o N, -85.639214o W. Photograph taken on November 19, 2018.
FIGURE 5 in Description of a new species of crayfish in the genus Faxonius (Decapoda: Cambaridae) from the Lower Ohio River Drainage, with evidence of glacial influence on the distribution of some crayfish species throughout the Ohio River basin
FIGURE 5. Preglacial drainages and glacial maximum of the Wisconsin, Illinois, and Pre-Illinois glaciation events. Areas shaded by diagonal lines indicate the approximate extent of glacial Lake Tight. Map modified from Taylor and Niemiller, 2016.
Subspecies and Distribution. B.b.brevicaudusSay,1823—SWOntarioandextremeSEManitoba(Canada)andmostofNorthDakota,SouthDakota,Minnesota,WWisconsin,Nebraska,Iowa,WIllinois,N&EKansas,Missouri,NEOklahoma,andNArkansas(USA). B. b. aloga Bangs, 1902 — Martha's Vineyard I, off SE Massachusetts (USA). B.b.angustaR.M.Anderson,1943—SEQuebecandNNewBrunswick(Canada). B.b.churchiBole&Moulthrop,1942—SEKentucky,SWVirginia,ETennessee,andWNorthCarolina(USA). B.b.compactaBangs,1902—NantucketI,offSEMassachusetts(USA). B.b.hooperiBole&Moulthrop,1942—extremeSEQuebec(Canada)andNVermont(USA). B.b.kirtlandiBole&Moulthrop,1942—EWisconsin,Michigan,EIllinois,Indiana,Ohio,extremeSWNewYork,Pennsylvania,WestVirginia,Maryland,Delaware,mostofVirginia,Kentucky,Tennessee,WNorthCarolina,WSouthCarolina,NAlabama,andNGeorgia(USA). B.b.manitobensisR.M.Anderson,1947—C&SESaskatchewanandSManitoba(Canada),andNNorthDakota(USA). B.b.pallidaR.W.Smith,1940—NMaine(USA)andC&SNewBrunswickandNovaScotia(Canada). B.b.talpoidesGapper,1830—S&SEOntarioandSQuebec(Canada),andfromNewEnglandStoNewYorkandNewJersey(USA). B. b. telmalestes Merriam, 1895 — SE Virginia and extreme NE North Carolina (USA). in Soricidae
Subspecies and Distribution. B.b.brevicaudusSay,1823—SWOntarioandextremeSEManitoba(Canada)andmostofNorthDakota,SouthDakota,Minnesota,WWisconsin,Nebraska,Iowa,WIllinois,N&EKansas,Missouri,NEOklahoma,andNArkansas(USA). B. b. aloga Bangs, 1902 — Martha's Vineyard I, off SE Massachusetts (USA). B.b.angustaR.M.Anderson,1943—SEQuebecandNNewBrunswick(Canada). B.b.churchiBole&Moulthrop,1942—SEKentucky,SWVirginia,ETennessee,andWNorthCarolina(USA). B.b.compactaBangs,1902—NantucketI,offSEMassachusetts(USA). B.b.hooperiBole&Moulthrop,1942—extremeSEQuebec(Canada)andNVermont(USA). B.b.kirtlandiBole&Moulthrop,1942—EWisconsin,Michigan,EIllinois,Indiana,Ohio,extremeSWNewYork,Pennsylvania,WestVirginia,Maryland,Delaware,mostofVirginia,Kentucky,Tennessee,WNorthCarolina,WSouthCarolina,NAlabama,andNGeorgia(USA). B.b.manitobensisR.M.Anderson,1947—C&SESaskatchewanandSManitoba(Canada),andNNorthDakota(USA). B.b.pallidaR.W.Smith,1940—NMaine(USA)andC&SNewBrunswickandNovaScotia(Canada). B.b.talpoidesGapper,1830—S&SEOntarioandSQuebec(Canada),andfromNewEnglandStoNewYorkandNewJersey(USA). B. b. telmalestes Merriam, 1895 — SE Virginia and extreme NE North Carolina (USA).
Subspecies and Distribution. C.p.parvusSay,1823—C&EUSAandSWCanadafromSWWyomingandCColoradoEtoNewYork,andfromCWisconsin,CMichigan,andSEOntarioStoTexasandFlorida. C. p. flonidanus Merriam, 1895 — NE Ohio, NW Tennessee, S Georgia, and N & S Florida; distributional limits are uncertain. in Soricidae
Subspecies and Distribution. C.p.parvusSay,1823—C&EUSAandSWCanadafromSWWyomingandCColoradoEtoNewYork,andfromCWisconsin,CMichigan,andSEOntarioStoTexasandFlorida. C. p. flonidanus Merriam, 1895 — NE Ohio, NW Tennessee, S Georgia, and N & S Florida; distributional limits are uncertain.
Subspecies and Distribution. S.f.fumeusG.S.Miller,1895—SECanada(SOntarioandSQuebec)andEUSA(NEMinnesota,NewEngland,exceptmostofMaine,NVermont,andNNewHamnsire,SIndiana,Ohio,Pennsylvania,WestVirginia,Maryland,WNewJersey,Kentucky,N&WVirginia,ETennessee,WNorthCarolina,NEGeorgia,andNWSouthCarolina). S. f. umbrosus H. H. T. Jackson, 1917 — SE Canada (SE Quebec, New Brunswick, and Nova Scotia) and NE USA (NE New York, N Vermont, N New Hampshire, and most of Maine). in Soricidae
Subspecies and Distribution. S.f.fumeusG.S.Miller,1895—SECanada(SOntarioandSQuebec)andEUSA(NEMinnesota,NewEngland,exceptmostofMaine,NVermont,andNNewHamnsire,SIndiana,Ohio,Pennsylvania,WestVirginia,Maryland,WNewJersey,Kentucky,N&WVirginia,ETennessee,WNorthCarolina,NEGeorgia,andNWSouthCarolina). S. f. umbrosus H. H. T. Jackson, 1917 — SE Canada (SE Quebec, New Brunswick, and Nova Scotia) and NE USA (NE New York, N Vermont, N New Hampshire, and most of Maine).
Subspecies and Distribution. S.c.cinereusKerr,1792—N&EAlaskaE&SthroughmuchofCanada(includingNewfoundland,NovaS.c.,andPrinceEdwardI)intothecontinentalUSAasfarSas NCNewMexicoandNGeorgia. S. c. hollister: H. H. T. Jackson, 1925 —-W & C Alaska (USA). S.c.lesueuriiDuvernoy,1842—NIllinoisEtotheSportionofMichiganandStoS Indiana(NEUSA). S.c.miscixBangs,1899—LabradorandNEQuebec(ECanada). S.c.magriculusGreen,1932—SNewJersey(NEUSA). S.c.ohionensisBole&Moulthrop,1942—N&CMichigan,Ohio,andEPennsylvania(NEUSA). S. c. streatori Merriam, 1895 — SE Alaska to SW British Columbia along the full Pacific coast of W Canada. in Soricidae
Subspecies and Distribution. S.c.cinereusKerr,1792—N&EAlaskaE&SthroughmuchofCanada(includingNewfoundland,NovaS.c.,andPrinceEdwardI)intothecontinentalUSAasfarSas NCNewMexicoandNGeorgia. S. c. hollister: H. H. T. Jackson, 1925 —-W & C Alaska (USA). S.c.lesueuriiDuvernoy,1842—NIllinoisEtotheSportionofMichiganandStoS Indiana(NEUSA). S.c.miscixBangs,1899—LabradorandNEQuebec(ECanada). S.c.magriculusGreen,1932—SNewJersey(NEUSA). S.c.ohionensisBole&Moulthrop,1942—N&CMichigan,Ohio,andEPennsylvania(NEUSA). S. c. streatori Merriam, 1895 — SE Alaska to SW British Columbia along the full Pacific coast of W Canada.
Supplementary material 1 from: Downer R, Ebert T (2014) Macrolepidoptera biodiversity in Wooster, Ohio from 2001 through 2009. ZooKeys 452: 79-105. https://doi.org/10.3897/zookeys.452.8009
Nightly moth captures in Wooster, Ohio and summaries of these data: Explanation note: The first worksheet on the left is the "Introduction". The next page to the right in the file includes the weather data. Then there are nine pages with yearly capture data. These pages include the number of growing degree days accumulated by each collection date. Cells are blank if no individuals of a given species were captured on a specific date. Next is a "Condensed List" that contains total number of each species, and the number of years each species was collected. This page contains the species as they were identified and the equivalent under the system by Lafontaine and Schmidt (2010). It also lists the range in capture date, and range in growing degree days. Then follows total captures per year, and a list of known host plants. The next worksheet is a list of the 13 county records and their collection date. Next is a page with a list of univoltine and bivoltine species selected based on abundance and environmental fidelity. Next is a listing of the 20 pest species and their yearly abundance. This was extracted from the main list to facilitate access. Lastly is a page with the moon phases. We did not find the moon phase data of any use, but it may prove useful to someone else.
RF Recording of "E-ZPass" Electronic Tolling System in Ohio and Virginia
<p>This dataset contains IQ recordings of the "E-ZPass" electronic tolling system used in the Eastern portion of the United States, which operates in the 915MHz ISM band.</p> <p>Recording details:</p> <ul> <li>Format: Complex Float 32 (a pair of 32-bit floats for each sample)</li> <li>Software: GQRX</li> <li>Hardware: R820T-based RTL-SDR with the default ~4.5" dipole antenna</li> <li>Center frequency: 915.5MHz</li> </ul> <p>These recordings were made on 3 different days:</p> <ul> <li>The first 3 recordings were made on November 22nd, 2018, along the Ohio Turnpike, with a bandwidth of 2.4MHz.</li> <li>The next 4 recordings were made on November 23rd, 2018, also along the Ohio Turnpike, with a bandwith of 3.2MHz and different gain values (as controlled by the GQRX "LNA" slider in the "Input controls" pane): <ul> <li>0.0dB: gqrx_20181123_210500_...</li> <li>4.8dB: gqrx_20181123_205740_...</li> <li>10.0dB: gqrx_20181123_210814_...</li> <li>15.2dB: gqrx_20181123_211514_...</li> </ul> </li> <li>The final 2 recordings were made on May 25th, 2019, in Virginia, with a bandwidth of 3.2MHz and a gain of 49.8dB. <ul> <li>Entering the toll road: gqrx_20190525_194416_...</li> <li>Exiting the toll road: gqrx_20190525_195900_...</li> </ul> </li> </ul> <p>The RF protocol is described in Document # TS 360100-034 by Kapsch TrafficCom IVHS Inc., "Active TDM Over-Air Specification for Electronic Toll Communications". There is a copy of the document on the internet archive: <a href="https://archive.org/details/rev-c-active-tdm-over-air-spec-for-electronic-toll-communications" target="_blank" rel="noopener">https://archive.org/details/rev-c-active-tdm-over-air-spec-for-electronic-toll-communications</a></p>
Data from: New information on Titanichthys (Placodermi: Arthrodira) from the Cleveland shale (upper devonian) of Ohio, USA
The placoderm (Titanichthys) from the Late Devonian (Famennian) is based on incomplete and fragmentary specimens that have hindered understanding of its overall anatomy and phylogenetic relationships. A new, nearly complete, articulated specimen from the Upper Devonian Cleveland Shale provides new information about the previously undescribed rostral, postmarginal, postsuborbital, submarginal, posterior superognathal plates, and the nasal capsule. A revised diagnosis is provided for the genus. Three new diagnostic characters are identified including a transversely elliptical rostral plate that does not contact adjacent plates, a reduced posterior superognathal, and a median dorsal plate that inserts into the posterior dorsal lateral plate. The first comprehensive phylogenetic analysis of (Titanichthys) indicates that the genus is a basal aspinothoracid arthrodire closely related to the enigmatic taxa (Bungartius) and (Tafilalichthys).
Figure 4 in Osteology and phylogenetic position of the diminutive 'microsaur' Odonterpeton triangulare from the Pennsylvanian of Linton, Ohio, and major features of recumbirostran phylogeny
Figure 4. Strict consensus of the results of the parsimony analysis focused on the phylogenetic relationships recovered within Recumbirostra. Major clades are labelled at nodes (circles). Major recumbirostran families are labelled in colour. Silhouette tones indicate the level of body elongation, with darker shades indicating more extreme body elongation.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.