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13,113 results for “Resistivity”
Fig. 11 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 11. UV resistance graph of the strains isolated in this study. Survival rates of D. radiodurans R1T (), strains () and E. coli K12 () ■ ● ◆ are also shown. Strains: a, BT578; b, BT579; c, BT623; d, BT581; e, BT582; f, BT474; g, BT580; h, BT558; i, BT455; j, BT653; k, BT183; l, BT649.
Fig. 10 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 10. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Peribacillus BT649. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 4 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 4. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Nocardia BT474. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 7 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 7. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Methylobacterium BT455. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 6 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 6. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Microbacterium BT558. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 5 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 5. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Cellulomonas BT580. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 8 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 8. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Sphingomonas BT653. Bootstrap values (>70%) are shown above nodes. Bar: 0.01 substitutions per nucleotide position.
Fig. 1 in Twelve unrecorded UV-resistant bacterial species isolated in 2020
Fig. 1. Transmission electron micrographs of the strains isolated in this study. Strains: a, BT578; b, BT579; c, BT623; d, BT581; e, BT582; f, BT474; g, BT580; h, BT558; i, BT455; j, BT653; k, BT183; l, BT649.
Fig. 3 in A report of eight unrecorded UV-resistant bacterial species in Korea isolated in 2018
Fig. 3. Representative survival curve of strains () following exposure to UV radiation (0-1,200 J m-2), with a positive control, D. radiodu▲ rans R1 (●) and a negative control, Escherichia coli (■). Each increment on the y-axis represents a tenfold reduction in viability. (1) 18JY8-13; (2) 18JY13-16; (3) 18JY43-7; (4) 18JY12-7; (5) 18JY1-1; (6) 18JY1-7; (7) 18JY15-3; (8) 18JY7-2.
Fig. 2 in A report of eight unrecorded UV-resistant bacterial species in Korea isolated in 2018
Fig. 2. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Bacillus in the phylum Firmicutes. Bootstrap values are shown above nodes for the neighbor-joining methods. Bar: 0.005 substitutions per nucleotide position, respectively. (1) 18JY15-3; (2) 18JY12-7, 18JY8-13; (3) 18JY1-1, 18JY13-16, 18JY43-7, 18JY1-7; (4) 18JY7-2.
Fig. 1 in A report of eight unrecorded UV-resistant bacterial species in Korea isolated in 2018
Fig. 1. Transmission electron micrographs of the strains isolated in this study. Strains: 1, 18JY8-13; 2, 18JY13-16; 3, 18JY43-7; 4, 18JY12- 7; 5, 18JY1-1; 6, 18JY1-7; 7, 18JY15-3; 8, 18JY7-2.
Fig. 7 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 7. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY76-9 and their close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 3 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 3. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY14-35 and their close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 6 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 6. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY35-8 and their close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 2 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 2. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY14-16 and its close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 8 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 8. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY39-1 and their close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 5 in A report of eight unrecorded radiation resistant bacterial species in Korea isolated in 2018
Fig. 5. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strain 18JY12-20 and their close relatives. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively.
Fig. 6 in A report of six unrecorded radiation-resistant bacterial species isolated from soil in Korea in 2018
Fig. 6. Representative survival curve of strains (▲) following exposure to UV radiation, with a positive control, D. radiodurans R1 (●) and a negative control, Escherichia coli (■). Each increment on the y-axis represents a tenfold reduction in viability. (1) 17JY11-11; (2) 18JY14-1; (3) 18JY42-3; (4) 18JY76-11; (5) 18JY15-11 and (6) 18SH.
Fig. 5 in A report of six unrecorded radiation-resistant bacterial species isolated from soil in Korea in 2018
Fig. 5. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Microterricola. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively. Micrococcus luteus DSM 20030T is used as an outgroup.
Fig. 4 in A report of six unrecorded radiation-resistant bacterial species isolated from soil in Korea in 2018
Fig. 4. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences shows the relationship between the strains isolated in this study and their relatives of the genus Methylobacterium. Bootstrap values (>70%) are shown above nodes for the neighbor-joining methods. Bar: 0.01 and 0.02 substitutions per nucleotide position, respectively. Hyphomicrobium vulgareis used as an outgroup.
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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)
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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.