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point decrease » point increase (Expand Search)
nn decrease » _ decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
point decrease » point increase (Expand Search)
nn decrease » _ decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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31861
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31862
Image_8_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31863
Image_11_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31864
Table_1_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.docx
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31865
Table_3_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.docx
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31866
Table_4_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.xls
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31867
Image_6_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31868
Table_2_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.docx
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31869
Image_2_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31870
Image_10_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31871
Image_7_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31872
Image_3_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31873
Image_9_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31874
Image_4_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31875
Image_1_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg
Published 2023“…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
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31876
Quantum Dot Hybridization of Piezoelectric Polymer Films for Non-Transfer Integration of Flexible Biomechanical Energy Harvesters
Published 2022“…The rational addition of dopamine plays multiple roles of (1) significantly decreasing the size of ZnO particles to a QD level (3.77 nm), (2) formation of a stable and homogeneous dispersion of a ZnO QDs/piezoelectric polyvinylidene fluoride-<i>co</i>-hexafluoropropylene copolymer for uniform hybridization of a piezoelectric film, and (3) increment of the piezoelectric phase via induced crystallization at a low annealing temperature. …”
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31877
Quantum Dot Hybridization of Piezoelectric Polymer Films for Non-Transfer Integration of Flexible Biomechanical Energy Harvesters
Published 2022“…The rational addition of dopamine plays multiple roles of (1) significantly decreasing the size of ZnO particles to a QD level (3.77 nm), (2) formation of a stable and homogeneous dispersion of a ZnO QDs/piezoelectric polyvinylidene fluoride-<i>co</i>-hexafluoropropylene copolymer for uniform hybridization of a piezoelectric film, and (3) increment of the piezoelectric phase via induced crystallization at a low annealing temperature. …”
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31878
Quantum Dot Hybridization of Piezoelectric Polymer Films for Non-Transfer Integration of Flexible Biomechanical Energy Harvesters
Published 2022“…The rational addition of dopamine plays multiple roles of (1) significantly decreasing the size of ZnO particles to a QD level (3.77 nm), (2) formation of a stable and homogeneous dispersion of a ZnO QDs/piezoelectric polyvinylidene fluoride-<i>co</i>-hexafluoropropylene copolymer for uniform hybridization of a piezoelectric film, and (3) increment of the piezoelectric phase via induced crystallization at a low annealing temperature. …”
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31879
Caregivers’ transcripts.
Published 2023“…A total of 65 SSIs were conducted among caregivers (n = 60) and health care providers (n = 5). …”
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31880
Codebook.
Published 2023“…A total of 65 SSIs were conducted among caregivers (n = 60) and health care providers (n = 5). …”