10cm borosilicate glass capillary tubes with filament (Sutter Instrument Company)
90
Structured Review
Sutter Instrument Company
10cm borosilicate glass capillary tubes with filament
10cm Borosilicate Glass Capillary Tubes With Filament, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/10cm+borosilicate+glass+capillary+tubes+with+filament/borosilicate+glass+capillaries/pm40578357-245-216-225
Average 90 stars, based on 1 article reviews
10cm Borosilicate Glass Capillary Tubes With Filament, supplied by Sutter Instrument Company, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/10cm+borosilicate+glass+capillary+tubes+with+filament/borosilicate+glass+capillaries/pm40578357-245-216-225
Average 90 stars, based on 1 article reviews
10cm borosilicate glass capillary tubes with filament - by Bioz Stars,
2026-09
90/100 stars
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Generated:Article Title: Spatial constraints and cell surface molecule depletion structure a randomly connected learning circuit. Article Snippet: Article Spatial constraints and cell surface molecule depletion structure a randomly connected learning circuit Highlights • PN and KC neurite position reflects developmental history and predicts connectivity • KCs are agnostic to PN type, and each connects to a subset of nearby options • Ig-SF molecules are uniquely depleted in KC transcriptomes throughout development • KC natural promiscuity can be biased with ectopic Ig-SF expression Authors Emma M. Thornton-Kolbe, Maria Ahmed, Finley R. Gordon, Bogdan Sieriebriennikov, Donnell L. Williams, Yerbol Z. Kurmangaliyev, E. Josephine Clowney Correspondence jclowney@umich.edu In brief Thornton-Kolbe et al. propose a model for how neurons with shared developmental identities can acquire distinct connectivities.. Individual Kenyon cells of the Drosophila mushroom body connect to a random subset of local options.. Non- selective connectivity is proposed to arise from a natural depletion of synaptic specificity molecules. Software:Article Title: Spatial constraints and cell surface molecule depletion structure a randomly connected learning circuit. Article Snippet: Article Spatial constraints and cell surface molecule depletion structure a randomly connected learning circuit Highlights • PN and KC neurite position reflects developmental history and predicts connectivity • KCs are agnostic to PN type, and each connects to a subset of nearby options • Ig-SF molecules are uniquely depleted in KC transcriptomes throughout development • KC natural promiscuity can be biased with ectopic Ig-SF expression Authors Emma M. Thornton-Kolbe, Maria Ahmed, Finley R. Gordon, Bogdan Sieriebriennikov, Donnell L. Williams, Yerbol Z. Kurmangaliyev, E. Josephine Clowney Correspondence jclowney@umich.edu In brief Thornton-Kolbe et al. propose a model for how neurons with shared developmental identities can acquire distinct connectivities.. Individual Kenyon cells of the Drosophila mushroom body connect to a random subset of local options.. Non- selective connectivity is proposed to arise from a natural depletion of synaptic specificity molecules. |