pco.panda 4.2 (Excelitas corp)
97
Structured Review
Excelitas corp
pco.panda 4.2
Pco.Panda 4.2, supplied by Excelitas corp, used in various techniques. Bioz Stars score: 97/100, based on 322 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pco%2Epanda+4%2E2/pco%2Epanda+4%2E2/custom%4085108074001%4010%2E1007%2Fs00348-026-04261-8
Average 97 stars, based on 322 article reviews
Pco.Panda 4.2, supplied by Excelitas corp, used in various techniques. Bioz Stars score: 97/100, based on 322 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pco%2Epanda+4%2E2/pco%2Epanda+4%2E2/custom%4085108074001%4010%2E1007%2Fs00348-026-04261-8
Average 97 stars, based on 322 article reviews
pco.panda 4.2 - by Bioz Stars,
2026-09
97/100 stars
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Related Articles
Injection:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Software:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Marker:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Imaging:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Inverted Microscopy:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Fluorescence:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Microscopy:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Immunostaining:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Hybridization:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Staining:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Clone Assay:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. In Situ:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Derivative Assay:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. Synthesized:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. cDNA Library Assay:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. In Situ Hybridization:Article Title: Corkscrew motion of Trypanosoma brucei is driven by helical beating of the flagellum and facilitated by its bent shape. Article Snippet: through, resulting in images clearly showing the marked position. The fuorescence channel with the emission flter ( ̃ = 510 nm ) provides the defocused images of the particle marker. |