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fluorescence slide scanner axio scan z1  (Carl Zeiss)


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    Structured Review

    Carl Zeiss fluorescence slide scanner axio scan z1
    Examples for the expression of serotypes rAAV2/1 and rAAV2/5 in nucleus magnocellularis . A–D: Expression of GFP, indicating rAAV2/1, in NM cell bodies and fibers, three weeks after injection (case #13 in <xref ref-type=Table 1 ). E–H: Expression of tdTomato, indicating rAAV2/5, in NM cell bodies and fibers, also three weeks after injection (case #14 in Table 1 ). Two examples of labeled cell bodies are highlighted by white arrowheads. Note that in each row (A–C and E–G), the first three panels illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged images. Scale bars 50 ​μm. For further information about injection site, volume and expression time, see Table 1 . " width="250" height="auto" />
    Fluorescence Slide Scanner Axio Scan Z1, supplied by Carl Zeiss, 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/efficient+navigation+zen+interface+software/axio+microscope+observer+z1+%CE%B2/pmc09559881-98-26-32
    Average 90 stars, based on 1 article reviews
    fluorescence slide scanner axio scan z1 - by Bioz Stars, 2026-10
    90/100 stars

    Images

    1) Product Images from "Gene delivery to neurons in the auditory brainstem of barn owls using standard recombinant adeno-associated virus vectors"

    Article Title: Gene delivery to neurons in the auditory brainstem of barn owls using standard recombinant adeno-associated virus vectors

    Journal: Current Research in Neurobiology

    doi: 10.1016/j.crneur.2020.100001

    Examples for the expression of serotypes rAAV2/1 and rAAV2/5 in nucleus magnocellularis . A–D: Expression of GFP, indicating rAAV2/1, in NM cell bodies and fibers, three weeks after injection (case #13 in <xref ref-type=Table 1 ). E–H: Expression of tdTomato, indicating rAAV2/5, in NM cell bodies and fibers, also three weeks after injection (case #14 in Table 1 ). Two examples of labeled cell bodies are highlighted by white arrowheads. Note that in each row (A–C and E–G), the first three panels illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged images. Scale bars 50 ​μm. For further information about injection site, volume and expression time, see Table 1 . " title="... illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged ..." property="contentUrl" width="100%" height="100%"/>
    Figure Legend Snippet: Examples for the expression of serotypes rAAV2/1 and rAAV2/5 in nucleus magnocellularis . A–D: Expression of GFP, indicating rAAV2/1, in NM cell bodies and fibers, three weeks after injection (case #13 in Table 1 ). E–H: Expression of tdTomato, indicating rAAV2/5, in NM cell bodies and fibers, also three weeks after injection (case #14 in Table 1 ). Two examples of labeled cell bodies are highlighted by white arrowheads. Note that in each row (A–C and E–G), the first three panels illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged images. Scale bars 50 ​μm. For further information about injection site, volume and expression time, see Table 1 .

    Techniques Used: Expressing, Injection, Labeling, Fluorescence

    Examples for the expression of serotypes rAAV2/1 and rAAV2/5 in nucleus laminaris . A–D: Expression of GFP, indicating rAAV2/1, in NM projection fibers ramifying within NL, three weeks after injection (case #13 in <xref ref-type=Table 1 ). E–H: Expression of tdTomato, indicating rAAV2/5, expressed in NM projection fibers ramifying and terminating within NL, also three weeks after injection (case #14 in Table 1 ). One example each of a labeled fiber (B) and terminals surrounding a (non-fluorescent) cell body (G) are highlighted by gray arrowheads, and also shown in higher-magnification insets. As in Fig. 2 , labeled fibers mostly appear as short fragments because their course was oblique to the sectioning plane. Note also that in each row (A–C and E–G), the first three panels illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged images. Scale bars 50 ​μm. For detailed information about injection site, volume and expression time, see Table 1 . " title="... illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged ..." property="contentUrl" width="100%" height="100%"/>
    Figure Legend Snippet: Examples for the expression of serotypes rAAV2/1 and rAAV2/5 in nucleus laminaris . A–D: Expression of GFP, indicating rAAV2/1, in NM projection fibers ramifying within NL, three weeks after injection (case #13 in Table 1 ). E–H: Expression of tdTomato, indicating rAAV2/5, expressed in NM projection fibers ramifying and terminating within NL, also three weeks after injection (case #14 in Table 1 ). One example each of a labeled fiber (B) and terminals surrounding a (non-fluorescent) cell body (G) are highlighted by gray arrowheads, and also shown in higher-magnification insets. As in Fig. 2 , labeled fibers mostly appear as short fragments because their course was oblique to the sectioning plane. Note also that in each row (A–C and E–G), the first three panels illustrate identical image frames but separately for 3 fluorescence channels; D and H show the corresponding merged images. Scale bars 50 ​μm. For detailed information about injection site, volume and expression time, see Table 1 .

    Techniques Used: Expressing, Injection, Labeling, Fluorescence

    Related Articles

    Staining:

    Article Title: Radiation cross-linked collagen scaffolds facilitate root coverage and keratinized gingival regeneration
    Article Snippet: .. The stained sections were observed and analyzed under a Zeiss Axioscan 7 microscope slide scanning system to understand tissue morphology and pathology. ..

    Article Title: The preparation and antimicrobial activity of lauric arginate/hydroxypropyl-β-cyclodextrin stabilized essential oil nanoemulsion
    Article Snippet: To improve the antimicrobial performance of cinnamon essential oil, lauric arginate was selected as a surfactant and a synergistic antimicrobial agent, and hydroxypropyl-β-cyclodextrin was used to further enhance the stability and antimicrobial activity of lauric arginate-stabilized cinnamon essential oil emulsions.. The results showed that hydroxypropyl-β-cyclodextrin reduced droplet size and increased storage stability of the cinnamon essential oil emulsions stabilized by lauric arginate.. The emulsification and inclusion effect of hydroxypropyl-β-cyclodextrin increased the degree of dispersion of cinnamon essential oil and lauric arginate, and protected lauric arginate and cinnamon essential oil from environmental conditions.

    Microscopy:

    Article Title: Radiation cross-linked collagen scaffolds facilitate root coverage and keratinized gingival regeneration
    Article Snippet: .. The stained sections were observed and analyzed under a Zeiss Axioscan 7 microscope slide scanning system to understand tissue morphology and pathology. ..

    Article Title: Adiponectin-receptor agonism prevents right ventricular tissue pathology in a mouse model of Duchenne muscular dystrophy
    Article Snippet: Sections were mounted using an aqueous Fluoroshield DAPI mounting medium (Abcam) with edges sealed using clear nail polish. .. Slide microscopy was conducted using a fluorescence slide scanner (Zeiss AxioScan) at 20x magnification. ..

    Article Title: The preparation and antimicrobial activity of lauric arginate/hydroxypropyl-β-cyclodextrin stabilized essential oil nanoemulsion
    Article Snippet: To improve the antimicrobial performance of cinnamon essential oil, lauric arginate was selected as a surfactant and a synergistic antimicrobial agent, and hydroxypropyl-β-cyclodextrin was used to further enhance the stability and antimicrobial activity of lauric arginate-stabilized cinnamon essential oil emulsions.. The results showed that hydroxypropyl-β-cyclodextrin reduced droplet size and increased storage stability of the cinnamon essential oil emulsions stabilized by lauric arginate.. The emulsification and inclusion effect of hydroxypropyl-β-cyclodextrin increased the degree of dispersion of cinnamon essential oil and lauric arginate, and protected lauric arginate and cinnamon essential oil from environmental conditions.

    Fluorescence:

    Article Title: Adiponectin-receptor agonism prevents right ventricular tissue pathology in a mouse model of Duchenne muscular dystrophy
    Article Snippet: Sections were mounted using an aqueous Fluoroshield DAPI mounting medium (Abcam) with edges sealed using clear nail polish. .. Slide microscopy was conducted using a fluorescence slide scanner (Zeiss AxioScan) at 20x magnification. ..

    Article Title: The preparation and antimicrobial activity of lauric arginate/hydroxypropyl-β-cyclodextrin stabilized essential oil nanoemulsion
    Article Snippet: To improve the antimicrobial performance of cinnamon essential oil, lauric arginate was selected as a surfactant and a synergistic antimicrobial agent, and hydroxypropyl-β-cyclodextrin was used to further enhance the stability and antimicrobial activity of lauric arginate-stabilized cinnamon essential oil emulsions.. The results showed that hydroxypropyl-β-cyclodextrin reduced droplet size and increased storage stability of the cinnamon essential oil emulsions stabilized by lauric arginate.. The emulsification and inclusion effect of hydroxypropyl-β-cyclodextrin increased the degree of dispersion of cinnamon essential oil and lauric arginate, and protected lauric arginate and cinnamon essential oil from environmental conditions.

    other:

    Article Title: Scale-down optimization of a robust, parallelizable human induced pluripotent stem cell bioprocess for high-throughput research
    Article Snippet: Tissue sections were imaged with the Zeiss AxioScan.Z1 slide scanner.

    Article Title: Sustained oxygen-releasing hydrogel implants enhance flap regeneration by promoting mitochondrial biogenesis under mild hypoxia
    Article Snippet: The stained sections were examined using a Zeiss Axio Scan.Z1 Digital Slide scanner (Carl Zeiss Microscopy, Baden-Württemberg, Germany) at 200 × magnification.

    Article Title: Spatial transcriptomics combined with single-nucleus RNA sequencing reveals glial cell heterogeneity in the human spinal cord
    Article Snippet: Images were captured using a Zeiss AxioImager Z.2 microscope (Guangzhou, China) and processed with ImageJ software (version 2.1.0.; National Institutes of Health, Bethesda, MD, USA; Schneider et al., 2012).

    Article Title: Cardiac fibrosis inhibitor CTPR390 prevents structural and morphological changes in human engineered cardiac connective tissue
    Article Snippet: Polarized light images were acquired using a Zeiss Cell Axio Observer microscope.

    Article Title: Oxidative stress activates YAP/TEAD1/NCOA4 axis to promote ferroptosis of endplate chondrocytes and aggravate intervertebral disc degeneration
    Article Snippet: Following a 20-min incubation period, the sample should be observed under a fluorescence microscope (Axio Observer A1; Carl Zeiss, Germany) in a dark room with a serum-free culture medium.

    Emulsion:

    Article Title: The preparation and antimicrobial activity of lauric arginate/hydroxypropyl-β-cyclodextrin stabilized essential oil nanoemulsion
    Article Snippet: To improve the antimicrobial performance of cinnamon essential oil, lauric arginate was selected as a surfactant and a synergistic antimicrobial agent, and hydroxypropyl-β-cyclodextrin was used to further enhance the stability and antimicrobial activity of lauric arginate-stabilized cinnamon essential oil emulsions.. The results showed that hydroxypropyl-β-cyclodextrin reduced droplet size and increased storage stability of the cinnamon essential oil emulsions stabilized by lauric arginate.. The emulsification and inclusion effect of hydroxypropyl-β-cyclodextrin increased the degree of dispersion of cinnamon essential oil and lauric arginate, and protected lauric arginate and cinnamon essential oil from environmental conditions.



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