palmtracer software package for (MetaMorph Inc)
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Palmtracer Software Package For, supplied by MetaMorph Inc, 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/palmtracer+software/palm+tracer+software/bio_rxiv__2024__12__23__630200-421-7-13
Average 90 stars, based on 1 article reviews
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Software:Article Title: Protocol for matching protein localization to synapse morphology in primary rat neurons by correlative super-resolution microscopy. Article Snippet: Cloâtre et al., STAR Protocols 5, 103160 September 20, 2024 a 2024 Super-resolution imaging provides unprecedented visualization of sub-cellular structures, but the two main techniques used, single-molecule localization microscopy (SMLM) and stimulated emission depletion (STED), are not easily reconciled.. We present a protocol to super-impose nanoscale protein distribution reconstructed with SMLM to sub-cellular morphology obtained in STED.. We describe steps for tracking cells on etched coverslips and registering images from two different microscopes with 30-nm accuracy. Article Title: Protocol for matching protein localization to synapse morphology in primary rat neurons by correlative super-resolution microscopy Article Snippet: .. The image stacks obtained in PALM were analyzed using the Article Title: Nanoscale and functional heterogeneity of the hippocampal extracellular space. Article Snippet: .. Acquired nanoparticles trajectories were finally reconstructed with |
Figure 3 F showing the reconstructed PALM images of the Xph20-mEos3.2 signal before (red) and after (magenta) transformation. (D) Superimposition of the STED image of GFP-actin amplified with Atto647N conjugated antibody, Ab-Atto647N (white), with the transformed PALM image of PSD-95 labeled with the Xph20-mEos3.2 intrabody (magenta). (E) Image of a neuron expressing GFP-actin amplified with Atto647N and imaged with STED. (F) Correlative image between mEos3.2-actin (PALM) and GFP-actin signals (STED) of the dendritic segment delineated in (E). (G) Representative images of individual dendritic spines containing 0, 1, 2, or 3 PSD-95 nanodomains (appearing in white). The spine contour is delineated in red and the corresponding projected area is indicated. (H) Histogram showing the proportion of spines having 0, 1, 2, 3, or 4 nanodomains. Data are represented as mean ± SEM and dots represent individual neurons ( n = 7). (I) Bar graph showing the positive correlation between the number of PSD-95 nanodomains per spine, and the projected area of the whole spine. Data are represented as mean ± SEM and dots represent individual spines ( n = 105 spines from 7 neurons). " width="250" height="auto" />