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Anti-Actin, Muscle Specific antibody [ABT-MSA]

Catalog No : V0003
  • Applications
    IHC
  • Host Species
    Mouse
  • Reactivity
    Human
  • Size
    100ul
  • Price
    $275.00
Details
  • Product Name
    Anti-Actin, Muscle Specific antibody [ABT-MSA]
  • Catalog No
    V0003
  • Description
    Mouse monoclonal [ABT-MSA] antibody to MSA
  • Applications
    IHC
  • Clonality
    Monoclonal
  • Host Species
    Mouse
  • Reactivity
    Human
  • ABT Clone ID
    ABT-MSA
  • Antigen Retrieval
    Heat-induced epitope retrieval (HIER)
  • Cell Marque/Ventana Control
    Skeletal muscle
  • Concentration
    1mg/ml
  • Dilution
    1:50-200
  • Entrez Gene ID (NCBI)
    58/70/72
  • IHC Recommended control
    Colon, Appendix, Skeletal Muscle
  • IHC Target Name
    Actin, Muscle Specific
  • Immunogen
    Synthetic peptide
  • Localization
    Cytoplasmic
  • OMIM
    102610/102540/102545
  • Purification
    Immunogen affinity purified
  • Research
    Soft Tissue Sarcoma: Epitheloid sarcoma, alveolar soft part sarcoma, leiomyosarcoma, rhabdomyosarcoma
  • Retrieval buffer
    Citrate buffer of pH6.0
  • Source/Ig Isotype
    Mouse IgG
  • Storage/Stablility
    -20°C/1 year
  • Synonyms
    Alpha-actin-1/Alpha-cardiac actin/Alpha-actin-3, Gamma-2-actin, Smooth muscle gamma-actin
  • UniProt Gene Name
    ACTA1/ACTC1/ACTG2
  • UniProtKB
    P68032/P68133/P63267
  • Volume
    2ml
Application Images
Image 1 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Cardiac muscle using Actin, muscle antibody.
Image 2 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Cardiac muscle using Actin, muscle antibody.
Image 3 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Colon using Actin, muscle antibody.
Image 4 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Colon using Actin, muscle antibody.
Image 5 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Fibroid using Actin, muscle antibody.
Image 6 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Fibroid using Actin, muscle antibody.
Image 7 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Skeletal muscle using Actin, muscle antibody.
Image 8 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Skeletal muscle using Actin, muscle antibody.
Image 9 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Skeletal muscle using Actin, muscle antibody.
Image 10 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Skeletal muscle using Actin, muscle antibody.
Image 11 Immunohistochemistry analysis of Formalin-fixed, paraffin-embedded Human Skeletal muscle using Actin, muscle antibody.
  • Xiang, F., Neal, P.: Efficient MCMC for temporal epidemics via parameter reduction. Comput. Stat. Data Anal.
  • Xiang, F., Neal, P.: Efficient MCMC for temporal epidemics via parameter reduction. Comput. Stat. Data Anal.
  • Xiang, F., Neal, P.: Efficient MCMC for temporal epidemics via parameter reduction. Comput. Stat. Data Anal.
  • Xiang, F., Neal, P.: Efficient MCMC for temporal epidemics via parameter reduction. Comput. Stat. Data Anal.
  • Xiang, F., Neal, P.: Efficient MCMC for temporal epidemics via parameter reduction. Comput. Stat. Data Anal.
For the process of attaching edges to nodes, it is straightforward to compute the likelihood using (2). However, because of the nature of weighted sampling without replacement, we have to, for each i, calculate the probability conditi onal on each of the Xi!Xi! permutations of the selected nodes and then aver age over all Xi!Xi! probabilities to arrive at the likelihood. As calculating the exact likelihood in this way is not computationally feasible because the factorial grows faster than the exponential function, we approximate the likelihood based on one permutation of weighted sampling without replacement instead. The contribution by the new edges brought by node i is
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