1990Medical Entomology and ZoologyRequires access

In Situ Hybridization Histochemistry

Marie‐Françoise Chesselet

Open publisher page 41 citations

Abstract

Probes for In Situ Hybridization Histochemistry (M.E. Lewis and F. Baldino, Jr.). Detection of Messenger RNAs by In Situ Hybridization with Nonradioactive Probes (B. Bloch). In Situ Hybridization in Cells and Tissue Sections: A Study of Myelin Gene Expression during CNS Myelination and Remyelination (C.A. Jordan). The Use of In Situ Hybridization Histochemistry to Study Gene Expression in Mouse Neurological Mutants (G.D. Frantz and A.J. Tobin). In Situ Hybridization as a Means of Studying the Role of Growth Factors, Oncogenes, and Proto-Oncogenes in the Nervous System (M. Murray). The Use of In Situ Transcription in the Study of Gene Expression (J. Eberwine, I. Zangger, R. Van Gelder, C. Evans, and L. Tecott). In Situ Hybridization Histochemistry at the Electron Microscopic Level (J.-J. Soghomonian). Quantitative Analysis of In Situ Hybridization Using Image Analysis (A.J. Smolen and P. Beaston-Wimmer). Appendix. Index.

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What this paper is about

Probes for In Situ Hybridization Histochemistry (M.E. Lewis and F. Baldino, Jr.). Detection of Messenger RNAs by In Situ Hybridization with Nonradioactive Probes (B. Bloch). In Situ Hybridization in Cells and Tissue Sections: A Study of Myelin Gene Expression during CNS Myelination and Remyelination (C.A. Jordan). The Use of In Situ Hybridization Histochemistry to Study Gene Expression in Mouse Neurological Mutants (G.D. Frantz and A.J. Tobin). In Situ Hybridization as a Means of Studying the Role of Growth Factors, Oncogenes, and Proto-Oncogenes in the Nervous System (M. Murray). The Use of In Situ Transcription in the Study of Gene Expression (J. Eberwine, I. Zangger, R. Van Gelder, C. Evans, and L. Tecott). In Situ Hybridization Histochemistry at the Electron Microscopic Level (J.-J. Soghomonian). Quantitative Analysis of In Situ Hybridization Using Image Analysis (A.J. Smolen and P. Beaston-Wimmer). Appendix. Index.

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Available abstract

Probes for In Situ Hybridization Histochemistry (M.E. Lewis and F. Baldino, Jr.). Detection of Messenger RNAs by In Situ Hybridization with Nonradioactive Probes (B. Bloch). In Situ Hybridization in Cells and Tissue Sections: A Study of Myelin Gene Expression during CNS Myelination and Remyelination (C.A. Jordan). The Use of In Situ Hybridization Histochemistry to Study Gene Expression in Mouse Neurological Mutants (G.D. Frantz and A.J. Tobin). In Situ Hybridization as a Means of Studying the Role of Growth Factors, Oncogenes, and Proto-Oncogenes in the Nervous System (M. Murray). The Use of In Situ Transcription in the Study of Gene Expression (J. Eberwine, I. Zangger, R. Van Gelder, C. Evans, and L. Tecott). In Situ Hybridization Histochemistry at the Electron Microscopic Level (J.-J. Soghomonian). Quantitative Analysis of In Situ Hybridization Using Image Analysis (A.J. Smolen and P. Beaston-Wimmer). Appendix. Index.

Key concepts: In situ hybridization, Biology, Molecular biology, In situ, Immunohistochemistry, Gene expression, Remyelination, Myelin

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