![Detection of mitochondrial membrane potential by JC-1 staining after... | Download Scientific Diagram Detection of mitochondrial membrane potential by JC-1 staining after... | Download Scientific Diagram](https://www.researchgate.net/publication/273151477/figure/fig4/AS:267870139580422@1440876626045/Detection-of-mitochondrial-membrane-potential-by-JC-1-staining-after-doxorubicin.png)
Detection of mitochondrial membrane potential by JC-1 staining after... | Download Scientific Diagram
![JC-1 mitochondrial membrane potential assay of mouse oocytes treated... | Download Scientific Diagram JC-1 mitochondrial membrane potential assay of mouse oocytes treated... | Download Scientific Diagram](https://www.researchgate.net/publication/330819003/figure/fig2/AS:772498719260672@1561189455430/JC-1-mitochondrial-membrane-potential-assay-of-mouse-oocytes-treated-with-nsPEFs-and.png)
JC-1 mitochondrial membrane potential assay of mouse oocytes treated... | Download Scientific Diagram
![JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease](https://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fcddis.2012.171/MediaObjects/41419_2012_Article_BFcddis2012171_Fig1_HTML.jpg)
JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease
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JCI Insight - In vitro model of ischemic heart failure using human induced pluripotent stem cell–derived cardiomyocytes
![JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease](https://media.springernature.com/lw685/springer-static/image/art%3A10.1038%2Fcddis.2012.171/MediaObjects/41419_2012_Article_BFcddis2012171_Fig3_HTML.jpg)
JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease
![Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes. Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes.](http://www.cyto.purdue.edu/archive/flowcyt/research/cytotech/amfc/images/image6.gif)
Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes.
![Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes. Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes.](http://www.cyto.purdue.edu/archive/flowcyt/research/cytotech/amfc/images/image7.gif)
Figure 1. JC-1 staining of peripheral blood lymphocytes and monocytes. Note the different fluorescence intensity of the two cell types, due to the presence of a higher number of mitochondria in monocytes.
![JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease JC-1: alternative excitation wavelengths facilitate mitochondrial membrane potential cytometry | Cell Death & Disease](https://media.springernature.com/lw685/springer-static/image/art%3A10.1038%2Fcddis.2012.171/MediaObjects/41419_2012_Article_BFcddis2012171_Fig4_HTML.jpg)