<p><b>A, B, and C</b>, confocal micrographs of nodes of Ranvier showing newly-synthesized RNA detected by BrU incorporation (green) and myosin-Va detected by immunofluorescence (red); <b>D</b>, processed FRET (PFRET) image for the node shown in panel C. <b>E</b>, FRET efficiency (E%) image for the node shown in panels C and D. Scales below panels D and E show lookup tables. Bars = 5 µm.</p
<p>(A,D) Double-label immunofluorescence shows Syto labeling in cell bodies (nuclear) and co-localiz...
<p>A: phase image showing the structure of transected sciatic nerve, black arrows mark the proximal ...
<p>(A, B) Macroscopic detection of multiple branches of facial nerves under fluorescence stereomicro...
<p><b>A–D</b>, experimental procedure. <b>E–F</b>, single confocal planes of fibers at nodes of Ranv...
<p>Longitudinal 10-µm sections of transected sciatic nerves from null (d-l) <i>Myo5a</i> mutant mice...
<p><b>A</b>, low-magnification micrograph of transected end showing newly-synthesized RNA (green) an...
<p><b>A–E</b>, injured control nerves without α-amanitin (<b>A </b><b>and </b><b>C)</b>, and injured...
<p><b>A, C, E, G, I</b>, representative confocal images of BrU labeling at nodes of Ranvier. Bar = 1...
<p>(A): the scaffold was infiltrated by neuronal cells (β-TubIII<sup>+</sup>, green) and sprouting/r...
<p><b>A</b>, confocal plane including a BrU-labeled axon. The myelin is unlabeled. The external bord...
<p>(A–D) Normal sciatic nerves were cut into longitudinal (A) or cross (B–D) sections. Sections were...
To better understand the role of protein synthesis in axons, we have identified the source of a port...
<p>Wild type rat sciatic nerves were processed with whole mount immunofluorescence staining and tiss...
<p>A: phase image showing the structure of transected sciatic nerve, black arrows mark the proximal ...
<p>Cryosections of injured BrU-labeled (green) sciatic nerve fragments were stained for BrU <b>(A, D...
<p>(A,D) Double-label immunofluorescence shows Syto labeling in cell bodies (nuclear) and co-localiz...
<p>A: phase image showing the structure of transected sciatic nerve, black arrows mark the proximal ...
<p>(A, B) Macroscopic detection of multiple branches of facial nerves under fluorescence stereomicro...
<p><b>A–D</b>, experimental procedure. <b>E–F</b>, single confocal planes of fibers at nodes of Ranv...
<p>Longitudinal 10-µm sections of transected sciatic nerves from null (d-l) <i>Myo5a</i> mutant mice...
<p><b>A</b>, low-magnification micrograph of transected end showing newly-synthesized RNA (green) an...
<p><b>A–E</b>, injured control nerves without α-amanitin (<b>A </b><b>and </b><b>C)</b>, and injured...
<p><b>A, C, E, G, I</b>, representative confocal images of BrU labeling at nodes of Ranvier. Bar = 1...
<p>(A): the scaffold was infiltrated by neuronal cells (β-TubIII<sup>+</sup>, green) and sprouting/r...
<p><b>A</b>, confocal plane including a BrU-labeled axon. The myelin is unlabeled. The external bord...
<p>(A–D) Normal sciatic nerves were cut into longitudinal (A) or cross (B–D) sections. Sections were...
To better understand the role of protein synthesis in axons, we have identified the source of a port...
<p>Wild type rat sciatic nerves were processed with whole mount immunofluorescence staining and tiss...
<p>A: phase image showing the structure of transected sciatic nerve, black arrows mark the proximal ...
<p>Cryosections of injured BrU-labeled (green) sciatic nerve fragments were stained for BrU <b>(A, D...
<p>(A,D) Double-label immunofluorescence shows Syto labeling in cell bodies (nuclear) and co-localiz...
<p>A: phase image showing the structure of transected sciatic nerve, black arrows mark the proximal ...
<p>(A, B) Macroscopic detection of multiple branches of facial nerves under fluorescence stereomicro...