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Close-up photo of mouse eye showing injected cells (green).
A recent study measured wave aberrations up to the 4th order Zernikes over a 1.5 mm pupil in the mouse eye, showing clearly more degraded Shack-Hartman spots than that of the typical human eye [ 13].
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Although Jnk1 −/−;Jnk2 −/− (Mapk8 −/−;mouse −/−) mouseyeseshowow retinal and lens abnormalities (Weston et al., 2003), organelle degradation in the mutated lens fibers remains to be analyzed.
IR photorefraction in the mouse eye typically show non-uniform intensity distributions with ring-shaped areas in the pupil [ 47].
The high spatial resolution in the mouse eye as shown in Fig. 11(b) provides the potential of achieving even higher resolution retinal images than can be obtained in the human eye.
Left eye showed normal appearance.
Photopic contrast sensitivities (Figure 5A, 5B) paralleled the photopic acuity results, with AAV-mGC1-treated eyes (contrast sensitivity of 11.90±7.37, n = 5 eyes) showing contrast thresholds identical to +/+ mice (11.94±3.03, n = 4 eyes).
Previously, in mouse eyes, it was shown that bimatoprost remains intact 14.
Positive immunostaining of TGs was shown in the mouse eye tissues (Figure 1A).
Figure 11(b) shows that the mouse eye has a better diffraction-limited MTF in cycles/mm than the human eye due to its larger NA.
This particular mouse eye exhibits lens opacities which can be visualized by summing en face pixels near the posterior lens surface, as shown in Fig. 4H.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com