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Kim, H. Q.

Publications and source records attributed to Kim, H. Q..

2 recordsLinked to original sources

Maturation and Refinement of the Maculae and Foveae in the Anolis sagrei lizard

In primates, the fovea is a pit in the center of the macula, which is a region of the retina with a high concentration of cone photoreceptor cells that accounts for a large degree of visual acuity in primates. The maturation of this primate visual acuity area is characterized by the shallowing and widening of the foveal pit, a decrease in the diameter of the rod-free zone, and packing of photoreceptor cells more densely into this area of the retina, which occurs sometime after birth. Maturation occurs concurrently with progressing age and development, which further correlates with increasing eye size, retinal length, and retinal area. These observations have led to the hypothesis that the maturation of the fovea might be a function of mechanical variables that remodel the retina. However, this has never been explored outside of primates. Here, we take advantage of the Anolis sagrei lizard, which has a bifoveated retina, to study maturation of the fovea and macula. Eyes were collected from male and female lizards from five different age groups - hatchling, 2-month, 4-month, 6-month, and adult. We found that Anolis maculae undergo a maturation process somewhat different than what has been observed in primates. Anole macular diameters actually increase in size and undergo minimal photoreceptor cell packing, possessing a near complete complement of these cells at the time of hatching. As the anole eye expands, foveal centers experience little change in overall retina cell density with most cell redistribution occurring at the macular borders and peripheral retina areas. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/529081v1_ufig1.gif" ALT="Figure 1"> View larger version (73K): org.highwire.dtl.DTLVardef@effd8dorg.highwire.dtl.DTLVardef@1ef65b3org.highwire.dtl.DTLVardef@1fde14dorg.highwire.dtl.DTLVardef@d2c0b2_HPS_FORMAT_FIGEXP M_FIG C_FIG Highlights- Foveal and retinal refinement occurs post-hatching into adulthood in anoles. - The temporal pit shallows and widens, whereas central pit morphology remains relatively constant with age. - Retina cell number within a section decreases as the eye grows larger with age. - Anole macular diameter increases from hatching to adult but does not increase proportionately to overall eye growth.

developmental biology↗

Development and retinal remodeling in the brown anole lizard (Anolis sagrei)

BackgroundThe fovea, a pit in the retina, is believed to be important for high-acuity vision and is a feature found in the eyes of humans and a limited number of vertebrate species that include certain primates, birds, lizards, and fish. At present, model systems currently used for ocular research lack a foveated retina and studies investigating fovea development have largely been limited to histological and molecular studies in primates. As a result, progress towards understanding the mechanisms involved in regulating fovea development in humans is limited and is completely lacking in other, non-primate, vertebrates. To address this knowledge gap, we provide here a detailed histological atlas of retina and fovea development in the bifoveated Anolis sagrei lizard, a novel reptile model for fovea research. We also further test the hypothesis that retinal remodeling, which leads to fovea formation and photoreceptor cell packing, is related to asymmetric changes in eye shape. ResultsAnole retina development follows the conventional spatiotemporal patterning observed in most vertebrates, where retina neurogenesis begins within the central retina, progresses throughout the temporal retina, and concludes in the nasal retina. One exception to this general rule is that areas that give rise to the fovea undergo retina differentiation prior to the rest of the retina. We find that retina thickness changes dynamically during periods of ocular elongation and retraction. During periods of ocular elongation, the retina thins, while during retraction it becomes thicker. Ganglion cell layer mounding is also observed in the temporal fovea region just prior to pit formation. ConclusionsAnole retina development parallels that of humans, including the onset and progression of retinal neurogenesis followed by changes in ocular shape and retinal remodeling that leads to pit formation in the retina. We propose that anoles are an excellent model system for fovea development research. Key FindingsO_LIRetina mounding that occurs in foveal areas prior to retinal differentiation progressively disappear as foveal regions of the eye elongate. C_LIO_LIThe central and temporal foveal areas undergo retina differentiation before the rest of the retina. C_LIO_LIGCL mounding prior to pit formation occurs in the area of the temporal fovea but not the central fovea. C_LIO_LIWhen the eye is experiencing ocular retraction, photoreceptor cell packing, and pit formation are observed within foveal regions. C_LI

developmental biology↗