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ndltd-NEU--neu-18552021-05-25T05:10:19ZAsymmetries in the s-cone increment and decrement pathways as revealed by pedestal maskingThe short wavelength sensitive or S-cones are known to be both physiologically and psychophysically different than both the long and middle wavelength sensitive or Land M-cones. The L- and M-cones are genetically/evolutionarily similar to one another and both quite unique from the S-cones. The S-cones are also not found in the central retina where the L- and M-cones are most densely packed. This thesis uses a classic pedestal experiment to explore yet another unique feature of the S-cone visual pathways.http://hdl.handle.net/2047/d20000143
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NDLTD
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NDLTD
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The short wavelength sensitive or S-cones are known to be both physiologically and psychophysically different than both the long and middle wavelength sensitive or Land M-cones. The L- and M-cones are genetically/evolutionarily similar to one another and both quite unique from the S-cones. The S-cones are also not found in the central retina where the L- and M-cones are most densely packed. This thesis uses a classic pedestal experiment to explore yet another unique feature
of the S-cone visual pathways.
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title |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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spellingShingle |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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title_short |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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title_full |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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title_fullStr |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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title_full_unstemmed |
Asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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title_sort |
asymmetries in the s-cone increment and decrement pathways as revealed by pedestal masking
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http://hdl.handle.net/2047/d20000143
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1719406104394334208
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