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Figure S1A. Recursive tree and relative importance metrics for determining glia-neuron ratio in CA1-3 in carnivores.

Figure S1B. Recursive tree and relative importance metrics for determining neuronal density in V1 in carnivores.

Figure S1C. Recursive tree and relative importance metrics for determining neuronal density in CA1-3 in carnivores.

Figure S1D. Recursive tree and relative importance metrics for determining glial cell density in V1 in carnivores.

Figure S1E. Recursive tree and relative importance metrics for determining glial cell density in CA1-3 in carnivores.

Figure S1F. Recursive tree and relative importance metrics for determining glia-neuron ratio in V1 in primates.

Figure S1G. Recursive tree and relative importance metrics for determining glia-neuron ratio in CA1-3 in primates.

Figure S1H. Recursive tree and relative importance metrics for determining neuronal density in V1 in primates.

Figure S1I. Recursive tree and relative importance metrics for determining neuronal density in CA1-3 in primates.

Figure S1J. Recursive tree and relative importance metrics for determining glial cell density in V1 in primates.

Figure S1K. Recursive tree and relative importance metrics for determining glial cell density in CA1-3 in primates.

Figure S1L. (Top) The hippocampal formation (HF) is located in the allocortex and consists of the cornu ammonis (CA) and the dentate gyrus (DG).

Figure S1M. The Nissl-stained cerebellum at 1× magnification (a, Potos flavus), 4× (b, Mus musculus), 10× (c, Macaca mulatta), and 40× (d, M. musculus) magnification.

Table S1. List of species by taxonomic classification*.

Table S2. Stereologic estimates of cellular densities (cells per mm3) and volumetric estimates (mm3) in nonprimate mammals.

Table S3. Stereologic estimates of cellular densities (cells per mm3) and volumetric estimates (mm3) in nonprimate mammals.

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EVO_1601_sm_suppmatS3.pdf263KSupporting info item
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