2009
DOI: 10.1523/jneurosci.4707-08.2009
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Uniquely Hominid Features of Adult Human Astrocytes

Abstract: Defining the microanatomic differences between the human brain and that of other mammals is key to understanding its unique computational power. Although much effort has been devoted to comparative studies of neurons, astrocytes have received far less attention. We report here that protoplasmic astrocytes in human neocortex are 2.6-fold larger in diameter and extend 10-fold more GFAP (glial fibrillary acidic protein)-positive primary processes than their rodent counterparts. In cortical slices prepared from ac… Show more

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Cited by 1,194 publications
(1,375 citation statements)
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References 31 publications
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“…17 Second, the morphology had also changed; the human protoplasmic and fibrous astrocytes are 2 to 3 times larger as compared to rodents. 18,19 Even more importantly, the human astrocytes are immensely more complex 18 ; each human astrocytes has ϳ10 times more primary processes than the rodent one; the arborization is also infinitely more complex and human protoplasmic astrocyte covers and integrates ϳ2 million synapses, whereas rodent astrocytes cover ϳ20,000 to 120,000 synaptic contacts. In addition, several primate specific astrocytes (e.g.…”
Section: Glial Explosion Forms the Human Brainmentioning
confidence: 99%
“…17 Second, the morphology had also changed; the human protoplasmic and fibrous astrocytes are 2 to 3 times larger as compared to rodents. 18,19 Even more importantly, the human astrocytes are immensely more complex 18 ; each human astrocytes has ϳ10 times more primary processes than the rodent one; the arborization is also infinitely more complex and human protoplasmic astrocyte covers and integrates ϳ2 million synapses, whereas rodent astrocytes cover ϳ20,000 to 120,000 synaptic contacts. In addition, several primate specific astrocytes (e.g.…”
Section: Glial Explosion Forms the Human Brainmentioning
confidence: 99%
“…In the white matter, fibrous astrocytes are significantly larger than protoplasmic astrocytes, with equally spaced cell bodies and unbranched straight processes orientated in the direction of axon bundles (Oberheim et al, 2009). Recently, other morphological types of astrocytes, such as interlaminate and varicous, have been described in gray matter, in both human and primate brains.…”
Section: White and Gray Matter: Residence To Different Types Of Astromentioning
confidence: 99%
“…Through their perisynaptic processes, astrocytes maintain ion homeostasis, clear neurotransmitters 2 and partake in neuromodulatory signaling to control circuit activity and behavior 3 . These complex functions of astrocytes are reflected in their elaborate structure 4,5 , which is driven by numerous fine processes that closely interact with synapses. Importantly, loss of astrocyte complexity is a common pathological feature observed in neurological disorders 6 .…”
mentioning
confidence: 99%