Search PubMed⌕ Search

PubMed · 16093620

Brain chip: a hypothesis.

Abstract

This article is the English version of the Brain Chip hypothesis previously presented in the books "Brain Equation One Plus One (Kinokuniya, 2001)" and "Plus Alpha (Kinokuniya, 2002)." The concept in this article has been translated into English by the author himself in response to an overwhelming number of requests from colleagues outside Japan.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Tsutomu Nakada. 2004-07-15. Brain chip: a hypothesis.. https://doi.org/10.2463/mrms.3.51

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Polymicrogyria and deletion 22q11.2 syndrome: window to the etiology of a common cortical malformation.

Several brain malformations have been described in rare patients with the deletion 22q11.2 syndrome (DEL22q11) including agenesis of the corpus callosum, pachygyria or polymicrogyria (PMG), cerebellar anomalies and meningomyelocele, with PMG reported most frequently. In view of our interest in the causes of PMG, we reviewed clinical data including brain-imaging studies on 21 patients with PMG associated with deletion 22q11.2 and another 11 from the literature. We found that the cortical malformation consists of perisylvian PMG of variable severity and frequent asymmetry with a striking predisposition for the right hemisphere (P = 0.008). This and other observations suggest that the PMG may be a sequela of abnormal embryonic vascular development rather than a primary brain malformation. We also noted mild cerebellar hypoplasia or mega-cisterna magna in 8 of 24 patients. Although this was not the focus of the present study, mild cerebellar anomalies are probably the most common brain malformation associated with DEL22q11.

Cerebellum↗

Polymicrogyria, cerebellar vermis hypoplasia, severe facial dysmorphism and cleft palate: a new syndrome?

Here we describe the clinical, histopathological and molecular studies of a female proband that died at 2 months of age in the context of a syndromic polymicrogyria. There was no significant family history. Clinical and radiological features included poor contact, cleft palate, facial dysmorphic features with frontal bossing, down-slanting and small palpebral fissures, inferior epicanthic folds, low-set and malformed ears, flat nose, retrognathism and short neck, minor limb anomalies, polymicrogyria that appear more severe in the perisylvian regions and cerebellar vermis hypoplasia. Autopsy findings revealed a patent foramen ovale with persistent left superior vena cava, left renal hypoplasia and microphthalmia. This description does not fit with any of the known syndromes with polymicrogyria and cytogenetic analyses including standard and high resolution chromosome analyses, telomeric FISH studies and array-CGH were normal. Consequently, the reported features in this child are unique and are likely to represent a new syndrome.

Cerebellum↗

Ontogeny of PACAP receptors in the human cerebellum: perspectives of therapeutic applications.

It is now well established that pituitary adenylate cyclase-activating polypeptide (PACAP) exerts anti-apoptotic and pro-differentiating actions during development of the rodent cerebellum. Cell signaling involved in the neurotrophic effects of PACAP has been precisely investigated. In particular, PACAP is a potent inhibitor of the mitochondrial apoptotic pathway through an ERK- and PKA-dependent mechanism. However, transposition of the neurodevelopmental activities of PACAP to the human cerebellum remains speculative, essentially because of the lack of data concerning the PACAP-ergic system. The present review is based on recent results that provide the first molecular, pharmacological and anatomical characterizations of PACAP receptors in the developing human cerebellum. It is now clearly established that the distribution pattern of PAC1-R and VPAC1-R mRNA in the human cerebellum is very similar to that already described in rodents. [(125)I]PACAP27 binding sites are closely associated with germinative neuroepithelia in fetal stages and with mature granule cells in infants and adults. Pharmacological characterization revealed that, in fetuses, PACAP binding sites exhibit a PAC1-R profile while, in adult patients, they correspond to a heterogeneous population of PAC1-R and VPAC(1/2)-R. Altogether, these data provide the first evidence that PACAP may exert neurodevelopmental functions in the human cerebellum.

Cerebellum↗