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1.
Nat Commun ; 15(1): 927, 2024 Jan 31.
Article in English | MEDLINE | ID: mdl-38296954

ABSTRACT

The cerebellum, interconnected with the cerebral neocortex, plays a vital role in human-characteristic cognition such as language processing, however, knowledge about the underlying circuit computation of the cerebellum remains very limited. To gain a better understanding of the computation underlying cerebellar language processing, we developed a biologically constrained cerebellar artificial neural network (cANN) model, which implements the recently identified cerebello-cerebellar recurrent pathway. We found that while cANN acquires prediction of future words, another function of syntactic recognition emerges in the middle layer of the prediction circuit. The recurrent pathway of the cANN was essential for the two language functions, whereas cANN variants with further biological constraints preserved these functions. Considering the uniform structure of cerebellar circuitry across all functional domains, the single-circuit computation, which is the common basis of the two language functions, can be generalized to fundamental cerebellar functions of prediction and grammar-like rule extraction from sequences, that underpin a wide range of cerebellar motor and cognitive functions. This is a pioneering study to understand the circuit computation of human-characteristic cognition using biologically-constrained ANNs.


Subject(s)
Cerebellum , Language , Humans , Cognition , Linguistics , Neural Networks, Computer
2.
JPEN J Parenter Enteral Nutr ; 30(2): 124-32, 2006.
Article in English | MEDLINE | ID: mdl-16517957

ABSTRACT

BACKGROUND: Irinotecan hydrochloride (CPT-11), a topoisomerase I inhibitor highly effective for various cancers, has its dosage limited by diffuse mucosal damage with increased prostaglandin (PG) E(2). However, an analysis of intestinal phospholipid fatty acid composition after CPT-11 treatment has not been reported. This study aimed to evaluate intestinal phospholipid fatty acid composition in relation to intestinal mucosal integrity and plasma and mucosal PGE(2) levels after CPT-11 treatment. The effect of dietary vegetable oil supplementation, perilla oil vs corn oil, was also evaluated. METHODS: Intestinal phospholipid fatty acid composition, PGE(2) level, mucosal diamine oxidase (DAO) activity, diarrhea, and blood tests were evaluated in rats injected with CPT-11 under a conventional diet. The same parameters were compared among 3 different dietary vegetable oil supplementations: perilla oil, corn oil, and a 1:3, respectively, mixture with a semisynthetic diet during 14 days. RESULTS: CPT-11 treatment caused severe diarrhea, and intestinal mucosal fatty acid composition changed with increased PGE(2) level and decreased DAO activity. Decreases in eicosapentaenoic acid (EPA), docosahexaenoic acid (DHA), and EPA/arachidonic acid (AA) ratio in colonic mucosa were observed. Perilla oil increased omega-3 polyunsaturated fatty acids, alpha-linolenic acid, EPA, and EPA/AA ratio and decreased plasma PGE(2). But the amounts used were not enough to attenuate intestinal damage from CPT-11 treatment. CONCLUSIONS: CPT-11 induced changes of intestinal mucosal fatty acid composition with increased PGE(2) level and decreased intestinal integrity; perilla oil shows the possibility of being able to attenuate those changes.


Subject(s)
Amine Oxidase (Copper-Containing)/metabolism , Antineoplastic Agents, Phytogenic/administration & dosage , Camptothecin/analogs & derivatives , Dietary Fats, Unsaturated/administration & dosage , Intestinal Mucosa/chemistry , Phospholipids/analysis , Animals , Antineoplastic Agents, Phytogenic/adverse effects , Arachidonic Acid/analysis , Camptothecin/administration & dosage , Camptothecin/adverse effects , Corn Oil/administration & dosage , Diet , Dinoprostone/analysis , Dinoprostone/blood , Docosahexaenoic Acids/analysis , Eicosapentaenoic Acid/analysis , Fatty Acids/analysis , Fatty Acids, Omega-3/analysis , Intestinal Mucosa/enzymology , Irinotecan , Male , Plant Oils/administration & dosage , Rats , Rats, Sprague-Dawley , alpha-Linolenic Acid/administration & dosage , alpha-Linolenic Acid/analysis
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