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Goro Kikuchi

Goro Kikuchi

D-Index & Metrics

Chemistry

D-Index
51
Citations
7213
World Ranking
14179
National Ranking
1099

Overview

Goro Kikuchi is affiliated with Tohoku University in Japan and contributes to research primarily within the fields of Materials Science and Physics and Astronomy. Their work has also focused on subfields such as Materials Chemistry and Nuclear and High Energy Physics.

Within their research scope, Kikuchi has engaged extensively with topics concerning fusion materials and technologies, nuclear materials and properties, as well as magnetic confinement fusion research. These areas underline a focus on understanding and developing materials that are critical for nuclear fusion applications and related technologies.

Kikuchi's recent publication record includes the paper titled "Overview of tritium retention in divertor tiles and dust particles from the JET tokamak with the ITER-like wall," published in 2023 in the journal Nuclear Fusion. This paper has gained recognition with a number of citations, indicating its contribution to the ongoing dialogue in nuclear fusion research.

The venues in which Kikuchi publishes reflect their focus area, with Nuclear Fusion being a notable platform for disseminating their work.

Collaborative efforts form part of Kikuchi's research output, with frequent co-authors including Y. Torikai, A. Owada, S. Masuzaki, Teppei Otsuka, and N. Ashikawa. These collaborations emphasize a networked approach to research within their specialized fields.

  • Frequent co-authors: Y. Torikai, A. Owada, S. Masuzaki, Teppei Otsuka, N. Ashikawa
  • Frequent publication venues: Nuclear Fusion
  • Main fields of study: Materials Science, Physics and Astronomy
  • Subfields of study: Materials Chemistry, Nuclear and High Energy Physics
  • Main topics: Fusion materials and technologies, Nuclear Materials and Properties, Magnetic confinement fusion research
  • Recent papers: Overview of tritium retention in divertor tiles and dust particles from the JET tokamak with the ITER-like wall (2023), Nuclear Fusion

Best Publications

  • Heme oxygenase and heme degradation.

    Goro Kikuchi;Tadashi Yoshida;Masato Noguchi

  • The glycine cleavage system: composition, reaction mechanism, and physiological significance.

    Goro Kikuchi

  • Glycine cleavage system: reaction mechanism, physiological significance, and hyperglycinemia

    Goro Kikuchi;Yutaro Motokawa;Tadashi Yoshida;Koichi Hiraga

  • Oxygenated form of heme . heme oxygenase complex and requirement for second electron to initiate heme degradation from the oxygenated complex

    T Yoshida;M Noguchi;G Kikuchi

  • The mitochondrial glycine cleavage system. Unique features of the glycine decarboxylation.

    G. Kikuchi;K. Hiraga

  • Features of the reaction of heme degradation catalyzed by the reconstituted microsomal heme oxygenase system.

    Unknown

  • Function and induction of the microsomal heme oxygenase

    Goro Kikuchi;Tadashi Yoshida

  • Mechanism of allylisopropylacetamide-induced increase of δ-aminolevulinate synthetase in liver mitochondria: IV. Accumulation of the enzyme in the soluble fraction of rat liver

    Norio Hayashi;Binkoh Yoda;Goro Kikuchi

  • Glycine metabolism in rat liver mitochondria. V. Intramitochondrial localization of the reversible glycine cleavage system and serine hydroxymethyltransferase.

    Yutaro Motokawa;Goro Kikuchi

  • Induction of heme oxygenase by hemin in cultured pig alveolar macrophages.

    Shigeki Shibahara;Tadashi Yoshida;Goro Kikuchi

  • Partial purification and reconstitution of the heme oxygenase system from pig spleen microsomes.

    Tadashi Yoshida;Sakiko Takahashi;Goro Kikuchi

  • Glycine metabolism by rat liver mitochondria. Reconstruction of the reversible glycine cleavage system with partially purified protein components.

    Yutaro Motokawa;Goro Kikuchi

  • Mechanism of allylisopropylacetamide-induced increase of -aminolevulinate synthetase in liver mitochondria. V. Mechanism of regulation by hemin of the level of -aminolevulinate synthetase in rat liver mitochondria.

    Norio Hayashi;Yasuo Kurashima;Goro Kikuchi

  • Hyperglycinemia: A Defect in Glycine Cleavage Reaction

    Keiya Tada;Kuniaki Narisawa;Toshio Yoshida;Tasuke Konno

  • Comparative Study on Major Pathways of Glycine and Serine Catabolism in Vertebrate Livers

    Tadashi Yoshida;Goro Kikuchi

  • Major Pathways of Serine and Glycine Catabolism in Various Organs of the Rat and Cock

    Tadashi Yoshida;Goro Kikuchi

  • The step of carbon monoxide liberation in the sequence of heme degradation catalyzed by the reconstituted microsomal heme oxygenase system.

    T Yoshida;M Noguchi;G Kikuchi

  • Purification and properties of biliverdin reductases from pig spleen and rat liver

    Masato Noguchi;Tadashi Yoshida;Goro Kikuchi

  • Evidence for the transcriptional inhibition by heme of the synthesis of δ-aminolevulinate synthase in rat liver

    Masayuki Yamamoto;Norio Hayashi;Goro Kikuchi

  • Major pathways of glycine and serine catabolism in rat liver

    Tadashi Yoshida;Goro Kikuchi

  • Studies on Relationships between Structure and Function of Hemoglobin Miwate

    Norio Hayashi;Yutaro Motokawa;Goro Kikuchi

Frequent Co-Authors

Norio Hayashi
Norio Hayashi Osaka University
Shigeki Shibahara
Shigeki Shibahara Tohoku University
Masayuki Yamamoto
Masayuki Yamamoto Tohoku University
William L. Nyhan
William L. Nyhan University of California, San Diego

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