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Takashi Mimura

Takashi Mimura

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
41
Citations
6550
World Ranking
4312
National Ranking
167

Materials Science

D-Index
41
Citations
6441
World Ranking
12717
National Ranking
805

Overview

Takashi Mimura is a researcher affiliated with Fujitsu in Japan, specializing primarily in the field of Medicine with a focused subfield concentration in Pulmonary and Respiratory Medicine. Their work extensively covers clinical and surgical aspects related to lung diseases, particularly lung cancer and pulmonary function. Mimura's research contributions span multiple high-impact publication venues including General Thoracic and Cardiovascular Surgery, Japanese Journal of Clinical Oncology, The Annals of Thoracic Surgery, Surgical Case Reports, and Haigan.

The scientist's research topics commonly include:

  • Lung Cancer Diagnosis and Treatment
  • Pleural and Pulmonary Diseases
  • Congenital Diaphragmatic Hernia Studies
  • Tracheal and airway disorders
  • Trauma Management and Diagnosis
  • Radiomics and Machine Learning in Medical Imaging
  • Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis

Some of Mimura's recent papers illustrate the scope and focus of their research. Notable publications include:

  • "Systemic Inflammatory Score Predicts Response and Prognosis in Patients With Lung Cancer Treated With Immunotherapy," 2021, published in Anticancer Research
  • "Severity of emphysema as a prognosticator of resected early lung cancer: an analysis classified by Goddard score," 2020, Japanese Journal of Clinical Oncology
  • "Clinical Significance of Preserving Pulmonary Function After Lung Resection in Early-Stage Non-Small-Cell Lung Cancer," 2024, Clinical Lung Cancer
  • "Risk factors for long-term decline in post-operative pulmonary function after lung resection," 2022, Japanese Journal of Clinical Oncology
  • "Safety of a Novel Microwave Surgical Instrument for Lung Parenchyma Dissection During Segmentectomy," 2020, The Annals of Thoracic Surgery

The scientist frequently collaborates with other researchers such as Atsushi Kagimoto, Yoshinori Yamashita, Atsushi Kamigaichi, Kazuya Kuraoka, and Norifumi Tsubokawa. These coauthors appear consistently in Mimura's research outputs, indicating active and ongoing professional relationships within the clinical and surgical oncology research community.

Takashi Mimura's publication record reflects involvement in both clinical and surgical research contexts, with particular emphasis on lung cancer treatment, pulmonary function preservation, and the development or assessment of surgical instruments and techniques. Their contributions regularly appear in specialized journals that focus on thoracic surgery, oncology, and clinical outcomes, highlighting a focused approach to their field of study.

Best Publications

  • A New Field-Effect Transistor with Selectively Doped GaAs/n-AlxGa1-xAs Heterojunctions

    Takashi Mimura;Satoshi Hiyamizu;Toshio Fujii;Kazuo Nanbu

  • Pseudomorphic In/sub 0.52/Al/sub 0.48/As/In/sub 0.7/Ga/sub 0.3/As HEMTs with an ultrahigh f/sub T/ of 562 GHz

    Y. Yamashita;A. Endoh;K. Shinohara;K. Hikosaka

  • Short-channel effects in subquarter-micrometer-gate HEMTs: simulation and experiment

    Y. Awano;M. Kosugi;K. Kosemura;T. Mimura

  • AlGaN/GaN Heterostructure Field-Effect Transistors on 4H-SiC Substrates with Current-Gain Cutoff Frequency of 190 GHz

    Masataka Higashiwaki;Takashi Mimura;Takashi Mimura;Toshiaki Matsui

  • High Electron Mobility Transistor Logic

    Takashi Mimura;Kazukiyo Joshin;Satoshi Hiyamizu;Kohki Hikosaka

  • 547-GHz f/sub t/ In/sub 0.7/Ga/sub 0.3/As-In/sub 0.52/Al/sub 0.48/As HEMTs with reduced source and drain resistance

    K. Shinohara;Y. Yamashita;A. Endoh;I. Watanabe

  • AlGaN/GaN MIS-HFETs with f/sub T/ of 163 GHz using cat-CVD SiN gate-insulating and passivation Layers

    M. Higashiwaki;T. Matsui;T. Mimura

  • Selective Dry Etching of AlGaAs-GaAs Heterojunction

    Kohki Hikosaka;Takashi Mimura;Kazukiyo Joshin

  • AlN/GaN Insulated-Gate HFETs Using Cat-CVD SiN

    M. Higashiwaki;T. Mimura;T. Matsui

  • Ultra-short 25-nm-gate lattice-matched InAlAs/InGaAs HEMTs within the range of 400 GHz cutoff frequency

    Y. Yamashita;A. Endoh;K. Shinohara;M. Higashiwaki

  • Ultrahigh-speed pseudomorphic InGaAs/InAlAs HEMTs with 400-GHz cutoff frequency

    K. Shinohara;Y. Yamashita;A. Endoh;K. Hikosaka

  • Semiconductor device with high mobility and high speed

    Takashi Mimura;Keiji Ikeda

  • Non-Recessed-Gate Enhancement-Mode AlGaN/GaN High Electron Mobility Transistors with High RF Performance

    Akira Endoh;Yoshimi Yamashita;Keiji Ikeda;Masataka Higashiwaki

  • Reduction in potential barrier height of AlGaN∕GaN heterostructures by SiN passivation

    N. Onojima;M. Higashiwaki;J. Suda;T. Kimoto

  • Status of the GaAs metal—oxide—semiconductor technology

    T. Mimura;M. Fukuta

  • 30-nm-Gate AlGaN/GaN Heterostructure Field-Effect Transistors with a Current-Gain Cutoff Frequency of 181 GHz

    Masataka Higashiwaki;Takashi Mimura;Takashi Mimura;Toshiaki Matsui

  • Enhancement-mode high electron mobility transistors for logic applications

    Takashi Mimura;Satoshi Hiyamizu;Kazukiyo Joshin;Kohki Hikosaka

  • Enhancement-Mode AlN/GaN HFETs Using Cat-CVD SiN

    M. Higashiwaki;T. Mimura;T. Matsui

  • New technology towards GaAs LSI/VLSI for computer applications

    M. Abe;T. Mimura;N. Yokoyama;H. Ishikawa

  • Extremely High-Speed Lattice-Matched InGaAs/InAlAs High Electron Mobility Transistors with 472 GHz Cutoff Frequency

    Keisuke Shinohara;Yoshimi Yamashita;Akira Endoh;Kohki Hikosaka

Frequent Co-Authors

Toshiaki Matsui
Toshiaki Matsui National Institute of Information and Communications Technology
Masataka Higashiwaki
Masataka Higashiwaki Osaka Metropolitan University
Naoki Yokoyama
Naoki Yokoyama Apple (United States)
Yuji Awano
Yuji Awano Keio University
Umesh K. Mishra
Umesh K. Mishra University of California, Santa Barbara
Jun Suda
Jun Suda Nagoya University
Tsunenobu Kimoto
Tsunenobu Kimoto Kyoto University
Stacia Keller
Stacia Keller University of California, Santa Barbara

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