Zobrazeno 1 - 10
of 75
pro vyhledávání: '"Toshihiro Shoji"'
Autor:
Hideki Miyachi, MD, PhD, Shuhei Tara, MD, PhD, Satoru Otsuru, MD, PhD, Tai Yi, MD, Yong-Ung Lee, PhD, Joseph D. Drews, MD, Hidetaka Nakayama, PhD, Shinka Miyamoto, MD, PhD, Tadahisa Sugiura, MD, PhD, Toshihiro Shoji, BA, Christopher K. Breuer, MD, Toshiharu Shinoka, MD, PhD
Publikováno v:
JVS - Vascular Science, Vol 1, Iss , Pp 57-67 (2020)
Background: Bioresorbable vascular grafts (BVGs) can transform biologically into active blood vessels and represent an alternative to traditional synthetic conduits, which are prone to complications such as infection and thrombosis. Although platelet
Externí odkaz:
https://doaj.org/article/3c6ac0d5f4d545b39b0c37998a746a77
Publikováno v:
Applied Sciences, Vol 11, Iss 10, p 4563 (2021)
The creation of small-diameter tissue-engineered vascular grafts using biodegradable materials has the potential to change the quality of cardiovascular surgery in the future. The implantation of these tissue-engineered arterial grafts has yet to rea
Externí odkaz:
https://doaj.org/article/4d5d2269cfb64b7b8e990d9931ba71e1
Publikováno v:
Applied Sciences, Vol 9, Iss 7, p 1274 (2019)
Currently available synthetic grafts have contributed to improved outcomes in cardiovascular surgery. However, the implementation of these graft materials at small diameters have demonstrated poor patency, inhibiting their use for coronary artery byp
Externí odkaz:
https://doaj.org/article/9b78abfeaaef4b46b352499f70aeccfa
Autor:
Takuma Fukunishi, Cameron A Best, Tadahisa Sugiura, Toshihiro Shoji, Tai Yi, Brooks Udelsman, Devan Ohst, Chin Siang Ong, Huaitao Zhang, Toshiharu Shinoka, Christopher K Breuer, Jed Johnson, Narutoshi Hibino
Publikováno v:
PLoS ONE, Vol 11, Iss 7, p e0158555 (2016)
Tissue engineered vascular grafts (TEVGs) have the potential to overcome the issues faced by existing small diameter prosthetic grafts by providing a biodegradable scaffold where the patient's own cells can engraft and form functional neotissue. Howe
Externí odkaz:
https://doaj.org/article/73ef8eda6c8a4d4eb757bc6040583e3b
Publikováno v:
Expert Opinion on Biological Therapy. 22:433-440
Introduction Cardiovascular disease (CVD) is the leading cause of death in western countries. Although surgical outcomes for CVD are dramatically improving with the development of surgical techniques, medications, and perioperative management strateg
Autor:
Yuichi Matsuzaki, Christopher K. Breuer, Kevin M. Blum, Shinka Miyamoto, Toshiharu Shinoka, Ryuma Iwaki, James W. Reinhardt, Hidetaka Nakayama, Hideki Miyachi, John Kelly, Toshihiro Shoji, Yu-Chun Chang
Publikováno v:
The Annals of Thoracic Surgery. 111:1234-1241
Small diameter (6 mm), bioabsorbable, arterial, tissue-engineered vascular grafts (TEVGs) remain limited by thromboembolism. The objective of this study was to test whether heparin-eluting (HE) TEVGs prevent early thrombosis in a large animal model.T
Autor:
Takashi Nakayama, Toshihiro Shoji, Yoshio Kobayashi, Yuichi Saito, Yoshihide Fujimoto, Hideki Kitahara
Publikováno v:
Heart, Lung and Circulation. 29:1511-1516
Autonomic nerve system and endothelial function play important roles in vasospastic angina. Elevated heart rate (HR), blood pressure (BP), and double product (DP) can increase endothelial-dependent coronary artery dilation and blood flow. However, th
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Autor:
Hideki Kitahara, Yuichi Saito, Yoshio Kobayashi, Yoshihide Fujimoto, Kazuya Tateishi, Toshihiro Shoji
Publikováno v:
Advances in Therapy. 37:3807-3815
Previous studies showed the relation of mental distress such as anxiety and depression to coronary vasoconstriction and myocardial ischemia. However, the mental health status of patients suspected to have vasospastic angina is unclear. A total of 99
Autor:
Toshihiro Shoji, Christopher K. Breuer, Tadahisa Sugiura, Hidetaka Nakayama, Tai Yi, Yong-Ung Lee, Joseph D. Drews, Hideki Miyachi, Toshiharu Shinoka, Shuhei Tara, Shinka Miyamoto, Satoru Otsuru
Publikováno v:
JVS-Vascular Science, Vol 1, Iss, Pp 57-67 (2020)
JVS-vascular science
JVS-vascular science
Background: Bioresorbable vascular grafts (BVGs) can transform biologically into active blood vessels and represent an alternative to traditional synthetic conduits, which are prone to complications such as infection and thrombosis. Although platelet