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Mitsutaka Sugimura

Explore the profile of Mitsutaka Sugimura including associated specialties, affiliations and a list of published articles. Areas
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Articles 47
Citations 212
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Recent Articles
1.
Yamashita K, Yoshimine S, Uto A, Uchino M, Kibe T, Sugimura M
Cureus . 2025 Jan; 16(12):e76345. PMID: 39867076
Objective: Imbalanced autonomic nervous system (ANS) activity raises concerns about the development of systemic complications during dental treatment. The purpose of this study was to determine whether a psychological test...
2.
Uto A, Yamashita K, Yoshimine S, Uchino M, Kibe T, Sugimura M
J Clin Monit Comput . 2024 Aug; 39(1):45-52. PMID: 39172322
Perioperative stress in pediatric patients is often difficult to assess via interviews; thus, an objective measure to assess perioperative stress is needed. To visualize perioperative stress, we observed autonomic nervous...
3.
Kuramoto E, Fukushima M, Sendo R, Ohno S, Iwai H, Yamanaka A, et al.
J Comp Neurol . 2024 Feb; 532(2):e25584. PMID: 38341648
The trigeminal nerve is the sensory afferent of the orofacial regions and divided into three major branches. Cell bodies of the trigeminal nerve lie in the trigeminal ganglion and are...
4.
Tomita K, Oohara Y, Igarashi K, Kitanaka J, Kitanaka N, Tanaka K, et al.
Heliyon . 2023 Dec; 9(12):e22784. PMID: 38090003
(KSS) and (KKT) have been traditionally prescribed for neuropsychiatric symptoms in Japan. However, the molecular mechanism of its effect is not elucidated enough. On the other hand, it has been...
5.
Shirakawa Y, Ohno S, Yamagata K, Kuramoto E, Oda Y, Nakamura T, et al.
Front Neurosci . 2023 Apr; 17:1142785. PMID: 37056311
Introduction: The trigeminal nerve conveys delicate sensations such as warmth, pain, and tactile pressure in the oral and facial regions, and most trigeminal afferent cell bodies are located in the...
6.
Shidou R, Kohjitani A, Miyata M, Yamashita K, Ohno S, Ohishi M, et al.
Int Heart J . 2022 Jun; 63(3):558-565. PMID: 35650156
This study aimed to determine independent factors for developing postoperative hypertension using 4 biomarkers in patients receiving oral and maxillofacial surgery under general anesthesia. Brain natriuretic peptide (BNP), N-terminal pro-B-type...
7.
Oda Y, Takasu N, Ohno S, Shirakawa Y, Sugimura M, Nakamura T, et al.
Neurosci Lett . 2021 Dec; 772:136415. PMID: 34954114
The circadian rhythms of physiology and behavior are based on molecular systems at the cellular level, which are regulated by clock genes, including cryptochrome genes, Cry1 and Cry2. In mammals,...
8.
Niiro A, Ohno S, Yamagata K, Yamagata K, Tomita K, Kuramoto E, et al.
Front Neurosci . 2021 Aug; 15:703440. PMID: 34408624
Management of time and circadian disruption is an extremely important factor in basic research on pain and analgesia. Although pain is known to vary throughout the day, the mechanism underlying...
9.
Yamashita K, Uto A, Uchino M, Shidou R, Kibe T, Sugimura M
J Oral Maxillofac Surg . 2021 Jul; 79(11):2268.e1-2268.e5. PMID: 34273277
Purpose: This study assessed the relationship between changes in autonomic nervous system activity during impacted mandibular third molar extraction and a patient's postoperative psychological status, with the overarching aim of...
10.
Higa Y, Kashiwadani H, Sugimura M, Kuwaki T
Sci Rep . 2021 Apr; 11(1):9224. PMID: 33927235
Linalool odor exposure induces an analgesic effect in mice. This effect disappeared in the anosmic model mice, indicating that olfactory input evoked by linalool odor triggered this effect. Furthermore, hypothalamic...