参考文献
1)荒井秀典.IV.フレイル・サルコペニア.日本内科学会雑誌,107 (12),2444-2450 (2018).
2)荒井秀典.サルコペニア診療ガイドライン.日本内科学会雑誌,109 (10), 2162-2167 (2020).
3)Lee, J., & Zhang, X. L. Physiological determinants of VO2max and the methods to evaluate it: A critical review. Science & Sports, 36 (4), 259-271 (2021).
4)Hamaoka, T., McCully, K. K., Niwayama, M., & Chance, B. The use of muscle near-infrared spectroscopy in sport, health and medical sciences: recent developments. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 369 (1955), 4591-4604 (2011).
5)Barstow, T. J. Understanding near infrared spectroscopy and its application to skeletal muscle research. Journal of Applied Physiology, 126 (5), 1360-1376 (2019).
6)Niwayama, M. Voxel-based measurement sensitivity of spatially resolved near-infrared spectroscopy in layered tissues. Journal of Biomedical Optics, 23 (3), 030503-030503 (2018).
7)㈱アステム.組織酸素計 Oxy-Pro. https://astem-jp.com/product/oxy-pro/ 最終確認日2024年8月1日.
8)Katagiri, M., Nakabayashi, M., Matsuda, Y., Ono, Y., & Ichinose, M. Differential changes in blood flow and oxygen utilization in active muscles between voluntary exercise and electrical muscle stimulation in young adults. Journal of Applied Physiology, 136 (5), 1053-1064 (2024).
9)Yu G, Durduran T, Lech G, Zhou C, Chance B, Mohler ER, 3rd, Yodh AG. Time-dependent blood flow and oxygenation in human skeletal muscles measured with noninvasive near-infrared diffuse optical spectroscopies. J Biomed Opt 10: 024027 (2005).
10)Mesquita RC, Durduran T, Yu G, Buckley EM, Kim MN, Zhou C, Choe R, Sunar U, Yodh AG. Direct measurement of tissue blood flow and metabolism with diffuse optics. Philos Trans A Math Phys Eng Sci 369: 4390-4406 (2011).
11)Nakabayashi, M., Liu, S., Broti, N. M., Ichinose, M., & Ono, Y. Deep-learning-based separation of shallow and deep layer blood flow rates in diffuse correlation spectroscopy. Biomedical Optics Express, 14 (10), 5358-5375 (2023).
12)Yu, G., Floyd, T. F., Durduran, T., Zhou, C., Wang, J., Detre, J. A., & Yodh, A. G. Validation of diffuse correlation spectroscopy for muscle blood flow with concurrent arterial spin labeled perfusion MRI. Optics express, 15 (3), 1064-1075 (2007).
13)小野 弓絵,中林 実輝絵.計測装置,計測方法及びプログラム. 特願2022-139865. https://jglobal.jst.go.jp/detail?JGLOBAL_ID=202403000423369275
14)Matsuda, Y., Nakabayashi, M., Suzuki, T., Zhang, S., Ichinose, M., & Ono, Y. Evaluation of local skeletal muscle blood flow in manipulative therapy by diffuse correlation spectroscopy. Frontiers in Bioengineering and Biotechnology, 9, 800051(2022).
15)Hirasawa, R., Nakabayashi, M., Matsuda, Y., & Ono, Y. Quantitative Evaluation of Manipulative Therapy Effects by Tissue Blood Flow and Muscle Stiffness Measurements. Advanced Biomedical Engineering, 13, 66-72 (2024).
16)Ichinose, M., Nakabayashi, M., & Ono, Y. Rapid vasodilation within contracted skeletal muscle in humans: new insight from concurrent use of diffuse correlation spectroscopy and Doppler ultrasound. American Journal of Physiology-Heart and Circulatory Physiology, 320 (2), H654-H667 (2021).
17)Nozaki, K., Nakabayashi, M., Ichinose, M., & Ono, Y. Real-time detection of fatigue effect on active muscle hemodynamics using diffuse correlation spectroscopy. In Biophotonics in Exercise Science, Sports Medicine, Health Monitoring Technologies, and Wearables (Vol. 11237, pp. 64-69). SPIE (2020, February).
18)Biswas, A., Moka, S., Muller, A., & Parthasarathy, A. B. Fast diffuse correlation spectroscopy with a low-cost, fiber-less embedded diode laser. Biomedical Optics Express, 12 (11), 6686-6700 (2021).
19)Cheng, T. Y., Kim, B., Zimmermann, B. B., Robinson, M. B., Renna, M., Carp, S. A., … & Cheng, X. Choosing a camera and optimizing system parameters for speckle contrast optical spectroscopy. Scientific Reports, 14 (1), 11915 (2024).
■Non-Invasive Measurement of Local Muscle Blood Flow and Oxygen Consumption Using a Wearable Optical Sensor
■Yumie Ono
■School of Science and Technology, Meiji University, Japan