THEME

1. Circulatory Physiology
2. Respiratory Physiology
3. Exercise Gerontology
4. Microcirculation
5. Mathematical Biology
6. Biomedical Engineering
7. Angiogenesis
8. Apoptosis

Circulatory Physiology    
1. Effects of the muscle pump and body posture on cardiovascular responses during recovery from cycle exercise. Eur. J. Appl. Physiol.
2. Hypothesis: A role of cardiac receptor nerve afferent in reflex control of heart rate during light exercise in upright humans. Ther. Res. 24: 1583-1593, 2003
3. Influence of cool-down exercise on autonomic control of heart rate during recovery from dynamic exercise. Frontiers Med. Biol. Engng. 11: 249-259, 2002
4. Difference in human cardiovascular response between upright and supine recovery from upright cycle exercise. Eur. J. Appl. Physiol.  81: 233-239, 2000
5. Influence of duration of cool-dwon exercise on recovery of heart rate in humans. Ther. Res.  21: 170-175, 2000
6. 運動後の座位と仰臥位による循環動態の違い Ther. Res.  20: 418-421, 1999
7. Influence of light physical activity on cardiac responses during recovery from exercise in humans.
Eur. J. Appl. Physiol.  77: 305-311, 1998
       
Respiratory Physiology    
1. Cardiorespiratory responses to walking and running at an incremental speed of treadmill. Adv. Exp. Med. Biol.  499: 363-368, 2001
2. VE-VCO2 relationship in transient responses to step-load exercise from rest to recovery. Adv. Exp. Med. Biol. 450: 207-212, 1998
3. Respiratory responses to passive and active recovery from exercise. Jpn J. Physiol.  47: 59-65, 1997
4. Ventilatory responses to CO2: constant fraction vs. constant inflow administration. Respir. Physiol.  104: 91-106, 1996
5. A model analysis on asymmetry of pulmonary O2 uptake during incremental and decremental ramp exercise. Adv. Exp. Med. Biol. 393: 165-171, 1995
6. Effect of base line changes in work rate on cardiorespiratory dynamics in incremental and decremental ramp exercise. Adv. Exp. Med. Biol. 393: 159-164, 1995
7. A model analysis of the asymmetrical response of pulmonary O2 uptake during incremental and decremental ramp exercise. J. Appl. Physiol.  79: 1816-1827, 1995
       
Exercise Gerontology    
1. Responses of heart rate and vagal tone to treadmill walking on land in water in healthy elderly people. JAPA  11: 18-26, 2003
2. 高齢有疾患者の総合的体力に対するwell-rounded exercise programの有効性 体力科学 52: 513-524, 2003
       
Microcirculation    
1. Mechanism of macromolecule concentration in collecting lymphatics in rat mesentery. Microvasc. Res.  54: 193-205, 1997
2. ラット腸間膜集合リンパ管の蛋白濃縮輸送機構 リンパ学  16: 13-18, 1993
3. 蛍光生体顕微鏡による実質臓器微小血管透過性測定法 脈管学  31: 497-502, 1991
       
Mathematical Biology    
1. Fractal Integrals Facilitate Precise Parameter Quantification of Natural Dendritic Systems. Science (submitting)
2. 哺乳動物循環系酸素供給効率の最適原理に基づくモデル解析 医用電子と生体工学  4: 273-283, 1990
       
Biomedical Engineering    
1. Control characteristics of an automatic matching control system for in vivo EPR spectroscopy. Mag. Reson. Med. 50: 223-227, 2003
2. 圧電ポリマー素子を用いた呼吸、心拍、体動のオンライン計測 臨床モニター  11: 98-103, 2000
Apoptosis
1. Changes in cardiovascular function on inhibition of apoptosis in left ventricular remodeling after myocardial infarction. (submitting)

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Math. Info. Sci.
Takahashi T.