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au.\*:("FUJITSUKA N")

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ELECTRICAL THRESHOLD OF THE SENSORY NERVE TERMINAL OF THE FROG MUSCLE SPINDLE: A ROLE OF SPINDLE POTENTIAL FOR GENERATING AFFERENT IMPULSESITO F; FUJITSUKA N.1983; NEUROSCIENCE LETTERS; ISSN 0304-3940; NLD; DA. 1983; VOL. 37; NO 3; PP. 233-237; BIBL. 6 REF.Article

BLOOD LACTATE AFTER STRENUOUS EXERCISE WITH AND WITHOUT BREATH-HOLDINGFUJITSUKA N; OHKUWA T; MIYAMURA M et al.1980; JAP. J. PHYSIOL.; JPN; DA. 1980; VOL. 30; NO 2; PP. 309-312; BIBL. 12 REF.Article

GK(CA)-DEPENDENT CYCLIC POTENTIAL CHANGES IN THE SENSORY NERVE TERMINAL OF FROG MUSCLE SPINDLEITO F; KOMATSU Y; FUJITSUKA N et al.1982; BRAIN RES.; ISSN 0006-8993; NLD; DA. 1982; VOL. 252; NO 1; PP. 39-50; BIBL. 32 REF.Article

VENTILATORY RESPONSE TO HYPERCAPNIA BY REBREATHING IN SUCCESSIVE TRIALSMIYAMURA M; FUJITSUKA N; MATSUI H et al.1980; JPN. J. PHYSIOL.; ISSN 0021-521X; JPN; DA. 1980; VOL. 30; NO 6; PP. 945-953; BIBL. 2 P.Article

CALCIUM SPIKE INDUCED BY ELECTRICAL STIMULATION TO THE SENSORY NERVE TERMINAL OF THE FROG MUSCLE SPINDLEITO F; KOMATSU Y; FUJITSUKA N et al.1981; NEUROSCI. LETT.; ISSN 0304-3940; NLD; DA. 1981; VOL. 27; NO 2; PP. 135-137; BIBL. 5 REF.Article

EFFECTS OF ANIONS ON CALCIUM COMPONENT IN SENSORY NERVE TERMINAL OF FROG MUSCLE SPINDLESITO F; KOMATSU Y; FUJITSUKA N et al.1982; BRAIN RES.; ISSN 0006-8993; NLD; DA. 1982; VOL. 252; NO 1; PP. 197-200; BIBL. 9 REF.Article

VENTILATORY RESPONSE TO HYPERCAPNIA IN SPRINT AND LONG-DISTANCE SWIMMERSOHKUWA T; FUJITSUKA N; UTSUNO T et al.1980; EUROP. J. APPL. PHYSIOL. OCCUP. PHYSIOL.; DEU; DA. 1980; VOL. 43; NO 3; PP. 235-241; BIBL. 19 REF.Article

Uptake of ruthenium red by the sensory nerve terminal of the frog muscle spindleFUJITSUKA, N; ITO, F.Okajimas folia anatomica japonica. 1983, Vol 60, Num 1, pp 1-15, issn 0030-154XArticle

VENTILATORY RESPONSE TO CO2 REBREATHING AT REST IN THE AMAMIYAMURA M; TSUNODA T; FUJITSUKA N et al.1981; JPN. J. PHYSIOL.; ISSN 0021-521X; JPN; DA. 1981; VOL. 31; NO 3; PP. 423-426; BIBL. 8 REF.Article

MINIATURE END-PLATE POTENTIALS IN THE FROG MUSCLE SPINDLEITO F; ITO Y; FUJITSUKA N et al.1978; BRAIN RES. BULL.; USA; DA. 1978; VOL. 3; NO 2; PP. 161-165; BIBL. 12 REF.Article

PEAK BLOOD LACTATE AFTER SHORT PERIODS OF MAXIMAL TREADMILL RUNNINGFUJITSUKA N; YAMAMOTO T; OHKUWA T et al.1982; EUR. J. APPL. PHYSIOL. OCCUP. PHYSIOL.; ISSN 0301-5548; DEU; DA. 1982; VOL. 48; NO 3; PP. 289-296; BIBL. 25 REF.Article

INTRAINDIVIDUAL VARIATION OF OXYGEN DEBT DURING SUBMAXIMAL BICYCLE WORK.FUJITSUKA N; SAITO M; MIYAMURA M et al.1977; J. PHYSIOL. SOC. JAP.; JAP.; DA. 1977; VOL. 39; NO 12; PP. 500-502; BIBL. 6 REF.Article

Variations in the distribution of methylguanidine with the progression of renal failure after methylguanidine loadingYOKOZAWA, T; FUJITSUKA, N; OURA, H et al.Nephron. 1989, Vol 52, Num 4, pp 347-351, issn 0028-2766Article

Effects of ginsenoside-Rb2 on adenine nucleotide content of rat hepatic tissueYOKOZAWA, T; FUJITSUKA, N; YASUI, T et al.Journal of pharmacy and pharmacology. 1991, Vol 43, Num 4, pp 290-291, issn 0022-3573, 2 p.Article

The spindle potential in the frog muscle spindle does not require external Na+ITO, F; FUJITSUKA, N; KIM, N et al.Brain research. 1983, Vol 277, Num 2, pp 352-354, issn 0006-8993Article

Studies on the precursor of methylguanidine in rats with renal failureYOKOZAWA, T; FUJITSUKA, N; OURA, H et al.Nephron. 1991, Vol 58, Num 1, pp 90-94, issn 0028-2766, 5 p.Article

Production of methylguanidine from creatinine in normal rats and rats with renal failureYOKOZAWA, T; FUJITSUKA, N; OURA, H et al.Nephron. 1990, Vol 56, Num 3, pp 249-254, issn 0028-2766, 6 p.Article

Effects of ruthenium ions on the sensory terminal discharges of the frog muscle spindleITO, F; FUJITSUKA, N; KOMATSU, Y et al.Brain research. 1983, Vol 276, Num 2, pp 277-288, issn 0006-8993Article

Creatine phosphate in fiber types of skeletal muscle before and after exhaustive exerciseTESCH, P. A; THORSSON, A; FUJITSUKA, N et al.Journal of applied physiology (1985). 1989, Vol 66, Num 4, pp 1756-1759, issn 8750-7587Article

Effects of dantrolene and methylxanthines on the sensory nerve terminal of the frog muscle spindleITO, F; FUJITSUKA, N; HANAICHI, T et al.Brain research. 1984, Vol 294, Num 2, pp 269-280, issn 0006-8993Article

Intramembrane particles and terminal responses following denervation of frog muscle spindlesFUJITSUKA, N; HAMA, K; ITO, F et al.Journal of neurocytology. 1987, Vol 16, Num 2, pp 185-194, issn 0300-4864Article

Possible fusimotor innervation to frog muscle spindlesFUJITSUKA, N; SOKABE, M; YOSHIMURA, A et al.Brain research. 1987, Vol 415, Num 1, pp 144-148, issn 0006-8993Article

Ultrastructural changes of the sensory nerve terminals in frog muscle spindle during dynamic stretchKIM, N; FUJITSUKA, N; ITO, F et al.Journal of neurocytology. 1985, Vol 14, Num 1, pp 105-112, issn 0300-4864Article

Modification of sensory-terminal responses and membrane structure of frog muscle spindle by collagenaseFUJITSUKA, N; KORI, A. A; SOKABE, M et al.Brain research. 1988, Vol 443, Num 1-2, pp 243-253, issn 0006-8993Article

Production of methylguanidine from creatinine via creatol by active oxygen species : analyses of the catabolism in vitroNAKAMURA, K; IENAGA, K; YOKOZAWA, T et al.Nephron. 1991, Vol 58, Num 1, pp 42-46, issn 0028-2766, 5 p.Article

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