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Volumn 893, Issue , 1999, Pages 386-390

The glucose paradox in cerebral ischemia new insights

Author keywords

[No Author keywords available]

Indexed keywords

ALPHA CYANO 4 HYDROXYCINNAMIC ACID; GLUCOSE;

EID: 0033392074     PISSN: 00778923     EISSN: None     Source Type: Book Series    
DOI: 10.1111/j.1749-6632.1999.tb07862.x     Document Type: Conference Paper
Times cited : (36)

References (15)
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    • Myers, R.E.1    Yamaguchi, S.2
  • 2
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    • Deleterious effect of glucose pretreatment on recovery from diffuse cerebral ischemia in the cat. I. Local cerebral blood flow and glucose utilization
    • 2. Ginsberg, M.D., F.A. Welsh, & W.W. Budd. 1980. Deleterious effect of glucose pretreatment on recovery from diffuse cerebral ischemia in the cat. I. Local cerebral blood flow and glucose utilization. Stroke 11: 347-354.
    • (1980) Stroke , vol.11 , pp. 347-354
    • Ginsberg, M.D.1    Welsh, F.A.2    Budd, W.W.3
  • 3
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    • Deleterious effect of glucose pretreatment on recovery from ischemia in the cat. II. Regional metabolite levels
    • 3. Welsh, F.A., M.D. Ginsburg, W. Rieder & W.W. Budd. 1980. Deleterious effect of glucose pretreatment on recovery from ischemia in the cat. II. regional metabolite levels. Stroke 11: 355-363.
    • (1980) Stroke , vol.11 , pp. 355-363
    • Welsh, F.A.1    Ginsburg, M.D.2    Rieder, W.3    Budd, W.W.4
  • 4
    • 0019815904 scopus 로고
    • Brain lactic acidosis and ischemic cell damage. 1. Biochemistry and neurophysiology
    • 4. Rehncrona, S. I. Rosén & B.K. Siesjö. 1981. Brain lactic acidosis and ischemic cell damage. 1. Biochemistry and neurophysiology. J. Cereb. Blood. Flow Metab. 1: 297-311.
    • (1981) J. Cereb. Blood. Flow Metab. , vol.1 , pp. 297-311
    • Rehncrona, S.I.1    Siesjö, B.K.2
  • 5
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    • Metabolic aspects of cerebral hypoxia-ischemia
    • M. Reivich, R. Coburn, S. Lahiri & B. Chance, Eds. : Plenum Press. New York, NY
    • 5. Siesjö, B.K., H.-C. Nordstrom & S. Rehncrona. 1977. Metabolic aspects of cerebral hypoxia-ischemia. In Tissue Hypoxia and Ischemia. M. Reivich, R. Coburn, S. Lahiri & B. Chance, Eds. : 261-269. Plenum Press. New York, NY.
    • (1977) Tissue Hypoxia and Ischemia , pp. 261-269
    • Siesjö, B.K.1    Nordstrom, H.-C.2    Rehncrona, S.3
  • 6
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    • Influence of tissue acidosis upon restitution of brain energy metabolism following total ischemia
    • 6. Ljunggren, B., K. Norberg & B.K. Siesjö. 1974. Influence of tissue acidosis upon restitution of brain energy metabolism following total ischemia. Brain Res. 77: 173-186.
    • (1974) Brain Res. , vol.77 , pp. 173-186
    • Ljunggren, B.1    Norberg, K.2    Siesjö, B.K.3
  • 9
    • 0031034305 scopus 로고    scopus 로고
    • Brain lactate, not glucose, fuels the recovery of synaptic function from hypoxia upon reoxygenation: An in vitro study
    • 9. Schurr, A., R.S. Payne, J.J. Miller & B.M. Rigor. 1997. Brain lactate, not glucose, fuels the recovery of synaptic function from hypoxia upon reoxygenation: an in vitro study. Brain Res. 744: 105-111.
    • (1997) Brain Res. , vol.744 , pp. 105-111
    • Schurr, A.1    Payne, R.S.2    Miller, J.J.3    Rigor, B.M.4
  • 10
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    • Brain lactate is an obligatory aerobic energy substrate for functional recovery after hypoxia: Further in vitro validation
    • 10. Schurr, A., R.S. Payne, J.J. Miller & B.M. Rigor. 1997. Brain lactate is an obligatory aerobic energy substrate for functional recovery after hypoxia: further in vitro validation. J. Neurochem. 69: 423-426.
    • (1997) J. Neurochem. , vol.69 , pp. 423-426
    • Schurr, A.1    Payne, R.S.2    Miller, J.J.3    Rigor, B.M.4
  • 13
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    • Correlates of delayed neuronal damage and neuroprotection in a rat model of cardiac arrest-induced cerebral ischemia
    • In press
    • 13. Li, M.M., R.S. Payne, K.H. Reid, M.T. Tseng, B.M. Rigor & A. Schurr. 1999. Correlates of delayed neuronal damage and neuroprotection in a rat model of cardiac arrest-induced cerebral ischemia. Brain Res. In press.
    • (1999) Brain Res.
    • Li, M.M.1    Payne, R.S.2    Reid, K.H.3    Tseng, M.T.4    Rigor, B.M.5    Schurr, A.6
  • 14
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    • Brain anaerobic lactate production: A suicide note or a survival kit?
    • 14. Schurr, A. & B.M. Rigor. 1998. Brain anaerobic lactate production: a suicide note or a survival kit? Dev. Neurosci. 20: 348-357.
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    • Schurr, A.1    Rigor, B.M.2
  • 15
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    • Increased glucose improves recovery of neuronal function after cerebral hypoxia in vitro
    • 15. Schurr, A., C.A. West, K.H. Reid, M.T. Tseng, S.J. Reiss & B.M. Rigor. 1987. Increased glucose improves recovery of neuronal function after cerebral hypoxia in vitro. Brain Res. 421: 135-139.
    • (1987) Brain Res. , vol.421 , pp. 135-139
    • Schurr, A.1    West, C.A.2    Reid, K.H.3    Tseng, M.T.4    Reiss, S.J.5    Rigor, B.M.6


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.