Compiled by Cristian Werner, MD
University Hospital, Eppendorf, Germany
Copyright (c) 1996 SNACC All Rights Reserved


*1. Anderson RE, Sundt TM Jr, Yaksh TL: Regional cerebral blood flow and focal cortical perfusion: A comparative study of 133 Xe, 85 Kr, and umbelliferone as diffusible indicators. J Cereb Blood Flow Metab 7:207-213, 1987

2. Bell BA: A history of the study of the cerebral circulation and the measurement of cerebral blood flow (Review). Neurosurgery 14:238-246, 1984

*3. Bushnell DL, Gupta S, Barnes WE, Litooy F, Niemiro M, Steffen G: Evaluation of cerebral perfusion reserve using 5% CO2 and SPECT neuroperfusion imaging. Clin Nucl Med 16:263-267,1991

4. Cherry SR, Woods RP, Hoffman EJ, Mazziotta JC: Improved detection of focal cerebral blood flow changes using three-dimensional positron emission tomography. J Cereb Blood Flow Metab 13:630-638, 1993

*5. Dahl A, Lindegaard K-F, Russell D, Nyberg-Hansen R, Rootwelt K, Sorteberg E et al: A comparison of transcranial Doppler and cerebral blood flow studies to assess cerebral vasoreactivity. Stroke 23:15-19, 1992

6. Eintrei C, Leszniewski W, Carlsson C: Local application of 133 xenon for measurement of regional cerebral blood flow (rCBF) during halothane, enflurane, and isoflurane anesthesia in humans. Anesthesiology 63:391-394, 1985

7. Eklof B, Lassen NA, Nilsson L, Norberg K, Siesjo BK, Torlof P: Regional cerebral blood flow in the rat measured by the tissue sampling technique; a critical evaluation using for indicators C14-antipyrine, C14-ethanol, H3-water and xenon133. Acta Physiol Scand 91:1-10, 1974

8. Fan F-C, Chen RYZ, Schuessler GB, Chien S: Comparison between the 133Xe clearance method and the microsphere technique in cerebral blood flow determinations in the dog. Circ Res 44:653-659, 1979

9. Fatouros PP, Wist AO, Kishore PRS, DeWitt DS, Hall JA, Keenan RL et al: Xenon/computed tomography cerebral blood flow measurements: Methods and accuracy. Invest Radiol 22:705-712, 1987

*10. Fayad PB, Brass LM: Single photon emission computed tomography in cerebrovascular disease. Stroke 22:950-954, 1991

*11. Hansen M, Jakobsen M, Enevoldsen E, Egede F: Problems in cerebral blood flow calculation using xenon-133 in patients with pulmonary diseases. Stroke 21:745-750, 1990

*12. Hartmann A, Dettmers C, Schuier FJ, Wassmann HD, Schumacher HW: Effect of stable xenon on regional cerebral blood flow and the electroencephalogram on normal volunteers. Stroke 22:182-189, 1991

13. Heiss W-D: What method to choose for quantification of cerebral blood flow in experimental research (Editorial). Stroke 12:555-557, 1981

14. Heiss W-D, Traupe H: Comparison between hydrogen clearance and microsphere technique for rCBF measurement. Stroke 12:161-167,1981

15. Heistad DD, Marcus ML, Mueller S: Measurement of cerebral blood flow with microspheres. Arch Neurol 34:657-659, 1977

16. Herold S, Brown MM, Frackowiak RSJ, Mansfield AO, Thomas DJ, Marshall J: Assessment of cerebral hemodynamic reserve: Correlation between PET parameters and CO2 reactivity measured by the intravenous 133xenon injection technique. J Neurol Neurosurg Psychiat 51:1045-1050, 1988

17. Hoedt-Rasmussen K: Regional cerebral blood flow: The intra-arterial injection method. Acta Neurol Scand (Suppl 27) 43:1-79, 1967

18. Ingvar DH, Lassen NA: Atraumatic two-dimensional rCBF measurements using stationary detectors and inhalation or intravenous administration of 133-xenon (Editorial). J Cereb Blood Flow Metab 2:271-274, 1982

19. Jabre A, Symon L, Richards PG, Redmond S: Mean hemispheral and cerebral blood changes after craniotomy: Significance and prognostic value. Acta Neurochir 78:13-20, 1985

20. Kety SS: Study of the cerebral circulation by means of inert diffusible tracers. Prog Brain Res 35:375-385, 1972

21. Kety SS, Schmidt CF: The determination of cerebral blood flow in man by the use of nitrous oxide in low concentrations. Am J Physiol 143:53-66, 1945

22. Kety SS, Schmidt CF: The nitrous oxide method for the quantitative determination of cerebral blood flow in man: Theory, procedure and normal values. J Clin Invest 27:476-483, 1948

23. Lacombe P, Meric P, Seylaz J: Validity of cerebral blood flow measurements obtained with quantitative tracer techniques. Brain Res Rev 2:105-169, 1980

24. Lammertsma AA, Martin AJ, Friston KJ, Jones T: In vivo measurement of the volume of distribution of water in cerebral grey matter: Effects on the calculation of regional cerebral blood flow. J Cereb Blood Flow Metab 12:291-295, 1992

*25. Lassen NA, Blasberg RG: Technetium-99m-d,l-HM-PAO. The development of a new class of 99m Tc-labeled tracers: An overview. J Cereb Blood Flow Metab 8:S1-S3, 1988

26. Lassen NA, Lane MH: Validity of internal jugular blood for study of cerebral blood flow and metabolism. J Appl Physiol 16:313-320, 1961

*27. Madsen PL, Holm S, Herning M, Lassen NA: Average blood flow and oxygen uptake in the human brain during resting wakefulness: a critical appraisal of the Kety-Schmidt technique. J Cereb Blood Flow Metab 13:646-655, 1993

*28. Mallett BL, Veall N: The measurement of regional cerebral clearance rates in man using xenon-133 inhalation and extracranial recording. Clin Sci 29:179-191, 1965

29. Marcus ML, Bischof CJ, Heistad DD: Comparison of microsphere and xenon-133 clearance method in measuring skeletal muscle and cerebral blood flow. Circ Res 48:748-761, 1981

*30. Marion DW, Bouma GJ: The use of stable xenon-enhanced computed tomographic studies of cerebral blood flow to define changes in cerebral carbon dioxide vasoresponsivity caused by a severe head injury. Neurosurgery 29:869-873, 1991

*31. Navari RM, Wei EP, Kontos HA, Patterson JL Jr: Comparison of the open skull and cranial window preparations in the study of the cerebral microcirculation. Microvasc Res 16:304-315, 1978

32. Obrist WD, Thompson HK Jr, Wang HS, Wilkinson WE: Regional cerebral blood flow estimated by 133 xenon inhalation. Stroke 6:245-256, 1975

*33. Obrist WD, Wilkinson WE: Regional cerebral blood flow measurement in humans by xenon133 clearance. Cerebrovasc Brain Metab Rev 2:283-327, 1990

34. Ogawa A, Sakurai Y, Suzuki J: Continuous measurement of regional cerebral blood flow using krypton-81m. Stroke 14:623-627,1983

35. Olesen J, Paulson OB, Lassen NA: Regional cerebral blood flow in man determined by the initial slope of the clearance of intra-arterially injected 133 Xe: Theory of the method, normal values, error of measurement, correction for remaining radioactivity, relation to other flow parameters and response to PaCO2 changes. Stroke 2:519-540, 1971

36. Patlak CS, Blasberg RG, Fenstermacher JD: An evaluation of errors in the determination of blood flow by the indicator fractionation and tissue equilibration (Kety) methods. J Cereb Blood Flow Metab 4:47-60, 1984

37. Powers WJ, Raichle ME: Positron emission tomography and its application to the study of cerebrovascular disease in man (Review). Stroke 16:361-376, 1985

38. Quarles RP, Mintun MA, Larson KB, Markham J, MacLeod AM, Raichle ME: Measurement of regional cerebral blood flow with positron emission tomography: A comparison of (15O) Water to (11C) Butanol with distributed-parameter and compartmental models. J Cereb Blood Flow Metab 13:733-747, 1993

39. Reivich M, Jehle J, Sokoloff L, Kety SS: Measurement of regional cerebral blood flow with antipyrine-14C in awake cats. J Appl Physiol 27:296-300, 1969

40. Reivich M, Obrist W, Slater R, Greenberg J, Goldberg HI: A comparison of the Xe 133 intracarotid injection and inhalation techniques for measuring regional cerebral blood flow, blood flow and metabolism in the brain. Edited by Harper AM, Jennet WB, Miller D, Rowan J. Edinburgh/London/New York, Churchill Livingstone, 1975, pp 8.3-8.6

41. Sakurada O, Kennedy C, Jehle J, Brown JD, Carbin GL, Sokoloff L: Measurement of local cerebral blood flow with iodo (14C) antipyrine. Am J Physiol 234:H59-H66, 1978

42. Schroeder T, Holstein P, Lassen NA, Engell HC: Measurement of cerebral blood flow by intravenous Xenon-133 technique and a mobile system: Reproducibility using the Obrist model compared to total curve analysis. Neurol Res 8:237-242, 1986

43. Schuier FJ, Jones SC, Fedora T, Reivich M: (14C) iodoantipyrine and microsphere blood flow estimates in cat brain. Am J Physiol 253: H1289-H1297, 1987

44. Soma Y, Hirotani T, Yozu R, Onoguchi K, Misumi T, Kawada K et al: A clinical study of cerebral circulation during extracorporal circulation. J Thorac Cardiovasc Surg 97:187-193, 1989

45. Steiger HJ, Aaslid R, Stooss R: Dynamic computed tomographic imaging of regional cerebral blood flow and blood volume. A clinical pilot study. Stroke 24:591-597, 1993

46. Tomida S, Wagner HG, Klatzo I, Nowak TS Jr: Effect of acute electrode placement on regional CBF in the gerbil: A comparison of blood flow measured by hydrogen clearance, (3H) nicotine, and (14C) iodoantipyrine technique. J Cereb Blood Flow Metab 9: 79-86, 1989

47. Van Uitert RL, Sage JI, Levy DE, Duffy TE: Comparison of radio-labeled butanol and iodoantipyrine as cerebral blood flow markers. Brain Res 222:365-372, 1981

*48. Verhaegen MJ, Todd MM, Warner DS, James B, Weeks JB: The role of electrode size on the incidence of spreading depression and on cortical cerebral blood flow as measured by H2 clearance. J Cereb Blood Flow Metab 12:230-237, 1992

49. Warach S, Gur RC, Gur RE, Skolnick BE, Obrist WD, Reivich M: The reproducibility of the 133 Xe inhalation technique in resting studies: Task order and sex related effects in healthy young adults. J Cereb Blood Flow Metab 7:702-708, 1987

*50. Williams JL, Jones SC, Page RB, Bryan RM JR: Vascular responses of choroid plexus during hypercapnia in rats. Am J Physiol 260:R1066-R1077, 1991

*51. Wyper DJ, Lennox GA, Rowan JO: Two minute slope inhalation technique for cerebral blood flow measurement in man: 2. Clinical appraisal. J Neurol Neurosurg Psych 39:147-151, 1976

*52. Yao L, Nemoto EM, Boston JR, Darby JM, Yonas H: Effect of 80% Xe on whole brain blood flow and metabolism in awake monkeys. J Neurosurg Anesth 4:268-271, 1992

*53. Yonas H, Darby JM, Marks EC, Durham SR, Maxwell C: CBF measured by Xe-CT: Approach to analysis and normal values. J Cereb Blood Flow Metab 1:716-725, 1991

54. Young W: H2 clearance measurement of blood flow: A review of technique and polarographic principles. Stroke 11:552-564, 1980

55. Young WL, Prohovnik I, Ornstein E, Lucas LR, Wang TST, Correll JW et al: Rapid monitoring of intraoperative cerebral blood flow using 133 Xe. J Cereb Blood Flow Metab 8:691-696, 1988

56. Young WL, Prohovnik I, Schroeder T, Correll JW, Ostapkovich N: Intraoperative 133 Xe cerebral blood flow measurements by intravenous versus intracarotid methods. Anesthesiology 73:637-643, 1990