ArenillasJFRoviraAMolinaCA: Prediction of early neurological deterioration using diffusion- and perfusion-weighted imaging in hyperacute middle cerebral artery ischemic stroke. Stroke33: 2197–203, 2002.
2.
AtlasSWDuboisssPSingerMB: Diffusion measurements in intracranial hematomas: Implications for MR imaging of acute stroke. Am J Neuroradiol21: 1190–1194, 2000.
3.
BaronJC: Perfusion Thresholds in Human Cerebral Ischemia: Historical Perspective and Therapeutic Implications. Cerebrovasc Dis11: 2–8, 2001.
4.
BernardingJBraunJKoenneckeHC: Diffusion and Perfusion-weighted MR Imaging in a Patient with Acute Demyelinating Encephalomyelitis (ADEM). J Magn Reson Imaging15: 96–100, 2002.
5.
BozzaoAFlorisRBavieraME: Diffusion and Perfusion MR Imaging in cases of Alzheimer Disease: Correlations with Cortical Atrophy and Lesion Load. Am J Neuroradiol22: 1030–1036, 2001.
6.
BrunbergJAChenevertTLMcKeeverPE: In vivo MR determination of water diffusion coefficients and diffusion anisotropy: Correlation with structural alteration in gliomas of the cerebral hemispheres. Am J Neuroradiol16: 361–371, 1995.
7.
BryanRLevyLWhitlowW: Diagnosis of acute cerebral infarction: Comparison of CT and MR imaging. AJNR Am J Neuroradiol12: 611–620, 1991.
8.
BurdetteJHElsterAD: Diffusion-weighted imaging of cerebral infarctions: Are higher B values better?J Comput Assist Tomogr.26: 622–7, 2002.
9.
CaramiaFPantanoPDi LeggeS: A longitudinal study of MR diffusion changes in normal appearing white matter of patients with early multiple sclerosis. Magn Reson Imaging.20: 383–8, 2002.
10.
CarhuapomaJRBarkerPBHanleyDF: Human brain hemorrhage: Quantification of perihematoma edema by use of diffusion-weighted MR imaging. AJNR Am J Neuroradiol.23: 1322–6, 2002.
11.
CastilloMSmithJKKwockkkL: Apparent Diffusion Coefficients in the Evaluation of High-Grade Cerebral Gliomas. Am J Neuroradiol.22: 60–64, 2001.
12.
CowanFMPennockJMHanrahanJD: Early detection of cerebral infarction and hypoxic ischemic encephalopathy in neonates using diffusion-weighted magnetic resonance imaging. Neuropediatrics25: 172–175, 1994.
13.
DesprechinsBStanikTKoertsG: Use of Diffusion-Weighted MR Imaging in differential diagnosis between intracerebral necrotic tumors and cerebral abscesses. Am J Neuroradiol.20: 1252–1257, 1999.
14.
EbisuTNaruseSHorikawaY: Discrimination between different types of white matter edema with diffusion-weighted MR imaging. J Magn Reson Imaging3: 863–868, 1993.
15.
EichlerFSItohRBarkerPB: Proton MR spectroscopic and diffusion tensor brain MR imaging in X-linked adrenoleukodystrophy: Initial experience. Radiology225: 245–52, 2002.
16.
El-KoussyMLovbladKOKieferC: Apparent diffusion coefficient mapping of infarcted tissue and the ischaemic penumbra in acute stroke. Neuroradiology44: 812–818, 2002.
17.
FiebachJBSchellingerPDJansenO: CT and diffusion-weighted MR imaging in randomized order: Diffusion-weighted imaging results in higher accuracy and lower interrater variability in the diagnosis of hyperacute ischemic stroke. Stroke33: 2206–10, 2002.
FilippiCGEdgarMAUluAM: Appearance of Meningiomas on Diffusion-weighted Images: Correlating Diffusion Constants with Histopathologic Findings. Am J Neuroradiol22: 65–72, 2001.
20.
FinkenstaedtMSzudraAZerrI: MR imaging of Creutzfeldt-Jakob disease. Radiology199: 793–798, 1996.
21.
GauvainKMMcKinstryRCMukherjeeP: Evaluating Pediatric Brain Tumor Cellularity with Diffusion-Tensor Imaging. Am J Radiol, August 449–451, 2001.
22.
GonzalezRGSchaeferPWBuonannoFS: Diffusion weighted MR imaging: Diagnostic accuracy in patients imaged within 6 hours of stroke symptom onset. Radiology210: 155–162, 1999.
23.
GuoACCummingsTJDashRC: Lymphomas and High-Grade Astrocytomas: Comparison of Water Diffusibility and Histologic Characteristics. Radiology. July224: 177–183, 2002.
24.
GuzmanRBarthALovbladKO: Use of diffusion-weighted magnetic resonance imaging in differentiating purulent brain processes from cystic brain tumors. J Neurosurg97: 1101–1107, 2002.
25.
HaselhorstRKapposLBilecenD: Dynamic Susceptibility Contrast MR Imaging of Plaque Development in Multiple Sclerosis: Application of Extended Blood-Brain Barrier Leakage Correction. J of Magn Reson Imaging11: 495–505, 2000.
26.
HeleniussssJSoinneLPerkio: Diffusion-Weighted MR Imaging in Normal Human Brians in Various Age Groups. Am J Neuroradiol23: 194–199, 2002.
27.
KaminogoMIshimaruHMorikawaM: Proton MR spectroscopy and diffusion-weighted MR imaging for the diagnosis of intracranial tuberculomas. Report of two cases. Neurol Res.24: 537–43, 2002.
28.
KellyPJDaumas-DuportCKispertDB: Imaging-based stereotaxic serial biopsies in untreated intracranial neoplasms. J Neurosurg66: 865–874, 1987.
29.
KonoKInoueY: The role of Diffusion-weighted Imaging in Patients with Brain Tumors. Am J Neuroradiol22: 1081–1088, 2001.
30.
KrabbeKGideonPWagnP: MR diffusion imaging of human intracranial tumours. Neuroradiology39: 483–489, 1997.
31.
LaiPHHoJTChenWL: Brain abscess and necrotic brain tumor: Discrimination with proton MR spectroscopy and diffusion-weighted imaging. Am J Neuroradiol.23: 1369–77, 2002.
32.
LamWWMPoonWSMetreweliC: Diffusion MR Imaging in Glioma: Does it have any role in the pre-operation determination of grading of glioma?Clinical Radiology57: 219–225, 2002.
33.
LovbladKLaubachHBaindA: Clinical experience with diffusion weighted MR in patients with acute stroke. Am J Neuroradiol19: 1061–1066, 1998.
34.
MaedaMKawamuraTamagawa: Intravoxel incoherent motion (IVIM) MRI in intracranial, extracranial tumors and cysts. J Comput Assist Tomogr16: 514–518, 1992.
ManzioneJNewman: Diffusion- and Perfusion-Weighted MR Imaging of Dural Sinus Thrombosis. Am J Neuroradiol21: 68–73, 2000.
37.
McKinstryRCMillerJHSnyderAZ, A prospective, longitudinal diffusion tensor imaging study of brain injury in newborns. Neurology24, 59: 824–33, 2002.
38.
MutiMAprileI: Study on the variations of the apparent diffusion coefficient in areas of solid tumor in high grade gliomas. Magn Reson Imaging20: 635–641, 2002.
39.
PaninVYZengGLDefriseM: Diffusion tensor MR imaging of principal directions: A tensor tomography approach. Phys Med Biol.47: 2737–57, 2002.
40.
PhillipsMDZimmermanRA: Diffusion imaging in pediatric hypoxic ischemia injury. Neuroimaging Clin N Am9: 41–52, 1999.
41.
PillaiJJRichardBHAllisonJD: Advanced MR Imaging of Cortical Dysplasia with or without Neoplasm: A report of Two Cases. Am J Neuroradiol23: 1686–1691, 2002.
42.
RotherJSchellingerPDGassA: Effect of intravenous thrombolysis on MRI parameters and functional outcome in acute stroke < 6 hours. Stroke33: 2438–45, 2002.
43.
RoseSEChalkJBGriffinMP: MRI based diffusion and perfusion predictive model to estimate stroke evolution. Magn Reson Imaging19: 1043–1053, 2001.
44.
RoviraARovira-GolsAPedrazaS: Diffusion-Weighted MR Imaging in the Acute Phase of Transient Ischemic Attacks. Am J Neuroradiol23: 77–83, 2002.
45.
SandsonTAFelicianOEdelmanRR: Diffusion-weighted magnetic resonance imaging in Alzheimer disease. Dement Geriatr Cogn Disord, 10: 166–171, 1999.
46.
SchaeferPTievskyAGonzalezR: Echo planar (EP) diffusion weighted imaging (dwi) in diffuse axonal iniury (dai) (abstr). In: Proceedings of the 36th Annual Meeting of the American Society of Neuroradiology. Oak Brook III: American Society of Neuroradiology216, 1998.
47.
SchaeferPWGrantPEGonzalezRG: Diffusion-weighted MR Imaging of the Brain. State of Art. Radiology217: 331–345, 2000.
48.
SchaeferPWHunterGJHeJ: Predicting Cerebral Ischemic Infarct Volume with Diffusion and Perfusion MR Imaging. Am J Neuroradiol23: 1785–17944, Nov/Dec 2002.
49.
SchwartzRMulkernRGudbjartssonH: Diffusion-weighted MR imaging in hypertensive encephalopathy: Clues to pathogenesis. Am J Neuroradiol19: 859–862, 1998.
50.
SchrammPSchellingerPDFiebachJB: Comparison of CT and CT angiography source images with diffusion-weighted imaging in patients with acute stroke within 6 hours after onset. Stroke33: 2426–32, 2002.
SinhaSBastinMWhittleIR, Diffusion Tensor MR Imaging of High-Grade Cerebral Gliomas. Am J Neuroradiol23: 520–527, 2002.
53.
StadnikTWChaskisCMichotteA: Diffusion-weighted MR Imaging of Intracerebral Masses: Comparison with Conventional MR Imaging and Histologic Findings. Am J Neuroradiol22: 969–976, 2001.
54.
StanleyLAhnDJohnsonG: Peritumoral Diffusion Tensor Imaging of High-grade Gliomas and Metastatic Brain Tumors. Am J Neuroradiol24: 937–941, 2003.
55.
SymonLBranstonNM: The concepts of thresholdds of ischaemia in relation to brain structure and function. J Clin Pathol11: 149–154, 1977.
56.
TienRDFelsbergGJFriedmanH: MR imaging of high-grade cerebral gliomas: Value of diffusion-weighted echoplanar pulse sequences. Am J Roentgenol.162: 671–677, 1994.
57.
TievskyPtak TFarkasJ: Investigation of Apparent Coefficient and Diffusion Tensor Anisotropy in Acute and Chronic Multiple Sclerois Lesions. Am J Neuroradiol20: 1491–1499, 1999
58.
TsuiEYChanJHCheungYK: Evaluation of cerebral abscesses by diffusion-weighted MR imaging and MR spectroscopy. Comput Med Imaging Graph.26: 347–51, 2002.
59.
TsuiEYChanJHCheungYK: Tumefactive demyelinating lesions by combined perfusion-weighted and diffusion weighted imaging. Comput Med Imaging Graph.26: 343–346, 2002.
60.
TsurudaJSChewWMMoseleyME: Diffusion-weighted MR imaging of the brain: Value of differentiating between extraaxial cysts and epidermoid tumours. Am J Neuroradiol11: 925–934, 1990.
61.
TuchDSReeseTGWiegellMR: High angular resolution diffusion imaging reveals intravoxel white matter fiber heterogeneity. Magn Reson Med.48: 577–82, 2002.
62.
UlmerSFlemmingKHahnA: Detection of acute cytotoxic changes in progressive neuronal degeneration of childhood with liver disease (Alpers-Huttenlocher syndrome) using diffusion-weighted MRI and MR spectroscopy. J Comput Assist Tomogr.26: 641–6, 2002.
63.
Von dem HagenEAHenkelmanRM: Orientational diffusion reflects fiber structure within a voxel. Magn Reson Med.48: 454–9, 2002.
AprileIMutiMPrincipiM: A Magnetic Resonance comparative study between enhancement, rCBV and ACD in brain glioblastomas. Radiol Med104: 87–91, 2002.
66.
ArenillasJFRoviraAMolinaCA: Prediction of early neurological deterioration using diffusion- and perfusion-weighted imaging in hyperacute middle cerebral artery ischemic strokeStroke33: 2197–203, 2002.
67.
AronenHJGazitIELouisDN: Cerebral blood volume maps of gliomas: Comparison with tumor grade and histologic findings. Radiology191: 41–51, 1994.
BurgerPCVogelFS: The brain: Tumors. In BurgerPCVogelFS, eds. Surgical pathology of the central nervous system and its coverings. New York, NY: Wiley, 1982: 223–266.
70.
CavinessVSMakrisNMontinaroE: Anatomy of stroke, Part II: Volumetric characteristics with implications for the local architecture of the cerebral perfusion system. Stroke33: 2557–64, 2002.
71.
ChaSKnoppEAJohnsonG: Dynamic contrast-enhanced T2-weitghed MR imaging of recurrent malignant gliomas treated with thalidomide and carboplatin. Am J Neuroradiol21: 881–890, 2000.
72.
ChaSLawMJohnsonG: Peritumoral region: Differentiation between primary high-grade neoplasms and solitary metastasis using dynamic contrast-enhanced T2*-weighted echo-planar perfusion MR imaging (abstr.). In: Proceedings of the 38th Annual Meeting of the American Society of Neuroradiology. Atlanta, Ga: American Society of Neuroradiology, 2000: 22.
73.
ChaSPierceSKnoppEA: Dynamiccc contrast-enhanced T2*-weighted MR imaging of tumefactive demyelinating lesions. Am J Neuroradiol22: 1109–1116, 2001.
74.
ChaSKnoppEAJohnsonG: Intracranial Mass Lesions: Dynamic Contrast-enhanced Susceptibility-weighted Echo-planar Perfusion MR Imaging. State of art. Radiology2002: 11–29.
75.
DucreuxDPetit-LacourMCMarsot-DupuchK: MR perfusion imaging in a case of cerebral proliferative angiopathy. Eur Radiol.12: 2717–22, 2002.
76.
ErnstTMChangLWittMD: Cerebral toxoplasmosis and lymphoma in AIDS: Perfusion MR imaging experience in 13 patients. Radiology208: 663–669, 1998.
77.
EssigMWenzFScholdeiR: Dynamic susceptibility contrast-enhanced echo-planar imaging of cerebral gliomas. Effect of contrast medium extravasation. Acta Radiol.43: 354–9, 2002.
78.
FratkinJDWardMMRobertsDW: CT-guided stereotactic biopsy of intracranial lesions: Correlation between core biopsy and aspiration smear. Diagn Cytopathol2: 126–132, 1986
79.
FrazziniVIChaSLuS: Dynamic contrast-enhanced T2*-weighted echo-planar perfusion MR imaging of primary CNS lymphoma and glioblastoma multiforme (abstr.). In: Proceedings of the 37th Annual Meeting of the American Society of Neuroradiology. San Diego, Cal: American Society of Neuroradiology185, 1999.
80.
GiangDWPoduriKREskinTA: Multiple sclerosis masquerading as a mass lesion. Neuroradiology34: 150–154, 1992.
KeirSLWardlawJM: Systematic review of diffusion and perfusion imaging in acute ischemic stroke. Stroke31: 2723–2731, 2000.
83.
KellyPJDaumas-DuportCScheithauerBE: Stereotactic histologic correlations of computed tomography and magnetic resonance imaging defined abnormalities in patients with glial neoplasms. Mayo Clinic Proc62: 450–459, 1987.
LefournierVPeoc'hMUssonY: Magnetic resonance cerebral blood volume maps. Comparison with histologic findings in different types of brain lesions. J Neuroradiol.30: 3–9, 2003.
86.
LinWLeeJMLeeYZ: Temporal relationship between apparent diffusion coefficient and absolute measurements of cerebral blood flow in acute stroke patients. Stroke34: 64–70, 2003.
87.
OstergaardLSorensenAG: High resolution measurement of cerebral blood flow using intravascular tracer bolus passages. II Experimental comparison and preliminary results. Magn Reson Med36: 726–736, 1996.
88.
PetrellaJRProvenzaleJM: MR perfusion imaging of the brain: Techniques and applications. Am J Roentgenol175: 207–220, 2000.
89.
PowersWJZivinJ: Magnetic resonance imaging in acute stroke: Not ready for prime time. Neurology50: 842–843, 1998.
90.
QuencerRM: Advances in imaging of spinal cord injury: Implications for treatment and patient evaluation. Prog Brain Res.137: 3–8, 2002.
91.
RemppKABrixGWenzF: Quantification of regional blood flow and volume with dynamic susceptibility contrast-enhanced MR imaging. Radiology193: 637–641, 1994.
92.
SchaeferPWOzsunarYHeJ: Assessing Tissue Viability with MR Diffusion and Perfusion Imaging. Am J Neuroradiol.24: 436–43, 2003.
93.
SchoenenJDe LevalLReznikM: Gliomatosis cerebri: Clinical, radiological and pathological report of a case with stroke-like onset. Acta Neurol Belg96: 294–300, 1996.
94.
SpagnoliMVGrossmanRIPackerRJ: Magnetic resonance imaging determination of gliomatosis cerebri. Neuroradiology29: 15–18, 1987.
95.
SchellingerPDFiebachJBHackeW: Imaging-based decision making in thrombolytic therapy for ischemic stroke: Present status. Stroke34: 575–83, 2003.
96.
ShinJHLeeHKKwunBD: Using relative cerebral blood flow and volume to evaluate the histopathologic grade of cerebral gliomas: Preliminary results. Am J Roentgenol.179: 783–9, 2002.
97.
SugaharaTKorogiYShigematsuY: Perfusion sensitive MRI of cerebral lymphoma: A preliminary report. J. Comput. Assist Tomogr23: 232–237, 1999.
98.
SugaharaTKorogiYKochiM: Correlation of MR imaging-determined cerebral blood volume maps with histologic and angiographic determination of vascularity of gliomas. Am J Roentgenol.171: 1479–1486, 1998.
99.
SundgrenPCReinstrupPRomnerB: Value of conventional, and diffusion- and perfusion-weighted MRI in the management of patients with unclear cerebral pathology, admitted to the intensive care unit. Neuroradiology44: 674–80, 2002.
100.
SzaboKGassAHennericiMG: Diffusion and perfusion MRI for the assessment of carotid atherosclerosis. Neuroimaging Clin N Am12: 381–90, 2002.
101.
UedaTYuhWTTaokaT: Clinical application of perfusion and diffusion MR imaging in acute ischemic stroke. J Magn Reson Imaging52: 1750–1756, 1999.
YoshiuraTMiharaFKuwabaraY: MR relative cerebral blood flow mapping of Alzheimer disease: Correlation with Tc-99m HMPAO SPECT. Acad Radiol.9: 1383–7, 2002.
104.
WetzelSGChaSLawM: Preoperative assessment of intracranial tumors with perfusion MR and a volumetric interpolated examination: A comparative study with DSA. Am J Neuroradiol.23: 1767–74, 2002.
105.
WillemsJGAlva-WillemsJM: Accuracy of cytologic diagnosis of central nervous system neoplasms in stereotactic biopsy. Acta Cytol28: 243–249, 1984.
106.
WuWCChenCYChungHW: Discrepant MR spectroscopic and perfusion imaging results in a case of malignant transformation of cerebral glioma. Am J Neuroradiol.23: 1775–8, 2002.
107.
ZagzagDMillerDCKleinmannGM: Demyelinating disease versus tumor in surgical neuropathology: Clues to a correct pathological diagnosis. Am J Surg Pathol17: 537–545, 1993.
108.
ZierlerKL: Circulation times and the theory of indicator-dilution methods for determining blood flow and volume. Handbook of Physiology. Baltimore, MD: Williams & Wilkinsik1962: 585–615.