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Magnetic Resonance Scanning and Epilepsy
Magnetic Resonance Scanning and Epilepsy / S.D.Shorvon, D.R.Fish, F.Andermann외편.
Magnetic Resonance Scanning and Epilepsy

Detailed Information

자료유형  
 단행본
ISBN  
0-306-44735-5
UDC  
53.082.7
DDC  
681.2 S999m-23
청구기호  
681.2 S999m
저자명  
F.Andermann외, S.D.Shorvon, D.R.Fish,
서명/저자  
Magnetic Resonance Scanning and Epilepsy / S.D.Shorvon, D.R.Fish, F.Andermann외편.
발행사항  
미국 : Plenum Publishing Corporation, 1994
형태사항  
323p. ; 26cm
총서명  
NATO ASI Series ; 264
내용주기  
1. Mahnetic Resonance Imaging in Epilepsy: The Central Clinical Research Questions S.D.Shorvon 32. The Anatomical Bases of the Epilepsies and MRI: Implications for MRI D.R.Fish 153. Brain Structure in Epilepsy: The Crucial Role of MRI F. Andermann 214. MR Spectroscopy in Epilepsy H.Stefan 295. Mesial Temporal Lobe Structures: Anatomy P.Gloor 336. Magnetic Resonance Imaging of Hippocampal Sclerosis: Reliability of VisualDiagnosis and Implications for Surgical Treatment S.F.Berkovic, A.M.McIntosh,R.M. Kalnins, and P.F. Bladin 377. Volumetric MRI Studies of the Hippocampus M.J. Cook, S.L.Free, D.R. Fish,S.D. Shorvon, K.Straughan, and J.M.Stevens 438. Advances in Morphometric and Volumetric Analysis in Temporal Lobe Epilepsy C.Watson, F. Andermann 479. The Role of MRI volumetric Studies in the Investigation of Patients with Intractable Epilepsy F. Cendes, F. Andermann, P. Gloor, A. Olivier, A. Evans, andT. Peters 5710. The Future Role for MR Imahing in Epilepsy: Morphometry and Volume Analysis P.Schuler and h. Stefan 630011. Quantitative Relaxometry of Hippocampal Sclerosis J.S.Duncan, G.D.Jackson, A.Connelly, R.A. Grunewald, and D.G.Gadian 671112. The Significance of T2 Changes in the Hippocampus P.Tofts 712213. Investigation of Effects of Vigabatrin with Magnetic Resonance Inaging andSpectroscopy In Vivo J.S.Duncan, G.D.Jackson, A.Connelly, R.A.Grunewald, N.E.Preece, N.Van Bruggen, and S.R.Williams 753314. MR of Epilepsy: Three Observations L.C.Meiners, J.Valk, G.H.Jansen,and P.R.Luyten 794415. Cortical Dysplasia and Heterotopias A.J.Barkovich 855516. Cortical Dysgenesis in Adults with Epilepsy A.A.Raymond, M.Cook, D.R.Fish, and S.D.Shorvon 896617. Hemimegalencephaly C.Diebler and O.Dulac 957718. Agenesis of the Corpus Callosum O.Dulac and C.Diebler 998819. The Congenital Bilateral Peri-sylvian Syndrme: Imaging Findings R.Kuzniecky, F.Andermann, R.Guerrini, and the CBPS Multicenter Collaborative Study 1039920. Focal Cortical Dysplasia in Temporal Lobe Epilepsy: The Role of Magnetic Resonance Imaging R.Kuzniecky 1110021. MR in Congenital and Hereditary Metabolic Disorders Associated with Epilepsy F.Vigevano, G.Fariello, A. Bartuli, E.Bertini, C.Dionisi-Vici, and L.Fusco 1171122. MRI in the Delineation of Genetic Metabolic Disorders P.G.Barth and J.Valk 1212223. Minimal Developmental Disturbances in Epilepsy and MRI H.J.Meencke 1273324. Correlation of MRI and EEG S.S.Spencer and D.D.Spencer 1394425. Principles of Stereotaxy Applied to MRI and EEG L.Lemieux 1455526. MRI Stereotacic Placement of Intracranial Electrodes D.D.Spencer, G.McCarthy, M.L.Luby, and S.S. Spencer 1496627. Frameless Stereotaxy: Technical Aspects T.M.Peters, A.C.Evans, and A.Olivier 1557728. Correlation of MRI and MEG K.Abraham-Fuchs, H.Stefan, P.Schuler, J.Uebler, S.Schneider, and G.Naser 1618829. Volumetric Magnetic Resonance Imaging: Impact on Neuropsychological Studies M.Jones-Gotman 1659930. MRI and Intellectual Decline in Epilepsy M.R.Sperling 1690031. MRI and SPECT in Epilepsy Surgery C.R.Jack, Jr., F.W. Sharbrough, and G.D.Cascino 1731132. MR-Directed Stereotactic Resections and Per-operative Screening Using Low-Field MRI D.G.T.Thomas and G.P.Kratimenos 1792233. Non-malignant Tumoural Lesions: G.D.Cascino, C.R.Jack, Jr.F.W.Sharbrough,and P.J.Kelly 1853334. Vascular Anomalies in Epilepsy: MRI Contribution M.Bracchi, M.Casazza, G.B.Bradac,G.Avanzini, G.Broggi, and M.Grisoli 1914435. Magnetic Resonance and Neocortical Epilepsy Atrophies B.Oliver and A.Russi 1955536. Application of Spectroscopy to Epilepsy K.D.Laxer, J.W.Hugg, G.B.Matson,and M.W.Weiner 1996637. Proton MR Spectroscopic Imaging in the Investigation of Patients with Temporal Lobe Epilepsy F.Cendes, F.Andermann, and D.L.Arnold 2037738. Proton MR Spectroscopy in the Evaluation of Mesial Temporal Sclerosis F.Triulzi, A.Falini, and G.Scotti 2098839. The Potential of Proton MR Spectroscopy for Monitoring: Pathological Alterations of Human Cerebral Metabolism In Vivo H.Bruhn, K.D.Merboldt, W.Frhm.and J.Frahm 2159940. Quantitative Proton MR Spectroscopy in Epilepsy O.Henriksen, P.Christiansen, H.Larsson, and M.Stubgaard 2190041. Image-Guided Proton MR Spectroscopy in Epilepsy P.J.Cozzone, J.Vion-Dury,S.Confort-Gouny, F.Nicoli, and B.Chabrol 2251142. Techniques for Localisation and Signal Improvement in In Vivo Proton and Phosphorus MR Spectroscopy R.Sauter, M.Schneider, K.Wicklow, and H.Kolem 2312243. Proton Observation of¹³ C-Labelled Metabolites P.G.Morris, R.S.Badar-Goffer, M.J.W.Prior, and H.S. Bachelard 2353344. Use of Combined¹³ C-¹9, F-and³¹P-MR Spectroscopy in Research on BrainMetabolism H.S.Bachelard, R.S.Badar-Goffer,O.Ben-Yoseph,and P.G.Morris 2414445. Malignant Tumoural Lesions Investigated by MRS W.Semmler,¹.² P.Bachert,¹ and G.van Kaick¹ 2495546. Analysis of Cortical Patterns M.J.Cook, S.L.Free, D.R.Fish, S.D.Shorvon,K.Straughan, and J.M.Stevens 2556647. Digital Image Processing for Epilepsy S.L.Free,K.Straughan, M.J.Cook, S.D.Shorvon, D.R.Fish, and J.M.Stevens 2597748. An MRI-Based Probabilistic Atlas of Neuroanatomy A.C.Evans, M.Kamber, D.L.Collins,and D.MacDonald 2638849. Other Methods: Functional Imaaging, Magnetisation Transfer, and RelaxationTimes Paul Tofts 2759950. MR Imaging of Diffusion J.V.Hajnal¹ and G.M Bydder² 2810051. Fast Imaging and Serial Scanning R.Bowtell, R.J.Coxon, J.Firth, P.A.Gowland, P.Gibbs, and P.Mansfield. 2871152. NMR Studies of Brain Activation J.W.Prichard 2912253. Differential Diagnosis of Human Intracranial Tumors In Vivo Using ¹H MR Spectroscopic Imaging and Feature Space for Spectral Pattern Recognition Mark C.Preul, D.Louis Collins, and Douglas L. Arnold 29933
가격  
₩147720
Control Number  
gtec:8285

MARC

 008021021s1994        us                        000a    eng
■020    ▼a0-306-44735-5
■0801  ▼a53.082.7
■082    ▼a681.2▼bS999m▼223
■090    ▼a681.2▼bS999m
■1000  ▼aF.Andermann외,  S.D.Shorvon,  D.R.Fish,
■24510▼aMagnetic  Resonance  Scanning  and  Epilepsy▼dS.D.Shorvon,  D.R.Fish,  F.Andermann외편.
■260    ▼a미국▼bPlenum  Publishing  Corporation▼c1994
■300    ▼a323p.▼c26cm
■44000▼aNATO  ASI  Series▼v264
■505    ▼a1.  Mahnetic  Resonance  Imaging  in  Epilepsy:  The  Central  Clinical  Research  Questions▼bS.D.Shorvon▼c3▼a2.  The  Anatomical  Bases  of  the  Epilepsies  and  MRI:  Implications  for  MRI▼bD.R.Fish▼c15▼a3.  Brain  Structure  in  Epilepsy:  The  Crucial  Role  of  MRI▼bF.  Andermann▼c21▼a4.  MR  Spectroscopy  in  Epilepsy▼bH.Stefan▼c29▼a5.  Mesial  Temporal  Lobe  Structures:  Anatomy▼bP.Gloor▼c33▼a6.  Magnetic  Resonance  Imaging  of  Hippocampal  Sclerosis:  Reliability  of  VisualDiagnosis  and  Implications  for  Surgical  Treatment▼bS.F.Berkovic,  A.M.McIntosh,R.M.  Kalnins,  and  P.F.  Bladin▼c37▼a7.  Volumetric  MRI  Studies  of  the  Hippocampus▼bM.J.  Cook,  S.L.Free,  D.R.  Fish,S.D.  Shorvon,  K.Straughan,  and  J.M.Stevens▼c43▼a8.  Advances  in  Morphometric  and  Volumetric  Analysis  in  Temporal  Lobe  Epilepsy▼bC.Watson,  F.  Andermann▼c47▼a9.  The  Role  of  MRI  volumetric  Studies  in  the  Investigation  of  Patients  with  Intractable  Epilepsy▼bF.  Cendes,  F.  Andermann,  P.  Gloor,  A.  Olivier,  A.  Evans,  andT.  Peters▼c57▼a10.  The  Future  Role  for  MR  Imahing  in  Epilepsy:  Morphometry  and  Volume  Analysis▼bP.Schuler  and  h.  Stefan▼c6300▼a11.  Quantitative  Relaxometry  of  Hippocampal  Sclerosis▼bJ.S.Duncan,  G.D.Jackson,  A.Connelly,  R.A.  Grunewald,  and  D.G.Gadian▼c6711▼a12.  The  Significance  of  T2  Changes  in  the  Hippocampus▼bP.Tofts▼c7122▼a13.  Investigation  of  Effects  of  Vigabatrin  with  Magnetic  Resonance  Inaging  andSpectroscopy  In  Vivo▼bJ.S.Duncan,  G.D.Jackson,  A.Connelly,  R.A.Grunewald,  N.E.Preece,  N.Van  Bruggen,  and  S.R.Williams▼c7533▼a14.  MR  of  Epilepsy:  Three  Observations▼bL.C.Meiners,  J.Valk,  G.H.Jansen,and  P.R.Luyten▼c7944▼a15.  Cortical  Dysplasia  and  Heterotopias▼bA.J.Barkovich▼c8555▼a16.  Cortical  Dysgenesis  in  Adults  with  Epilepsy▼bA.A.Raymond,  M.Cook,  D.R.Fish,  and  S.D.Shorvon▼c8966▼a17.  Hemimegalencephaly▼bC.Diebler  and  O.Dulac▼c9577▼a18.  Agenesis  of  the  Corpus  Callosum▼bO.Dulac  and  C.Diebler▼c9988▼a19.  The  Congenital  Bilateral  Peri-sylvian  Syndrme:  Imaging  Findings▼bR.Kuzniecky,  F.Andermann,  R.Guerrini,  and  the  CBPS  Multicenter  Collaborative  Study▼c10399▼a20.  Focal  Cortical  Dysplasia  in  Temporal  Lobe  Epilepsy:  The  Role  of  Magnetic  Resonance  Imaging▼bR.Kuzniecky▼c11100▼a21.  MR  in  Congenital  and  Hereditary  Metabolic  Disorders  Associated  with  Epilepsy▼bF.Vigevano,  G.Fariello,  A.  Bartuli,  E.Bertini,  C.Dionisi-Vici,  and  L.Fusco▼c11711▼a22.  MRI  in  the  Delineation  of  Genetic  Metabolic  Disorders▼bP.G.Barth  and  J.Valk▼c12122▼a23.  Minimal  Developmental  Disturbances  in  Epilepsy  and  MRI▼bH.J.Meencke▼c12733▼a24.  Correlation  of  MRI  and  EEG▼bS.S.Spencer  and  D.D.Spencer▼c13944▼a25.  Principles  of  Stereotaxy  Applied  to  MRI  and  EEG▼bL.Lemieux▼c14555▼a26.  MRI  Stereotacic  Placement  of  Intracranial  Electrodes▼bD.D.Spencer,  G.McCarthy,  M.L.Luby,  and  S.S.  Spencer▼c14966▼a27.  Frameless  Stereotaxy:  Technical  Aspects▼bT.M.Peters,  A.C.Evans,  and  A.Olivier▼c15577▼a28.  Correlation  of  MRI  and  MEG▼bK.Abraham-Fuchs,  H.Stefan,  P.Schuler,  J.Uebler,  S.Schneider,  and  G.Naser▼c16188▼a29.  Volumetric  Magnetic  Resonance  Imaging:  Impact  on  Neuropsychological  Studies▼bM.Jones-Gotman▼c16599▼a30.  MRI  and  Intellectual  Decline  in  Epilepsy▼bM.R.Sperling▼c16900▼a31.  MRI  and  SPECT  in  Epilepsy  Surgery▼bC.R.Jack,  Jr.,  F.W.  Sharbrough,  and  G.D.Cascino▼c17311▼a32.  MR-Directed  Stereotactic  Resections  and  Per-operative  Screening  Using  Low-Field  MRI▼bD.G.T.Thomas  and  G.P.Kratimenos▼c17922▼a33.  Non-malignant  Tumoural  Lesions:▼bG.D.Cascino,  C.R.Jack,  Jr.F.W.Sharbrough,and  P.J.Kelly▼c18533▼a34.  Vascular  Anomalies  in  Epilepsy:  MRI  Contribution▼bM.Bracchi,  M.Casazza,  G.B.Bradac,G.Avanzini,  G.Broggi,  and  M.Grisoli▼c19144▼a35.  Magnetic  Resonance  and  Neocortical  Epilepsy  Atrophies▼bB.Oliver  and  A.Russi▼c19555▼a36.  Application  of  Spectroscopy  to  Epilepsy▼bK.D.Laxer,  J.W.Hugg,  G.B.Matson,and  M.W.Weiner▼c19966▼a37.  Proton  MR  Spectroscopic  Imaging  in  the  Investigation  of  Patients  with  Temporal  Lobe  Epilepsy▼bF.Cendes,  F.Andermann,  and  D.L.Arnold▼c20377▼a38.  Proton  MR  Spectroscopy  in  the  Evaluation  of  Mesial  Temporal  Sclerosis▼bF.Triulzi,  A.Falini,  and  G.Scotti▼c20988▼a39.  The  Potential  of  Proton  MR  Spectroscopy  for  Monitoring:  Pathological  Alterations  of  Human  Cerebral  Metabolism  In  Vivo▼bH.Bruhn,  K.D.Merboldt,  W.Frhm.and  J.Frahm▼c21599▼a40.  Quantitative  Proton  MR  Spectroscopy  in  Epilepsy▼bO.Henriksen,  P.Christiansen,  H.Larsson,  and  M.Stubgaard▼c21900▼a41.  Image-Guided  Proton  MR  Spectroscopy  in  Epilepsy▼bP.J.Cozzone,  J.Vion-Dury,S.Confort-Gouny,  F.Nicoli,  and  B.Chabrol▼c22511▼a42.  Techniques  for  Localisation  and  Signal  Improvement  in  In  Vivo  Proton  and  Phosphorus  MR  Spectroscopy▼bR.Sauter,  M.Schneider,  K.Wicklow,  and  H.Kolem▼c23122▼a43.  Proton  Observation  of¹³  C-Labelled  Metabolites▼bP.G.Morris,  R.S.Badar-Goffer,  M.J.W.Prior,  and  H.S.  Bachelard▼c23533▼a44.  Use  of  Combined¹³  C-¹9,  F-and³¹P-MR  Spectroscopy  in  Research  on  BrainMetabolism▼bH.S.Bachelard,  R.S.Badar-Goffer,O.Ben-Yoseph,and  P.G.Morris▼c24144▼a45.  Malignant  Tumoural  Lesions  Investigated  by  MRS▼bW.Semmler,¹.²  P.Bachert,¹  and  G.van  Kaick¹▼c24955▼a46.  Analysis  of  Cortical  Patterns▼bM.J.Cook,  S.L.Free,  D.R.Fish,  S.D.Shorvon,K.Straughan,  and  J.M.Stevens▼c25566▼a47.  Digital  Image  Processing  for  Epilepsy▼bS.L.Free,K.Straughan,  M.J.Cook,  S.D.Shorvon,  D.R.Fish,  and  J.M.Stevens▼c25977▼a48.  An  MRI-Based  Probabilistic  Atlas  of  Neuroanatomy▼bA.C.Evans,  M.Kamber,  D.L.Collins,and  D.MacDonald▼c26388▼a49.  Other  Methods:  Functional  Imaaging,  Magnetisation  Transfer,  and  RelaxationTimes▼bPaul  Tofts▼c27599▼a50.  MR  Imaging  of  Diffusion▼bJ.V.Hajnal¹  and  G.M  Bydder²▼c28100▼a51.  Fast  Imaging  and  Serial  Scanning▼bR.Bowtell,  R.J.Coxon,  J.Firth,  P.A.Gowland,  P.Gibbs,  and  P.Mansfield.▼c28711▼a52.  NMR  Studies  of  Brain  Activation▼bJ.W.Prichard▼c29122▼a53.  Differential  Diagnosis  of  Human  Intracranial  Tumors  In  Vivo  Using  ¹H  MR  Spectroscopic  Imaging  and  Feature  Space  for  Spectral  Pattern  Recognition▼bMark  C.Preul,  D.Louis  Collins,  and  Douglas  L.  Arnold▼c29933
■950    ▼b₩147720

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