Iver Arne Langmoen
- Professor; MD, PhD
- +47 23 07 37 96
Publications 2023
Functional and Molecular Heterogeneity in Glioma Stem Cells Derived from Multiregional Sampling
Cancers (Basel), 15 (24)
DOI 10.3390/cancers15245826, PubMed 38136371
Publications 2022
Functional temozolomide sensitivity testing of patient-specific glioblastoma stem cell cultures is predictive of clinical outcome
Transl Oncol, 26, 101535
DOI 10.1016/j.tranon.2022.101535, PubMed 36115076
Publications 2021
Intraoperative DNA methylation classification of brain tumors impacts neurosurgical strategy
Neurooncol Adv, 3 (1), vdab149
DOI 10.1093/noajnl/vdab149, PubMed 34729487
Real-world validity of randomized controlled phase III trials in newly diagnosed glioblastoma: to whom do the results of the trials apply?
Neurooncol Adv, 3 (1), vdab008
DOI 10.1093/noajnl/vdab008, PubMed 33665615
Publications 2020
A Small-Molecule Tankyrase Inhibitor Reduces Glioma Stem Cell Proliferation and Sphere Formation
Cancers (Basel), 12 (6)
DOI 10.3390/cancers12061630, PubMed 32575464
Publications 2019
Feasibility study of using high-throughput drug sensitivity testing to target recurrent glioblastoma stem cells for individualized treatment
Clin Transl Med, 8 (1), 33
DOI 10.1186/s40169-019-0253-6, PubMed 31889236
Intertumoral heterogeneity in patient-specific drug sensitivities in treatment-naïve glioblastoma
BMC Cancer, 19 (1), 628
DOI 10.1186/s12885-019-5861-4, PubMed 31238897
The efficacy of a coordinated pharmacological blockade in glioblastoma stem cells with nine repurposed drugs using the CUSP9 strategy
J Cancer Res Clin Oncol, 145 (6), 1495-1507
DOI 10.1007/s00432-019-02920-4, PubMed 31028540
Publications 2018
Phenotypic and Expressional Heterogeneity in the Invasive Glioma Cells
Transl Oncol, 12 (1), 122-133
DOI 10.1016/j.tranon.2018.09.014, PubMed 30292065
Minimally Invasive Microsurgical Resection of Primary, Intradural Spinal Tumors is Feasible and Safe: A Consecutive Series of 83 Patients
Neurosurgery, 82 (3), 365-371
DOI 10.1093/neuros/nyx253, PubMed 29992282
Patterns of Invasive Growth in Malignant Gliomas-The Hippocampus Emerges as an Invasion-Spared Brain Region
Neoplasia, 20 (7), 643-656
DOI 10.1016/j.neo.2018.04.001, PubMed 29793116
The effect of ICP monitoring in severe traumatic brain injury: a propensity score-weighted and adjusted regression approach
J Neurosurg, 131 (6), 1896-1904
DOI 10.3171/2018.7.JNS18270, PubMed 30579278
Publications 2016
Time-lapse phenotyping of invasive glioma cells ex vivo reveals subtype-specific movement patterns guided by tumor core signaling
Exp Cell Res, 349 (2), 199-213
DOI 10.1016/j.yexcr.2016.08.001, PubMed 27515001
Short-Term Differentiation of Glioblastoma Stem Cells Induces Hypoxia Tolerance
Neurochem Res, 41 (7), 1545-58
DOI 10.1007/s11064-016-1868-2, PubMed 26915110
Publications 2015
The Long-term Outcome After Resection of Intraspinal Nerve Sheath Tumors: Report of 131 Consecutive Cases
Neurosurgery, 77 (4), 585-92; discussion 592-3
DOI 10.1227/NEU.0000000000000890, PubMed 26191976
Targeting PBK/TOPK decreases growth and survival of glioma initiating cells in vitro and attenuates tumor growth in vivo
Mol Cancer, 14, 121
DOI 10.1186/s12943-015-0398-x, PubMed 26081429
Wnt inhibition is dysregulated in gliomas and its re-establishment inhibits proliferation and tumor sphere formation
Exp Cell Res, 340 (1), 53-61
DOI 10.1016/j.yexcr.2015.12.010, PubMed 26712519
Knockdown of NAT12/NAA30 reduces tumorigenic features of glioblastoma-initiating cells
Mol Cancer, 14, 160
DOI 10.1186/s12943-015-0432-z, PubMed 26292663
The impact of blood ethanol concentration on the classification of head injury severity in traumatic brain injury
Brain Inj, 29 (13-14), 1648-53
DOI 10.3109/02699052.2015.1075154, PubMed 26480239
Combined expressional analysis, bioinformatics and targeted proteomics identify new potential therapeutic targets in glioblastoma stem cells
Oncotarget, 6 (28), 26192-215
DOI 10.18632/oncotarget.4613, PubMed 26295306
Publications 2014
Recruited brain tumor-derived mesenchymal stem cells contribute to brain tumor progression
Stem Cells, 32 (5), 1110-23
DOI 10.1002/stem.1614, PubMed 24302539
Transcriptional profiling of adult neural stem-like cells from the human brain
PLoS One, 9 (12), e114739
DOI 10.1371/journal.pone.0114739, PubMed 25514637
Publications 2013
Cerebral revascularization for skull base tumors
World Neurosurg, 82 (5), 575-6
DOI 10.1016/j.wneu.2013.03.052, PubMed 23541748
EGF signalling and rapamycin-mediated mTOR inhibition in glioblastoma multiforme evaluated by phospho-specific flow cytometry
J Neurooncol, 112 (1), 49-57
DOI 10.1007/s11060-012-1035-9, PubMed 23299461
Inhibition of tumor formation and redirected differentiation of glioblastoma cells in a xenotypic embryonic environment
Dev Dyn, 242 (9), 1078-93
DOI 10.1002/dvdy.24001, PubMed 23780720
Expansion of multipotent stem cells from the adult human brain
PLoS One, 8 (8), e71334
DOI 10.1371/journal.pone.0071334, PubMed 23967194
Comparison of glioma stem cells to neural stem cells from the adult human brain identifies dysregulated Wnt- signaling and a fingerprint associated with clinical outcome
Exp Cell Res, 319 (14), 2230-43
DOI 10.1016/j.yexcr.2013.06.004, PubMed 23791939
Therapeutic vaccination against autologous cancer stem cells with mRNA-transfected dendritic cells in patients with glioblastoma
Cancer Immunol Immunother, 62 (9), 1499-509
DOI 10.1007/s00262-013-1453-3, PubMed 23817721
Publications 2012
Evaluation of intracellular labeling with micron-sized particles of iron oxide (MPIOs) as a general tool for in vitro and in vivo tracking of human stem and progenitor cells
Cell Transplant, 21 (8), 1743-59
DOI 10.3727/096368911X627598, PubMed 22490338
Aqp 9 and brain tumour stem cells
ScientificWorldJournal, 2012, 915176
DOI 10.1100/2012/915176, PubMed 22262958
[Stem cell research--new hope?]
Tidsskr Nor Laegeforen, 132 (23-24), 2584
DOI 10.4045/tidsskr.12.1324, PubMed 23338066
Aneurysm rupture--does the weather matter?
World Neurosurg, 79 (1), 62-3
DOI 10.1016/j.wneu.2012.07.018, PubMed 22858847
Publications 2011
Neurosurgeon of the Year
World Neurosurg., 75 (2), 196
DOI 10.1016/j.wneu.2011.03.012
The brain-computer interface
World Neurosurg, 78 (6), 573-5
DOI 10.1016/j.wneu.2011.10.021, PubMed 22120219
Surgical mortality at 30 days and complications leading to recraniotomy in 2630 consecutive craniotomies for intracranial tumors
Neurosurgery, 68 (5), 1259-68; discussion 1268-9
DOI 10.1227/NEU.0b013e31820c0441, PubMed 21273920
Predifferentiated brain-derived adult human progenitor cells migrate toward ischemia after transplantation to the adult rat brain
Neurosurgery, 68 (1), 213-22; discussion 222
DOI 10.1227/NEU.0b013e3181fd2c11, PubMed 21099718
External validation of a prognostic model for early mortality after traumatic brain injury
J Trauma, 70 (4), E56-61
DOI 10.1097/TA.0b013e3181e80f0a, PubMed 20805767
A comparative study of the structural organization of spheres derived from the adult human subventricular zone and glioblastoma biopsies
Exp Cell Res, 317 (7), 1049-59
DOI 10.1016/j.yexcr.2010.12.022, PubMed 21199649
Publications 2010
Long-term outcome after resection of intraspinal ependymomas: report of 86 consecutive cases
Neurosurgery, 67 (6), 1622-31; discussion 1631
DOI 10.1227/NEU.0b013e3181f96d41, PubMed 21107192
Exploring atypical locations of mammalian neural stem cells: the human filum terminale
Arch Ital Biol, 148 (2), 85-94
PubMed 20830971
Neurosurgery in Oslo
World Neurosurg, 74 (4-5), 402-6
DOI 10.1016/j.wneu.2010.10.029, PubMed 21492578
Brain tumor stem cells maintain overall phenotype and tumorigenicity after in vitro culturing in serum-free conditions
Neuro Oncol, 12 (12), 1220-30
DOI 10.1093/neuonc/noq102, PubMed 20843775
Publications 2009
The biological restoration of central nervous system architecture and function: part 1-foundations and historical landmarks in contemporary stem cell biology
Neurosurgery, 64 (1), 15-39; discussion 34
DOI 10.1227/01.NEU.0000337580.02706.DC, PubMed 19145154
The biological restoration of central nervous system architecture and function: part 2-emergence of the realization of adult neurogenesis
Neurosurgery, 64 (4), 581-60; discussion 600-1
DOI 10.1227/01.NEU.0000343539.15177.D1, PubMed 19349822
Biological restoration of central nervous system architecture and function: part 3-stem cell- and cell-based applications and realities in the biological management of central nervous system disorders: traumatic, vascular, and epilepsy disorders
Neurosurgery, 65 (5), 831-59; discussion 859
DOI 10.1227/01.NEU.0000351721.81175.0B, PubMed 19834396
Isolation of human multipotent neural progenitors from adult filum terminale
Stem Cells Dev, 18 (4), 603-13
DOI 10.1089/scd.2008.0144, PubMed 18652547
Publications 2008
A comparison of epithelial and neural properties in progenitor cells derived from the adult human ciliary body and brain
Exp Eye Res, 88 (1), 30-8
DOI 10.1016/j.exer.2008.09.020, PubMed 18955049
Long-term seizures and quality of life after epilepsy surgery compared with matched controls
Neurosurgery, 62 (2), 326-34; discussion 334-5
DOI 10.1227/01.neu.0000315999.58022.1c, PubMed 18382310
A comparison between stem cells from the adult human brain and from brain tumors
Neurosurgery, 63 (6), 1022-33; discussion 1033-4
DOI 10.1227/01.NEU.0000335792.85142.B0, PubMed 19057315
Publications 2007
The brain on itself: Nobel laureates and the history of fundamental nervous system function
Neurosurgery, 61 (5), 891-907; discussion 907-8
DOI 10.1227/01.neu.0000303185.49555.a9, PubMed 18091266
Transplantation of stem cells from the adult human brain to the adult rat brain
Neurosurgery, 60 (6), 1089-98; discussion 1098-9
DOI 10.1227/01.NEU.0000255461.91892.0D, PubMed 17538384
Publications 2006
Neurogenesis in the adult spinal cord in an experimental model of multiple sclerosis
Eur J Neurosci, 23 (2), 394-400
DOI 10.1111/j.1460-9568.2005.04563.x, PubMed 16420447
Publications 2005
The Norse discovery of America
Neurosurgery, 57 (6), 1076-87; discussion 1076-87
DOI 10.1227/01.neu.0000144825.92264.c4, PubMed 16331154
Multipotent progenitor cells from the adult human brain: neurophysiological differentiation to mature neurons
Brain, 128 (Pt 9), 2189-99
DOI 10.1093/brain/awh574, PubMed 15958504
Development of neuronal networks from single stem cells harvested from the adult human brain
Neurosurgery, 56 (6), 1182-8; discussion 1188-90
DOI 10.1227/01.neu.0000159881.09663.6d, PubMed 15918934
Endoscopically harvested stem cells: a putative method in future autotransplantation
Neurosurgery, 57 (4), 779-84; discussion 779-84
DOI 10.1227/01.NEU.0000176402.78462.cd, PubMed 16239892
Publications 2004
Crush injury induces NMDA-receptor-dependent delayed nerve cell death in rat entorhinal-hippocampal slice cultures
Brain Res, 1025 (1-2), 35-42
DOI 10.1016/j.brainres.2004.07.089, PubMed 15464742
Methylprednisolone treatment does not influence axonal regeneration or degeneration following optic nerve injury in the adult rat
J Neuroophthalmol, 24 (1), 11-8
DOI 10.1097/00041327-200403000-00003, PubMed 15206432
Predictors of seizure outcome after temporal lobectomy for intractable epilepsy
Acta Neurol Scand, 109 (4), 244-9
DOI 10.1046/j.1600-0404.2003.00249.x, PubMed 15016005
Publications 2003
Gap junction-mediated bystander effect in primary cultures of human malignant gliomas with recombinant expression of the HSVtk gene
Exp Cell Res, 284 (2), 185-95
DOI 10.1016/s0014-4827(02)00052-6, PubMed 12651152
[Intracranial tumors in adults]
Tidsskr Nor Laegeforen, 123 (4), 456-61
PubMed 12643056
A new tool in restorative neurosurgery: creating niches for neuronal stem cells
Neurosurgery, 52 (5), 1150-3
PubMed 12699560
Artificial niches for human adult neural stem cells: possibility for autologous transplantation therapy
J Hematother Stem Cell Res, 12 (6), 689-99
DOI 10.1089/15258160360732713, PubMed 14977478
Complement activation following optic nerve crush in the adult rat
J Neurotrauma, 20 (9), 895-904
DOI 10.1089/089771503322385827, PubMed 14577867
Stem cells from the adult human brain develop into functional neurons in culture
Exp Cell Res, 289 (2), 378-83
DOI 10.1016/s0014-4827(03)00291-x, PubMed 14499639
Publications 2001
[Resection of malignant tumors involving the anterior cranial fossa]
Tidsskr Nor Laegeforen, 121 (14), 1688-91
PubMed 11446010
Depolarization induces insulin-like growth factor binding protein-2 expression in vivo via NMDA receptor stimulation
Growth Horm IGF Res, 11 (6), 399-406
DOI 10.1054/ghir.2001.0252, PubMed 11914028
[Normal pressure hydrocephalus]
Tidsskr Nor Laegeforen, 121 (14), 1670
PubMed 11446006
CTA in patients with acute subarachnoid haemorrhage. A comparative study with selective, digital angiography and blinded, independent review
Acta Radiol, 42 (1), 43-9
DOI 10.1080/028418501127346224, PubMed 11167331
Publications 1999
Neurosurgical management of aneurysmal subarachnoid haemorrhage
Springer, Wien, 174 s.
BIBSYS 001031759, ISBN 3-211-83256-4
Surgical treatment of anterior circulation aneurysms
Acta Neurochir Suppl, 72, 107-21
DOI 10.1007/978-3-7091-6377-1_10, PubMed 10337418
A tribute to Helge Nornes
Acta Neurochir Suppl, 72, 1-5
DOI 10.1007/978-3-7091-6377-1_1, PubMed 10337409
The Bayeux Tapestry: a charter of a people and a unique testimony of creative imagery in communication
Neurosurgery, 45 (3), 663-9, front cover
DOI 10.1097/00006123-199909000-00050, PubMed 10493390
Publications 1998
Glutamate in the human brain: possible roles in synaptic transmission and ischemia
Prog Brain Res, 116, 287-302
DOI 10.1016/s0079-6123(08)60444-6, PubMed 9932384
Confocal laser scanning microscopy used to monitor intracellular Ca2+ changes in hippocampal CA 1 neurons during energy deprivation
Brain Res, 785 (1), 58-65
DOI 10.1016/s0006-8993(97)01367-x, PubMed 9526045
Chloride influx during cerebral energy deprivation
Neurol Res, 20 (2), 131-6
DOI 10.1080/01616412.1998.11740495, PubMed 9522348
Depletion of intracellular Ca2+ stores or lowering extracellular calcium alters intracellular Ca2+ changes during cerebral energy deprivation
Brain Res, 796 (1-2), 125-31
DOI 10.1016/s0006-8993(98)00279-0, PubMed 9689462
The effect of isoflurane on brain amino acid release and tissue content induced by energy deprivation
J Neurosurg Anesthesiol, 10 (3), 166-70
DOI 10.1097/00008506-199807000-00007, PubMed 9681405
Effect of isoflurane on release and uptake of gamma-aminobutyric acid from rat cortical synaptosomes
Br J Anaesth, 80 (5), 634-8
DOI 10.1093/bja/80.5.634, PubMed 9691868
The effect of volatile anaesthetics on synaptic release and uptake of glutamate
Toxicol Lett, 100-101, 59-64
DOI 10.1016/s0378-4274(98)00165-9, PubMed 10049181
Isoflurane reduces synaptic glutamate release without changing cytosolic free calcium in isolated nerve terminals
Eur J Anaesthesiol, 15 (2), 224-9
PubMed 9587730
The Glutamate synapse as a therapeutical target: molecular organization and pathology of the glutamate synapse
In Progress in brain research, Elsevier, New York, vol. 116, XVI, 462 s.
BIBSYS 982611463, ISBN 0-444-82754-4
Publications 1997
Efflux of gamma-aminobutyric acid caused by changes in ion concentrations and cell swelling simulating the effect of cerebral ischaemia
Acta Neurochir (Wien), 139 (5), 453-63
DOI 10.1007/BF01808883, PubMed 9204116
L-alpha-aminoadipate reduces glutamate release from brain tissue exposed to combined oxygen and glucose deprivation
J Cereb Blood Flow Metab, 17 (5), 567-70
DOI 10.1097/00004647-199705000-00011, PubMed 9183295
Isoflurane increases the uptake of glutamate in synaptosomes from rat cerebral cortex
Br J Anaesth, 78 (1), 55-9
DOI 10.1093/bja/78.1.55, PubMed 9059205
Publications 1996
Cytotoxic effect of Ca++ released from intracellular stores during cerebral energy deprivation
Neurol Res, 18 (6), 499-504
DOI 10.1080/01616412.1996.11740461, PubMed 8985949
Release of brain amino acids during hyposmolar stress and energy deprivation
J Neurosurg Anesthesiol, 8 (2), 159-68
DOI 10.1097/00008506-199604000-00011, PubMed 8829565
Amino-acid release from human cerebral cortex during simulated ischaemia in vitro
Acta Neurochir (Wien), 138 (2), 234-41
DOI 10.1007/BF01411367, PubMed 8686551
Publications 1995
Changes in amino acid release and membrane potential during cerebral hypoxia and glucose deprivation
Neurol Res, 17 (3), 201-8
DOI 10.1080/01616412.1995.11740313, PubMed 7643976
Changes in brain amino acid content induced by hyposmolar stress and energy deprivation
Neurol Res, 17 (6), 402-8
DOI 10.1080/01616412.1995.11740352, PubMed 8622791
Volatile anaesthetics: cellular mechanisms of action
Eur J Anaesthesiol, 12 (1), 51-8
PubMed 7535694
Intracranial primary leiomyosarcoma arising in a teratoma of the pineal area
Clin Neuropathol, 14 (4), 245-8
PubMed 8521631
Publications 1994
The effect of the volatile anesthetic isoflurane on Ca(2+)-dependent glutamate release from rat cerebral cortex
Brain Res, 663 (2), 335-7
DOI 10.1016/0006-8993(94)91282-3, PubMed 7874520
Publications 1993
Changes in inhibitory synaptic transmission induced by isoflurane studied in rat hippocampal slices
J Neurosurg Anesthesiol, 5 (1), 36-40
DOI 10.1097/00008506-199301000-00006, PubMed 8381688
Changes in evoked potentials and amino acid content during fluorocitrate action studied in rat hippocampal cortex
Exp Brain Res, 96 (2), 241-6
DOI 10.1007/BF00227104, PubMed 7903642
Epileptogenic effect of antibiotic drugs
J Neurosurg, 78 (6), 938-43
DOI 10.3171/jns.1993.78.6.0938, PubMed 8487076
Redistribution of glutamate and glutamine in slices of human neocortex exposed to combined hypoxia and glucose deprivation in vitro
J Cereb Blood Flow Metab, 13 (3), 503-15
DOI 10.1038/jcbfm.1993.65, PubMed 8097518
Publications 1992
The effect of isoflurane on excitatory synaptic transmission in the rat hippocampus
Acta Anaesthesiol Scand, 36 (4), 350-5
DOI 10.1111/j.1399-6576.1992.tb03480.x, PubMed 1317634
Temperature sensitivity of thin unmyelinated fibers in rat hippocampal cortex
Brain Res, 576 (2), 319-21
DOI 10.1016/0006-8993(92)90696-7, PubMed 1515924
Calcium dependent release of gamma-aminobutyric acid (GABA) from human cerebral cortex
Neurosci Lett, 141 (1), 61-4
DOI 10.1016/0304-3940(92)90334-4, PubMed 1508401
Calcium-dependent release of glutamate from human cerebral cortex
Brain Res, 585 (1-2), 340-2
DOI 10.1016/0006-8993(92)91233-5, PubMed 1355003
An experimental study of the effect of isoflurane on epileptiform bursts
Epilepsy Res, 11 (3), 153-7
DOI 10.1016/0920-1211(92)90093-9, PubMed 1396529
Occurrence and management of fractured peripheral catheters in CSF shunts
Childs Nerv Syst, 8 (4), 222-5
DOI 10.1007/BF00262852, PubMed 1394256
Ultrastructural immunocytochemical observations on the localization, metabolism and transport of glutamate in normal and ischemic brain tissue
Prog Brain Res, 94, 225-41
DOI 10.1016/s0079-6123(08)61753-7, PubMed 1363142
ULTRASTRUCTURAL IMMUNOCYTOCHEMICAL OBSERVATIONS ON THE LOCALIZATION, METABOLISM AND TRANSPORT OF GLUTAMATE IN NORMAL AND ISCHEMIC BRAIN-TISSUE
PROG BRAIN RES, 94, 225-241
Publications 1991
Failure of allopurinol to protect against cerebral injury when given after the start of hypoxia
Acta Neurol Scand, 83 (5), 286-8
DOI 10.1111/j.1600-0404.1991.tb04702.x, PubMed 2063650
Management of pediatric pontine gliomas
Childs Nerv Syst, 7 (1), 13-5
DOI 10.1007/BF00263825, PubMed 2054800
Shunt failure caused by valve collapse
J Neurol Neurosurg Psychiatry, 54 (6), 559-60
DOI 10.1136/jnnp.54.6.559, PubMed 1880522
Fatal cardiopulmonary complications in children treated with ventriculoatrial shunts
Childs Nerv Syst, 7 (4), 215-7
DOI 10.1007/BF00249398, PubMed 1933918
Publications 1990
Mechanisms concerned in the direct effect of isoflurane on rat hippocampal and human neocortical neurons
Brain Res, 507 (1), 28-34
DOI 10.1016/0006-8993(90)90517-f, PubMed 2302577
[Brain tumors in children]
Tidsskr Nor Laegeforen, 110 (14), 1809-11
PubMed 2363141
Side-to-side differences and day-to-day variations of transcranial Doppler parameters in normal subjects
J Ultrasound Med, 9 (7), 403-9
DOI 10.7863/jum.1990.9.7.403, PubMed 2197422
Publications 1989
Zinc and glycine do not modify low-magnesium-induced epileptiform activity in the immature neocortex in vitro
Epilepsy Res, 3 (2), 174-7
DOI 10.1016/0920-1211(89)90046-6, PubMed 2539997
Publications 1988
Intracellular recordings from neurones in rat cerebral cortex during hypoxia
Acta Neurochir Suppl (Wien), 43, 168-71
DOI 10.1007/978-3-7091-8978-8_36, PubMed 2905575
Publications 1987
Reduced hippocampal field potentials during administration of fluoropyrimidines in vitro
Acta Neurol Scand, 75 (6), 417-22
DOI 10.1111/j.1600-0404.1987.tb05471.x, PubMed 2957887
Isoflurane hyperpolarizes neurones in rat and human cerebral cortex
Acta Physiol Scand, 130 (4), 679-85
DOI 10.1111/j.1748-1716.1987.tb08192.x, PubMed 3630740
Publications 1986
The effect of isoflurane on unmyelinated and myelinated fibres in the rat brain
Acta Physiol Scand, 127 (1), 87-93
DOI 10.1111/j.1748-1716.1986.tb07879.x, PubMed 3728047
Isoflurane effects in rat hippocampal cortex: a quantitative evaluation of different cellular sites of action
Acta Physiol Scand, 128 (4), 613-8
DOI 10.1111/j.1748-1716.1986.tb08019.x, PubMed 3811986
N-methyl-D-aspartate receptor antagonists reduce synaptic excitation in the hippocampus
J Neurosci, 6 (1), 102-6
DOI 10.1523/JNEUROSCI.06-01-00102.1986, PubMed 2868075
Publications 1983
Some mechanisms controlling hippocampal pyramidal cells
Prog Brain Res, 58, 61-9
DOI 10.1016/S0079-6123(08)60007-2, PubMed 6138815
Summation of excitatory postsynaptic potentials in hippocampal pyramidal cells
J Neurophysiol, 50 (6), 1320-9
DOI 10.1152/jn.1983.50.6.1320, PubMed 6663329
Publications 1982
Excitation of hippocampal pyramidal cells by glutamate in the guinea-pig and rat
J Physiol, 325, 317-31
DOI 10.1113/jphysiol.1982.sp014152, PubMed 7108779
Publications 1981
Synaptic triggering of epileptiform discharges in Ca2 pyramidal cells in vitro
Acta Physiol Scand, 113 (2), 245-52
DOI 10.1111/j.1748-1716.1981.tb06890.x, PubMed 7315453
Monosynaptic transmission during epileptiform activity induced by penicillin in hippocampal slices in vitro
Acta Physiol Scand, 113 (3), 355-62
DOI 10.1111/j.1748-1716.1981.tb06907.x, PubMed 6285676
Synaptic mechanisms in hippocampal pyramidal cells
[s.l.], Oslo, 1 b.(fl. pag.)
BIBSYS 832064807
Mechanisms of norepinephrine actions on hippocampal pyramidal cells in vitro
Brain Res, 208 (2), 349-62
DOI 10.1016/0006-8993(81)90563-1, PubMed 6260288
Publications 1980
Two different responses of hippocampal pyramidal cells to application of gamma-amino butyric acid
J Physiol, 305, 279-96
DOI 10.1113/jphysiol.1980.sp013363, PubMed 7441554
Intracellular studies on transmitter effects on neurones in isolated brain slices
Q Rev Biophys, 13 (1), 1-18
DOI 10.1017/s0033583500000299, PubMed 7012890
Conductance changes and inhibitory actions of hippocampal recurrent IPSPs
Brain Res, 185 (2), 277-87
DOI 10.1016/0006-8993(80)91068-9, PubMed 7357430