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Items: 1 to 20 of 105

1.

Risks of postoperative paresis in motor eloquently and non-eloquently located brain metastases.

Obermueller T, Schaeffner M, Gerhardt J, Meyer B, Ringel F, Krieg SM.

BMC Cancer. 2014 Jan 14;14:21. doi: 10.1186/1471-2407-14-21.

2.

Intraoperative neuromonitoring for function-guided resection differs for supratentorial motor eloquent gliomas and metastases.

Obermueller T, Schaeffner M, Shiban E, Droese D, Negwer C, Meyer B, Ringel F, Krieg SM.

BMC Neurol. 2015 Oct 20;15:211. doi: 10.1186/s12883-015-0476-0.

3.

Reliability of intraoperative neurophysiological monitoring using motor evoked potentials during resection of metastases in motor-eloquent brain regions: clinical article.

Krieg SM, Schäffner M, Shiban E, Droese D, Obermüller T, Gempt J, Meyer B, Ringel F.

J Neurosurg. 2013 Jun;118(6):1269-78. doi: 10.3171/2013.2.JNS121752. Epub 2013 Mar 22.

PMID:
23521547
4.
5.

Proof of principle: supramarginal resection of cerebral metastases in eloquent brain areas.

Kamp MA, Dibué M, Niemann L, Reichelt DC, Felsberg J, Steiger HJ, Szelényi A, Rapp M, Sabel M.

Acta Neurochir (Wien). 2012 Nov;154(11):1981-6. doi: 10.1007/s00701-012-1463-5. Epub 2012 Aug 9.

PMID:
22875595
6.

Intraoperative tractography and motor evoked potential (MEP) monitoring in surgery for gliomas around the corticospinal tract.

Maesawa S, Fujii M, Nakahara N, Watanabe T, Wakabayashi T, Yoshida J.

World Neurosurg. 2010 Jul;74(1):153-61. doi: 10.1016/j.wneu.2010.03.022.

PMID:
21300007
7.

Outcome of fully awake craniotomy for lesions near the eloquent cortex: analysis of a prospective surgical series of 79 supratentorial primary brain tumors with long follow-up.

Pereira LC, Oliveira KM, L'Abbate GL, Sugai R, Ferreira JA, da Motta LA.

Acta Neurochir (Wien). 2009 Oct;151(10):1215-30. doi: 10.1007/s00701-009-0363-9.

PMID:
19730779
8.

Multimodal navigation in the functional microsurgical resection of intrinsic brain tumors located in eloquent motor areas: role of tractography.

González-Darder JM, González-López P, Talamantes F, Quilis V, Cortés V, García-March G, Roldán P.

Neurosurg Focus. 2010 Feb;28(2):E5. doi: 10.3171/2009.11.FOCUS09234.

PMID:
20121440
9.

Purely subcortical tumors in eloquent areas: awake surgery and cortical and subcortical electrical stimulation (CSES) ensure safe and effective surgery.

Spena G, Garbossa D, Panciani PP, Griva F, Fontanella MM.

Clin Neurol Neurosurg. 2013 Sep;115(9):1595-601. doi: 10.1016/j.clineuro.2013.02.006. Epub 2013 Mar 5.

PMID:
23465617
10.

Identifying better surgical candidates among recursive partitioning analysis class 2 patients who underwent surgery for intracranial metastases.

Chaichana KL, Acharya S, Flores M, Wijesekera O, Rigamonti D, Weingart JD, Olivi A, Bettegowda C, Gallia GL, Brem H, Lim M, Quinones-Hinojosa A.

World Neurosurg. 2014 Jul-Aug;82(1-2):e267-75. doi: 10.1016/j.wneu.2013.08.031. Epub 2013 Sep 25.

11.

Preoperative assessment of motor cortex and pyramidal tracts in central cavernoma employing functional and diffusion-weighted magnetic resonance imaging.

Möller-Hartmann W, Krings T, Coenen VA, Mayfrank L, Weidemann J, Kränzlein H, Thron A.

Surg Neurol. 2002 Nov;58(5):302-7; discussion 308.

PMID:
12504288
12.

Intraoperative mapping and monitoring of the corticospinal tracts with neurophysiological assessment and 3-dimensional ultrasonography-based navigation. Clinical article.

Nossek E, Korn A, Shahar T, Kanner AA, Yaffe H, Marcovici D, Ben-Harosh C, Ben Ami H, Weinstein M, Shapira-Lichter I, Constantini S, Hendler T, Ram Z.

J Neurosurg. 2011 Mar;114(3):738-46. doi: 10.3171/2010.8.JNS10639. Epub 2010 Aug 27.

PMID:
20799862
13.

Early postoperative magnet resonance tomography after resection of cerebral metastases.

Kamp MA, Rapp M, Bühner J, Slotty PJ, Reichelt D, Sadat H, Dibué-Adjei M, Steiger HJ, Turowski B, Sabel M.

Acta Neurochir (Wien). 2015 Sep;157(9):1573-80. doi: 10.1007/s00701-015-2479-4. Epub 2015 Jul 9.

PMID:
26156037
14.

Intraoperative DTI and brain mapping for surgery of neoplasm of the motor cortex and the corticospinal tract: our protocol and series in BrainSUITE.

D'Andrea G, Angelini A, Romano A, Di Lauro A, Sessa G, Bozzao A, Ferrante L.

Neurosurg Rev. 2012 Jul;35(3):401-12; discussion 412. doi: 10.1007/s10143-012-0373-6. Epub 2012 Feb 28.

PMID:
22370809
15.

Incidence of local in-brain progression after supramarginal resection of cerebral metastases.

Kamp MA, Rapp M, Slotty PJ, Turowski B, Sadat H, Smuga M, Dibué-Adjei M, Steiger HJ, Szelényi A, Sabel M.

Acta Neurochir (Wien). 2015 Jun;157(6):905-10; discussion 910-1. doi: 10.1007/s00701-015-2405-9. Epub 2015 Apr 7.

PMID:
25845550
16.

Image-guided craniotomy for cerebral metastases: techniques and outcomes.

Tan TC, McL Black P.

Neurosurgery. 2003 Jul;53(1):82-9; discussion 89-90.

PMID:
12823876
17.

Intraoperative monopolar mapping during 5-ALA-guided resections of glioblastomas adjacent to motor eloquent areas: evaluation of resection rates and neurological outcome.

Schucht P, Seidel K, Beck J, Murek M, Jilch A, Wiest R, Fung C, Raabe A.

Neurosurg Focus. 2014 Dec;37(6):E16. doi: 10.3171/2014.10.FOCUS14524.

PMID:
25434385
18.

Postoperative ischemic changes following brain metastasis resection as measured by diffusion-weighted magnetic resonance imaging.

Gempt J, Gerhardt J, Toth V, Hüttinger S, Ryang YM, Wostrack M, Krieg SM, Meyer B, Förschler A, Ringel F.

J Neurosurg. 2013 Dec;119(6):1395-400. doi: 10.3171/2013.9.JNS13596. Epub 2013 Oct 11.

PMID:
24116722
19.

Operative treatment of subcortical metastatic tumours in the central region.

Walter J, Kuhn SA, Waschke A, Kalff R, Ewald C.

J Neurooncol. 2011 Jul;103(3):567-73. doi: 10.1007/s11060-010-0420-5. Epub 2010 Sep 29.

PMID:
20878448
20.

Potential role for LINAC-based stereotactic radiosurgery for the treatment of 5 or more radioresistant melanoma brain metastases.

Frakes JM, Figura NB, Ahmed KA, Juan TH, Patel N, Latifi K, Sarangkasiri S, Strom TJ, Chinnaiyan P, Rao NG, Etame AB.

J Neurosurg. 2015 Nov;123(5):1261-7. doi: 10.3171/2014.12.JNS141919. Epub 2015 Jul 3.

PMID:
26140482

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