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Items: 1 to 20 of 34

1.

Adaptive filtering to reduce global interference in evoked brain activity detection: a human subject case study.

Zhang Q, Brown EN, Strangman GE.

J Biomed Opt. 2007 Nov-Dec;12(6):064009. doi: 10.1117/1.2804706.

PMID:
18163825
2.
3.

Retinotopic mapping of adult human visual cortex with high-density diffuse optical tomography.

Zeff BW, White BR, Dehghani H, Schlaggar BL, Culver JP.

Proc Natl Acad Sci U S A. 2007 Jul 17;104(29):12169-74. Epub 2007 Jul 6.

5.

Dynamic physiological modeling for functional diffuse optical tomography.

Diamond SG, Huppert TJ, Kolehmainen V, Franceschini MA, Kaipio JP, Arridge SR, Boas DA.

Neuroimage. 2006 Mar;30(1):88-101. Epub 2005 Oct 20.

6.

Direct characterization and removal of interfering absorption trends in two-layer turbid media.

Saager RB, Berger AJ.

J Opt Soc Am A Opt Image Sci Vis. 2005 Sep;22(9):1874-82.

PMID:
16211814
7.

The fast optical signal--robust or elusive when non-invasively measured in the human adult?

Steinbrink J, Kempf FC, Villringer A, Obrig H.

Neuroimage. 2005 Jul 15;26(4):996-1008. Epub 2005 Apr 25.

PMID:
15961042
8.

Eigenvector-based spatial filtering for reduction of physiological interference in diffuse optical imaging.

Zhang Y, Brooks DH, Franceschini MA, Boas DA.

J Biomed Opt. 2005 Jan-Feb;10(1):11014.

PMID:
15847580
9.

Using near-infrared spectroscopy to assess neural activation during object processing in infants.

Wilcox T, Bortfeld H, Woods R, Wruck E, Boas DA.

J Biomed Opt. 2005 Jan-Feb;10(1):11010.

10.

Near-infrared spectroscopy of the visual cortex in unilateral optic neuritis.

Miki A, Nakajima T, Takagi M, Usui T, Abe H, Liu CS, Liu GT.

Am J Ophthalmol. 2005 Feb;139(2):353-6.

PMID:
15734004
11.

Diffuse optical measurement of blood flow, blood oxygenation, and metabolism in a human brain during sensorimotor cortex activation.

Durduran T, Yu G, Burnett MG, Detre JA, Greenberg JH, Wang J, Zhou C, Yodh AG.

Opt Lett. 2004 Aug 1;29(15):1766-8.

PMID:
15352363
12.

Detection of fast neuronal signals in the motor cortex from functional near infrared spectroscopy measurements using independent component analysis.

Morren G, Wolf U, Lemmerling P, Wolf M, Choi JH, Gratton E, De Lathauwer L, Van Huffel S.

Med Biol Eng Comput. 2004 Jan;42(1):92-9.

13.

Hemodynamic evoked response of the sensorimotor cortex measured noninvasively with near-infrared optical imaging.

Franceschini MA, Fantini S, Thompson JH, Culver JP, Boas DA.

Psychophysiology. 2003 Jul;40(4):548-60.

14.

Differences in the hemodynamic response to event-related motor and visual paradigms as measured by near-infrared spectroscopy.

Jasdzewski G, Strangman G, Wagner J, Kwong KK, Poldrack RA, Boas DA.

Neuroimage. 2003 Sep;20(1):479-88.

PMID:
14527608
15.

Time-series estimation of biological factors in optical diffusion tomography.

Prince S, Kolehmainen V, Kaipio JP, Franceschini MA, Boas D, Arridge SR.

Phys Med Biol. 2003 Jun 7;48(11):1491-504.

PMID:
12817933
16.

State-estimation approach to the nonstationary optical tomography problem.

Kolehmainen V, Prince S, Arridge SR, Kaipio JP.

J Opt Soc Am A Opt Image Sci Vis. 2003 May;20(5):876-89.

PMID:
12747435
17.
18.

Habituation of the visually evoked potential and its vascular response: implications for neurovascular coupling in the healthy adult.

Obrig H, Israel H, Kohl-Bareis M, Uludag K, Wenzel R, Müller B, Arnold G, Villringer A.

Neuroimage. 2002 Sep;17(1):1-18.

PMID:
12482064
19.

Near-infrared spectroscopy can detect brain activity during a color-word matching Stroop task in an event-related design.

Schroeter ML, Zysset S, Kupka T, Kruggel F, Yves von Cramon D.

Hum Brain Mapp. 2002 Sep;17(1):61-71.

PMID:
12203689
20.

Motion and ballistocardiogram artifact removal for interleaved recording of EEG and EPs during MRI.

Bonmassar G, Purdon PL, Jääskeläinen IP, Chiappa K, Solo V, Brown EN, Belliveau JW.

Neuroimage. 2002 Aug;16(4):1127-41.

PMID:
12202099

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