Literature DB >> 26989756

Commentary on the statistical properties of noise and its implication on general linear models in functional near-infrared spectroscopy.

Theodore J Huppert1.   

Abstract

Functional near-infrared spectroscopy (fNIRS) is a noninvasive neuroimaging technique that uses low levels of light to measure changes in cerebral blood oxygenation levels. In the majority of NIRS functional brain studies, analysis of this data is based on a statistical comparison of hemodynamic levels between a baseline and task or between multiple task conditions by means of a linear regression model: the so-called general linear model. Although these methods are similar to their implementation in other fields, particularly for functional magnetic resonance imaging, the specific application of these methods in fNIRS research differs in several key ways related to the sources of noise and artifacts unique to fNIRS. In this brief communication, we discuss the application of linear regression models in fNIRS and the modifications needed to generalize these models in order to deal with structured (colored) noise due to systemic physiology and noise heteroscedasticity due to motion artifacts. The objective of this work is to present an overview of these noise properties in the context of the linear model as it applies to fNIRS data. This work is aimed at explaining these mathematical issues to the general fNIRS experimental researcher but is not intended to be a complete mathematical treatment of these concepts.

Keywords:  brain imaging; linear regression; near-infrared spectroscopy; statistical analysis

Year:  2016        PMID: 26989756      PMCID: PMC4773699          DOI: 10.1117/1.NPh.3.1.010401

Source DB:  PubMed          Journal:  Neurophotonics        ISSN: 2329-423X            Impact factor:   3.593


  30 in total

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4.  Model-based analysis of rapid event-related functional near-infrared spectroscopy (NIRS) data: a parametric validation study.

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  65 in total

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3.  Mental stress assessment using simultaneous measurement of EEG and fNIRS.

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Review 5.  A Systematic Review of the Application of Functional Near-Infrared Spectroscopy to the Study of Cerebral Hemodynamics in Healthy Aging.

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6.  Investigation of the sensitivity of functional near-infrared spectroscopy brain imaging to anatomical variations in 5- to 11-year-old children.

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8.  Brain activation patterns underlying upper limb bilateral motor coordination in unilateral cerebral palsy: an fNIRS study.

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9.  The role of the right prefrontal cortex in recognition of facial emotional expressions in depressed individuals: fNIRS study.

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