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Functional near-infrared spectroscopy in the neuropsychological assessment of spatial memory: A systematic review

期刊

ACTA PSYCHOLOGICA
卷 224, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.actpsy.2022.103525

关键词

fNIRS; Cortex; Spatial memory; Working memory; Short-term memory

资金

  1. Departamento de Psicologia y Sociologia of Universidad de Zaragoza
  2. Gobierno de Aragon (Departamento de Ciencia, Universidad y Sociedad del Conocimiento)
  3. FEDER [S31_20D]
  4. MINECO (Ministerio de Economia y Competitividad del Gobierno de Espana) [PSI2017-83893-R]

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This study reviews empirical research on the use of fNIRS in the neuropsychological assessment of human spatial memory. The findings suggest that fNIRS can complement behavioral results and provide more comprehensive assessments.
Functional near-infrared spectroscopy (fNIRS) is a non-invasive optical imaging technique that employs near-infrared light to measure cortical brain oxygenation. The use of fNIRS has increased exponentially in recent years. Spatial memory is defined as the ability to learn and use spatial information. This neuropsychological process is constantly used in our daily lives and can be measured by fNIRS but no research has reviewed whether this technique can be useful in the neuropsychological assessment of spatial memory. This study aimed to review empirical work on the use of fNIRS in the neuropsychological assessment of human spatial memory. We used four databases: PubMed, PsycINFO, Scopus and Web of Science, and a total of 18 articles were found to be eligible. Most of the articles assessed spatial or visuospatial working memory with a predominance in computer-based tasks, used fNIRS equipment of 16 channels and mainly measured the prefrontal cortex (PFC). The studies analysed found linear or quadratic relationships between working memory load and PFC activity, greater activation of PFC activity and worse behavioural results in healthy older people in comparison with healthy adults, and hyperactivation of PFC as a form of compensation in clinical samples. We conclude that fNIRS is compatible with the standard neuropsychological assessment of spatial memory, making it possible to complement behavioural results with data of cortical functional activity.

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