Hierarchical Pathways from Sensory Processing to Cognitive, Clinical, and Functional Impairments in Schizophrenia

Author:

Koshiyama Daisuke1,Thomas Michael L12,Miyakoshi Makoto3,Joshi Yash B14,Molina Juan L1,Tanaka-Koshiyama Kumiko1,Sprock Joyce1,Braff David L1,Swerdlow Neal R1,Light Gregory A14

Affiliation:

1. Department of Psychiatry, University of California San Diego, La Jolla, CA

2. Department of Psychology, Colorado State University, Fort Collins, CO

3. Swartz Center for Neural Computation, University of California San Diego, La Jolla, CA

4. VISN-22 Mental Illness, Research, Education and Clinical Center (MIRECC), VA San Diego Healthcare System, San Diego, CA

Abstract

Abstract Cognitive impairment is a hallmark of schizophrenia and a robust predictor of functional outcomes. Impairments are found in all phases of the illness and are only moderately attenuated by currently approved therapeutics. Neurophysiological indices of sensory discrimination (ie, mismatch negativity (MMN) and P3a amplitudes) and gamma-band auditory steady-state response (ASSR; power and phase locking) are translational biomarkers widely used in the development of novel therapeutics for neuropsychiatric disorders. It is unclear whether laboratory-based EEG measures add explanatory power to well-established models that use only cognitive, clinical, and functional outcome measures. Moreover, it is unclear if measures of sensory discrimination and gamma-band ASSR uniquely contribute to putative causal pathways linking sensory discrimination, neurocognition, negative symptoms, and functional outcomes in schizophrenia. To answer these questions, hierarchical associations among sensory processing, neurocognition, clinical symptoms, and functional outcomes were assessed via structural equation modeling in a large sample of schizophrenia patients (n = 695) and healthy comparison subjects (n = 503). The results showed that the neurophysiologic indices of sensory discrimination and gamma-band ASSR both significantly contribute to and yield unique hierarchical, “bottom-up” effects on neurocognition, symptoms, and functioning. Measures of sensory discrimination showed direct effects on neurocognition and negative symptoms, while gamma-band ASSR had a direct effect on neurocognition in patients. Continued investigation of the neural mechanisms underlying abnormal networks of MMN/P3a and gamma-band ASSR is needed to clarify the pathophysiology of schizophrenia and the development of novel therapeutic interventions.

Funder

Sidney R. Baer, Jr. Foundation

NIMH

VISN-22 Mental Illness Research, Education, and Clinical Center

Publisher

Oxford University Press (OUP)

Subject

Psychiatry and Mental health

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