TY - JOUR
T1 - Shifted phase of EEG cross-frequency coupling in individuals with Phelan-McDermid syndrome
AU - the Developmental Synaptopathies Consortium
AU - Mariscal, Michael G.
AU - Berry-Kravis, Elizabeth
AU - Buxbaum, Joseph D.
AU - Ethridge, Lauren E.
AU - Filip-Dhima, Rajna
AU - Foss-Feig, Jennifer H.
AU - Kolevzon, Alexander
AU - Modi, Meera E.
AU - Mosconi, Matthew W.
AU - Nelson, Charles A.
AU - Powell, Craig M.
AU - Siper, Paige M.
AU - Soorya, Latha
AU - Thaliath, Andrew
AU - Thurm, Audrey
AU - Zhang, Bo
AU - Sahin, Mustafa
AU - Levin, April R.
N1 - Publisher Copyright:
© 2021, The Author(s).
PY - 2021/12
Y1 - 2021/12
N2 - Background: Phelan-McDermid Syndrome (PMS) is a rare condition caused by deletion or mutation of the SHANK3 gene. Individuals with PMS frequently present with intellectual disability, autism spectrum disorder, and other neurodevelopmental challenges. Electroencephalography (EEG) can provide a window into network-level function in PMS. Methods: Here, we analyze EEG data collected across multiple sites in individuals with PMS (n = 26) and typically developing individuals (n = 15). We quantify oscillatory power, alpha-gamma phase-amplitude coupling strength, and phase bias, a measure of the phase of cross frequency coupling thought to reflect the balance of feedforward (bottom-up) and feedback (top-down) activity. Results: We find individuals with PMS display increased alpha-gamma phase bias (U = 3.841, p < 0.0005), predominantly over posterior electrodes. Most individuals with PMS demonstrate positive overall phase bias while most typically developing individuals demonstrate negative overall phase bias. Among individuals with PMS, strength of alpha-gamma phase-amplitude coupling was associated with Sameness, Ritualistic, and Compulsive behaviors as measured by the Repetitive Behavior Scales-Revised (Beta = 0.545, p = 0.011). Conclusions: Increased phase bias suggests potential circuit-level mechanisms underlying phenotype in PMS, offering opportunities for back-translation of findings into animal models and targeting in clinical trials.
AB - Background: Phelan-McDermid Syndrome (PMS) is a rare condition caused by deletion or mutation of the SHANK3 gene. Individuals with PMS frequently present with intellectual disability, autism spectrum disorder, and other neurodevelopmental challenges. Electroencephalography (EEG) can provide a window into network-level function in PMS. Methods: Here, we analyze EEG data collected across multiple sites in individuals with PMS (n = 26) and typically developing individuals (n = 15). We quantify oscillatory power, alpha-gamma phase-amplitude coupling strength, and phase bias, a measure of the phase of cross frequency coupling thought to reflect the balance of feedforward (bottom-up) and feedback (top-down) activity. Results: We find individuals with PMS display increased alpha-gamma phase bias (U = 3.841, p < 0.0005), predominantly over posterior electrodes. Most individuals with PMS demonstrate positive overall phase bias while most typically developing individuals demonstrate negative overall phase bias. Among individuals with PMS, strength of alpha-gamma phase-amplitude coupling was associated with Sameness, Ritualistic, and Compulsive behaviors as measured by the Repetitive Behavior Scales-Revised (Beta = 0.545, p = 0.011). Conclusions: Increased phase bias suggests potential circuit-level mechanisms underlying phenotype in PMS, offering opportunities for back-translation of findings into animal models and targeting in clinical trials.
KW - Cross-frequency coupling
KW - EEG
KW - Phase bias
KW - Phelan-McDermid syndrome
KW - Power
UR - https://www.scopus.com/pages/publications/85105008407
U2 - 10.1186/s13229-020-00411-9
DO - 10.1186/s13229-020-00411-9
M3 - Article
C2 - 33910615
AN - SCOPUS:85105008407
SN - 2040-2392
VL - 12
JO - Molecular Autism
JF - Molecular Autism
IS - 1
M1 - 29
ER -