Dataset Open Access

Prediction error-related memory enhancement depends on the neural state surrounding the prediction error event

Kaja Loock; Hendrik Heinbockel; Felix Kalbe; Lars Schwabe

Prediction errors (PEs) can enhance memory for preceding events. While such PE-related memory enhancements are critical for understanding adaptive memory, their underlying mechanisms are not fully understood. Using electroencephalography (EEG) and neuro-navigated transcranial magnetic stimulation (TMS) in combination with multivariate pattern analysis, this pre-registered study aimed to elucidate the brain mechanisms underlying PE effects on memory. Specifically, we tested whether PEs trigger a neural reactivation of the preceding stimulus and whether the PE-induced effects on memory depend on a specific neural state before the PE. We also examined whether inhibitory TMS over the superior parietal cortex (SPC) reduces PE effects on memory. A total of 118 participants (male and female) received sham or inhibitory theta-burst stimulation over the SPC before completing an incidental encoding-fear learning task. In this task, participants learned trial-unique stimuli and predicted whether these would be followed by an electric shock, while EEG was recorded. Recognition memory was tested 24 hours later. Our findings show that signed PEs enhance subsequent memory, depending on theta and alpha oscillations as well as neural stimulus (category) reactivation shortly before the PE. Moreover, this memory enhancement was associated with post-PE theta but not with PE-driven stimulus (category) reinstatement. Theta-burst stimulation over the SPC led to a more conservative mnemonic response bias but left the PE effect on memory unaffected. Together, our findings reveal that PE effects on memory formation are influenced by neural states and representations surrounding the PE, providing new insights into the neural mechanisms of adaptive memory formation.

Analysis folder contains all relevant scripts for data analysis. Study materials folder includes materials and experimental task. Questionnaire data includes questionnaire data from all subjects in one file + explanations. Raw data is chunked into folders of mulitple subjects and includes EEG data, SCR data and behavioral data of each subject.
Files (294.0 GB)
Name Size
Analysis.zip
md5:5b90343b9f90d1d02546c30f13f8989e
182.1 kB Download
Materials_and_tasks.zip
md5:2574e5140fd1abb6dcbb23cca628e22f
162.9 MB Download
questionnaire_data.zip
md5:16166a2d1b3b48554bdf2b39b183b1b3
151.1 kB Download
rawData_VP_002-VP_010.zip
md5:7d9f6f2a62d6f4b654f38750dbf989c6
16.4 GB Download
rawData_VP_012-VP_020.zip
md5:8828fb1e67ba3b10bb333d57d3a49355
20.4 GB Download
rawData_VP_021-VP_030.zip
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23.4 GB Download
rawData_VP_031-VP_040.zip
md5:b3f9df315417e1101902d7a694e84c5a
21.1 GB Download
rawData_VP_041-VP_050.zip
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23.9 GB Download
rawData_VP_051-VP_060.zip
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19.7 GB Download
rawData_VP_061-VP_070.zip
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25.4 GB Download
rawData_VP_071-VP_079.zip
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21.6 GB Download
rawData_VP_081-VP_090.zip
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19.0 GB Download
rawData_VP_091-VP_100.zip
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22.1 GB Download
rawData_VP_102-VP_110.zip
md5:d404b7aa42b08cce4224db0701710176
21.3 GB Download
rawData_VP_112-VP_119.zip
md5:afcebb3f257e7bf00a3c6f8d5b4b0474
19.0 GB Download
rawData_VP_121-VP_130.zip
md5:1d2c7cf8ecfb66cfa5975755a4d6c401
23.1 GB Download
rawData_VP_131_VP-137.zip
md5:72ed280d1bb2f1b58a4ba36c77de7be5
17.6 GB Download

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