首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Rostral and dorsal anterior cingulate cortex make dissociable contributions during antisaccade error commission.
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Rostral and dorsal anterior cingulate cortex make dissociable contributions during antisaccade error commission.

机译:在进行扫视运动错误时,前额带状和背侧扣带状皮层做出了明显的贡献。

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The anterior cingulate cortex (ACC) participates in both performance optimization and evaluation, with dissociable contributions from dorsal (dACC) and rostral (rACC) regions. Deactivation in rACC and other default-mode regions is important for performance optimization, whereas increased rACC and dACC activation contributes to performance evaluation. Errors activate both rACC and dACC. We propose that this activation reflects differential error-related involvement of rACC and dACC during both performance optimization and evaluation, and that these two processes can be distinguished by the timing of their occurrence within a trial. We compared correct and error antisaccade trials. We expected errors to correlate with an early failure of rACC deactivation and increased activation of both rACC and dACC later in the trial. Eighteen healthy subjects performed a series of prosaccade and antisaccade trials during event-related functional MRI. We estimated the hemodynamic responses for error and correct antisaccades using a finite impulse-response model. We examined ACC activity by comparing error and correct antisaccades with a fixation baseline and error to correct antisaccades directly. Compared with correct antisaccades, errors were characterized by an early bilateral failure of deactivation of rACC and other default-mode regions. This difference was significant in rACC. Errors also were associated with increased activity in both rACC and dACC later in the trial. These results show that accurate performance involves deactivation of the rACC and other default mode regions and suggest that both rACC and dACC contribute to the evaluation of error responses.
机译:前扣带回皮层(ACC)参与性能优化和评估,背侧(dACC)和延髓(rACC)区域的贡献不明显。 rACC和其他默认模式区域中的停用对于性能优化很重要,而增加的rACC和dACC激活则有助于性能评估。错误会激活rACC和dACC。我们建议这种激活反映了在性能优化和评估过程中rACC和dACC的与错误相关的差异,并且可以通过在试验中出现它们的时间来区分这两个过程。我们比较了正确和错误的反扫视试验。我们预计该错误与rACC失活的早期失败以及rACC和dACC的激活增加有关。 18名健康受试者在事件相关的功能性MRI期间进行了一系列晕厥和反晕厥试验。我们使用有限的脉冲响应模型估计了错误的血液动力学响应并纠正了抗s视。我们通过将错误和正确的抗眼球与固定基线和错误进行比较来检查ACC活性,直接纠正错误的抗眼球。与正确的抗扫视能力相比,错误的特征是早期的双边失败导致rACC和其他默认模式区域的失活。这种差异在rACC中是显着的。错误还与rACC和dACC的活性增加有关。这些结果表明,准确的性能涉及rACC和其他默认模式区域的停用,并且表明rACC和dACC均有助于评估错误响应。

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