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Causal inference accounts for heading perception in the presence of object motion

机译:因果推理解释了物体运动时的航向感知

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摘要

The brain infers our spatial orientation and properties of the world from ambiguous and noisy sensory cues. Judging self-motion (heading) in the presence of independently moving objects poses a challenging inference problem because the image motion of an object could be attributed to movement of the object, self-motion, or some combination of the two. We test whether perception of heading and object motion follows predictions of a normative causal inference framework. In a dual-report task, subjects indicated whether an object appeared stationary or moving in the virtual world, while simultaneously judging their heading. Consistent with causal inference predictions, the proportion of object stationarity reports, as well as the accuracy and precision of heading judgments, depended on the speed of object motion. Critically, biases in perceived heading declined when the object was perceived to be moving in the world. Our findings suggest that the brain interprets object motion and self-motion using a causal inference framework.
机译:大脑从模棱两可和嘈杂的感觉暗示中推断出我们的空间取向和世界特性。在存在独立移动的对象的情况下判断自运动(航向)会带来一个具有挑战性的推理问题,因为对象的图像运动可能归因于对象的运动,自运动或两者的某种组合。我们测试对航向和物体运动的感知是否遵循规范因果推理框架的预测。在双重报告任务中,对象指示对象在虚拟世界中是静止还是运动,同时判断其前进方向。与因果推理预测一致,对象平稳性报告的比例以及航向判断的准确性和准确性取决于对象运动的速度。至关重要的是,当物体在世界上移动时,感知航向的偏差会减少。我们的发现表明,大脑使用因果推理框架来解释物体的运动和自我运动。

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