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Brain systems involved in arithmetic with positive versus negative numbers

机译:血液系统涉及阳性与负数的算术

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摘要

Positive number arithmetic is based on combining and separating sets of items, with systematic differences in brain activity in specific regions depending on operation. In contrast, arithmetic with negative numbers involves manipulating abstract values worth less than zero, possibly involving different operation-activity relationships in these regions. Use of procedural arithmetic knowledge, including transformative rules like "minus a negative is plus a positive," may also differ by operand sign. Here, we examined whether the activity evoked in negative number arithmetic was similar to that seen in positive problems, using region of interest analyses (ROIs) to examine a specific set of brain regions. Negative-operand problems demonstrated a positive-like effect of operation in the inferior parietal lobule with more activity for subtraction than addition, as well as increased activity across operation. Interestingly, while positive-operand problems demonstrated the expected addition > subtraction activity difference in the angular gyrus, negative problems showed a reversed effect, with relatively more activity for subtraction than addition. Negative subtraction problems may be understood after translation to addition via rule, thereby invoking more addition-like activity. Whole-brain analyses showed increased right caudate activity for negative-operand problems across operation, indicating a possible overall increase in usage of procedural rules. Arithmetic with negative numbers may thus shows some operation-activity relationships similar to positive numbers, but may also be affected by strategy. This study examines the flexibility of the mental number system by exploring to what degree the processing of an applied usage of a difficult, abstract mathematical concept is similar to that for positive numbers. Hum Brain Mapp 35:539-551, 2014.
机译:正数算法基于组合和分离的物品,根据操作,特定区域中的大脑活动的系统差异。相比之下,具有负数的算术涉及操纵价值小于零的抽象值,可能涉及这些区域中的不同操作活动关系。使用程序算术知识,包括变革规则,如“减去负数是正常”,也可能因操作数标志而异。在这里,我们检查了负数算术中诱捕的活动是否类似于在正面问题中看到的,使用兴趣区分析(ROI)来检查特定的大脑区域。负操作数问题证明了较低垂直叶片中的阳性效果,具有比添加的减法更多的活动,以及跨操作的活动增加。有趣的是,虽然积极的操作数问题证明了角度转象的预期添加剂>减法活动差异,但负面问题显示出逆转效果,并且减法的活性比添加更多。在转换以通过规则添加之后可以理解负减法问题,从而调用更加加法的活动。全脑分析表明,在运营中的负面操作数问题表明,右尾部活动增加,表明程序规则使用的总体增加。因此,具有负数的算术可以显示与正数相似的一些操作活动关系,但也可能受到策略的影响。本研究通过探索了难度,抽象的数学概念的应用使用的程度来检查精神号码系统的灵活性。 HUM脑MAPP 35:539-551,2014。

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