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首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Enhanced learning of proportional math through music training and spatial-temporal training.
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Enhanced learning of proportional math through music training and spatial-temporal training.

机译:通过音乐训练和时空训练来增强比例数学的学习。

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摘要

It was predicted, based on a mathematical model of the cortex, that early music training would enhance spatial-temporal reasoning. We have demonstrated that preschool children given six months of piano keyboard lessons improved dramatically on spatial-temporal reasoning while children in appropriate control groups did not improve. It was then predicted that the enhanced spatial-temporal reasoning from piano keyboard training could lead to enhanced learning of specific math concepts, in particular proportional math, which is notoriously difficult to teach using the usual language-analytic methods. We report here the development of Spatial-Temporal Math Video Game software designed to teach fractions and proportional math, and its strikingly successful use in a study involving 237 second-grade children (age range six years eight months-eight years five months). Furthermore, as predicted, children given piano keyboard training along with the Math Video Game training scored significantly higher on proportional math and fractions than children given a control training along with the Math Video Game. These results were readily measured using the companion Math Video Game Evaluation Program. The training time necessary for children on the Math Video Game is very short, and they rapidly reach a high level of performance. This suggests that, as predicted, we are tapping into fundamental cortical processes of spatial-temporal reasoning. This spatial-temporal approach is easily generalized to teach other math and science concepts in a complementary manner to traditional language-analytic methods, and at a younger age. The neural mechanisms involved in thinking through fractions and proportional math during training with the Math Video Game might be investigated in EEG coherence studies along with priming by specific music.
机译:根据皮层的数学模型预测,早期音乐训练将增强时空推理。我们已经证明,学了六个月的钢琴课的学龄前儿童的时空推理能力得到了显着改善,而适当对照组的孩子却没有得到改善。然后可以预见,钢琴键盘训练会增强时空推理能力,从而可以增强对特定数学概念(尤其是比例数学)的学习,而众所周知,这很难使用常规的语言分析方法来教授。我们在此报告时空数学视频游戏软件的开发,该软件旨在教授分数和比例数学,并在一项涉及237名二年级儿童(年龄范围为6岁8个月至8岁5个月)的研究中取得了惊人的成功。此外,正如预期的那样,接受钢琴键盘训练和数学视频游戏训练的孩子在比例数学和分数上的得分明显高于接受控制训练和数学视频游戏的孩子。使用配套的数学视频游戏评估程序可以轻松测量这些结果。儿童视频数学游戏所需的培训时间非常短,他们很快就可以达到很高的表现水平。这表明,正如预期的那样,我们正在利用时空推理的基本皮质过程。这种时空方法很容易推广,可以以与传统语言分析方法互补的方式教授其他数学和科学概念,并且年龄较小。在数学视频游戏训练过程中,通过分数和比例数学进行思考的神经机制可能会在EEG相干性研究中以及通过特定音乐启动时进行研究。

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