Kahrimanovic Mirela, Tiest Wouter M Bergmann, Kappers Astrid M L
Utrecht University, 3584 CH Utrecht, The Netherlands.
Atten Percept Psychophys. 2010 Feb;72(2):517-27. doi: 10.3758/APP.72.2.517.
Haptic perception of volume (Experiment 1) and surface area (Experiment 2) was studied with tetrahedrons, cubes, and spheres as stimuli (2-14 cm(3)). The results of Experiment 1 showed that subjects perceived a tetrahedron to be larger in volume than either a cube or a sphere of the same physical volume and that they perceived a cube to be larger than a sphere. This pattern was independent of object size. The biases were smaller in conditions with mass information than in those without. The average biases in the different conditions ranged from 7% to 67%. Analyses revealed that the subjects apparently based their volume judgments on the surface area of objects. Experiment 2 showed that surface area itself could be perceived accurately, almost independently of the objects' shape. Experiment 3 investigated volume perception of objects in the absence of surface area (wire-frame objects) and showed larger biases than those observed with solid objects. With wire-frame objects, the maximal distance between two vertex points was probably the dimension on which the volume judgment was based. In conclusion, haptic volume perception of geometric objects has to be inferred from other object properties, but surface area can be perceived unbiased.
以四面体、立方体和球体(体积为2 - 14立方厘米)为刺激物,研究了对体积(实验1)和表面积(实验2)的触觉感知。实验1的结果表明,受试者感觉四面体的体积比相同物理体积的立方体或球体更大,且感觉立方体比球体更大。这种模式与物体大小无关。有质量信息时的偏差比没有时更小。不同条件下的平均偏差在7%至67%之间。分析表明,受试者显然是根据物体的表面积来进行体积判断的。实验2表明,几乎可以独立于物体形状准确感知表面积本身。实验3研究了在没有表面积的情况下(线框物体)物体的体积感知,结果显示偏差比实心物体时更大。对于线框物体,两个顶点之间的最大距离可能是体积判断所依据的维度。总之,对几何物体的触觉体积感知必须从其他物体属性中推断出来,但表面积可以无偏差地被感知。