一种基于约束的触觉体积探测技术

M. Ikits, J. D. Brederson, C. Hansen, Christopher R. Johnson
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引用次数: 65

摘要

我们提出了一种触觉渲染技术,该技术使用方向约束来促进体积数据集的增强探索模式。该算法通过沿局部参考系的轴线增量移动代理点来限制用户在特定方向上的运动。反作用力由代理和数据探针之间的弹簧耦合器产生,可以根据触觉界面的能力进行调整。次要的触觉效果,包括场力、摩擦和纹理,可以很容易地结合起来,以传达有关数据的附加特征的信息。我们用两个例子来说明这项技术:显示心肌层中的纤维取向和探索脑白质组织中的弥散张量纤维束。该方法的初步评估表明,触觉约束提供了一种直观的方法,或在体数据中显示方向信息。
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A constraint-based technique for haptic volume exploration
We present a haptic rendering technique that uses directional constraints to facilitate enhanced exploration modes for volumetric datasets. The algorithm restricts user motion in certain directions by incrementally moving a proxy point along the axes of a local reference frame. Reaction forces are generated by a spring coupler between the proxy and the data probe, which can be tuned to the capabilities of the haptic interface. Secondary haptic effects including field forces, friction, and texture can be easily incorporated to convey information about additional characteristics of the data. We illustrate the technique with two examples: displaying fiber orientation in heart muscle layers and exploring diffusion tensor fiber tracts in brain white matter tissue. Initial evaluation of the approach indicates that haptic constraints provide an intuitive means or displaying directional information in volume data.
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