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Short-term retention of proprioceptive information

机译:短期保留了预言信息

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The Joint Position Reproduction test (JPR), one of the most widely used measurements to estimate proprioceptive accuracy, requires the short term storage of proprioceptive information. It has been suggested that visuospatial sketchpad plays a fundamental role in the memorization of proprioceptive information. The current study aimed to investigate this assumption. To do so, we developed and used a novel JPR protocol to measure the retention capacity with respect to sequences of different positions. Our goal was to develop the original task further to make it comparable with other widely used short-term memory measurements, in which the memory capacity was determined by the number of the items participants retain (memory span). We compared participants' (N=39) performance in this task to that of results of Corsi block-tapping task (capacity of the visuospatial sketchpad) and Digit span task (capacity of the phonological loop). Proprioceptive memory capacity did not correlate either with spatial or verbal memory capacity. The exploratory analysis revealed that proprioceptive span correlated positively with the performance if 5 joint positions had to be retained. Further associations with verbal span for 6 or 7 positions, and spatial span for 5 positions were found. Our findings do not support the idea that visuospatial sketchpad plays a fundamental role in the storage of proprioceptive information. The independence of span measures indicates that proprioceptive information might be stored in a subsystem independent of the visuospatial sketchpad or phonological loop.
机译:联合位置再现测试(JPR)是估计本体感觉准确性最广泛使用的测量方法之一,需要短期存储本体感觉信息。有人认为,视觉空间画板在本体感觉信息的记忆中起着基础性作用。目前的研究旨在调查这一假设。为此,我们开发并使用了一种新的JPR协议来测量不同位置序列的保留能力。我们的目标是进一步发展原始任务,使其与其他广泛使用的短期记忆测量方法相比较,在短期记忆测量中,记忆容量由参与者保留的项目数量(记忆广度)决定。我们比较了参与者(N=39)在这项任务中的表现,以及Corsi块敲击任务(视觉空间画板的容量)和数字广度任务(语音回路的容量)的结果。本体感觉记忆能力与空间或语言记忆能力均无相关性。探索性分析显示,如果必须保留5个关节位置,本体感觉广度与表现呈正相关。此外,研究还发现,6个或7个位置的语言广度和5个位置的空间广度存在进一步的关联。我们的研究结果不支持视觉空间画板在本体感受信息存储中起基础作用的观点。跨度测量的独立性表明,本体感受信息可能存储在独立于视觉空间画板或语音回路的子系统中。

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