Validity of the distress tolerance inventory in predicting response to the Cold-Pressor Test.

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
E. Siegel, G. P. Cassidy, M. Telch
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Abstract

Distress intolerance-a broad band dispositional variable has been shown to serve as a transdiagnostic risk factor for psychopathology. We investigated the predictive validity of the physical and emotional subscales of the Distress Tolerance Inventory (DTI) on behavioral responding (immersion time) and moment-to-moment subjective distress ratings to the Cold-Pressor Test. College students (N = 134) completed self-report questionnaires indexing physical and emotional distress tolerance and then completed a cold pressor challenge. The DTI displayed convergent validity with several well-established self-report measures assessing distress tolerance (i.e. DTS, PCS, DIS). Participants' scores on the DTI physical subscale (but not the DTS or DTI emotional subscale) predicted participants' immersion time on the cold pressor challenge, thus supporting the construct validity of the DTI physical distress subscale. The DIS also predicted immersion time, though its internal consistency was marginal. These data suggest that the DTI is a valid measure for both emotional and physical distress tolerance and should be considered as a viable alternative to the DTS, especially for investigative domains involving physical distress such as chronic pain, or screening personnel for physically demanding tasks.
预测冷压测试反应的痛苦耐受量表的有效性。
压力不耐受--一种宽带的性格变量,已被证明是精神病理学的跨诊断风险因素。我们研究了压力耐受量表(DTI)的身体和情绪分量表对冷压测试的行为反应(浸泡时间)和瞬间主观压力评分的预测有效性。大学生(134 人)填写了身体和情绪压力耐受性自我报告问卷,然后完成了冷压挑战。DTI 与几种成熟的评估痛苦耐受性的自我报告测量方法(如 DTS、PCS、DIS)具有趋同效度。参与者在 DTI 体力分量表(而非 DTS 或 DTI 情绪分量表)上的得分可以预测参与者在冷压挑战中的浸入时间,从而支持了 DTI 体力痛苦分量表的构建有效性。尽管 DIS 的内部一致性不佳,但它也能预测浸入时间。这些数据表明,DTI 是一种有效的情绪和身体困扰耐受度测量方法,应被视为 DTS 的可行替代方法,尤其是在涉及身体困扰(如慢性疼痛)的调查领域,或筛选人员执行体力要求较高的任务时。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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