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Kal, E.

Publications and source records attributed to Kal, E..

2 recordsLinked to original sources

Anxiety-related attentional changes and their relation to freezing of gait in people with Parkinson's: a cross validation of the Adapted Gait Specific Attentional Profile (G-SAPa)

BACKGROUNDAnxiety often exacerbates freezing of gait (FOG) in people with Parkinsons (PwP). Research shows that anxiety-related attentional processes and associated processing inefficiencies, such as conscious movement processing (CMP) and ruminations, can substantially impact movement control. However, the impact of these attentional characteristics on FOG remains largely unexplored. OBJECTIVESTo (i) validate an adapted 10-item (1-5 Likert scale) Gait-Specific Attentional Profile in PwP (G-SAP-PD), and (ii) assess if G-SAP-PD-subscales (Physiological Arousal, CMP, Rumination, and Processing Inefficiencies) are associated with self-reported FOG frequency. METHODSWe recruited 440 PwP (Mage=65.5{+/-}8.7; 5.8{+/-}5.0 years since diagnosis) across the UK. Participants completed the G-SAP-PD, and questions on demographics, medical background, and FOG frequency (scale of 0: "never freeze" to 4: "every day"). We assessed G-SAP-PDs internal consistency (alpha), structural validity (confirmatory factor analysis), and subscale scores associations with FOG frequency (ordinal regression). RESULTSThe G-SAP-PDs showed high internal consistency (>0.61) and acceptable/good model fit (comparative fit index=0.976). Physiological Arousal and CMP subscale scores were less strongly correlated for PwP with FOG (PwP+FOG, r=.52, p=0.001) compared to (PwP-FOG, r=.79; p=0.001). Higher Rumination (OR: 1.323, 95%CI: [1.214-1.440]) and Physiological Arousal (OR: 1.195, 95%CI: [1.037-1.377]) were significantly associated with higher FOG frequency, when controlling for age, time since diagnosis and balance/gait problems. CONCLUSIONSThe G-SAP-PD is a reliable and convenient tool to measure and identifying potentially maladaptive anxiety-related attentional processes that might impact FOG. Our data suggests a relative inability of PwP+FOG to engage in compensatory goal-directed attentional focus. Further study is warranted. Plain Language SummaryAnxiety can worsen freezing of gait in people with Parkinsons. It often leads to worrisome thoughts, and influences how people pay attention to their walking. We think that these changes in attention can substantially influence peoples movement - for better or worse. However, there is a lack of research on this topic, and reliable assessment tools are missing. Therefore, we tested if we could assess changes in the thoughts and attention of people with Parkinsons, using a questionnaire (Gait-Specific Attentional Profile (G-SAP-PD)), previously used in older adults without Parkinsons. This questionnaire aims to measure peoples perception of their physiological arousal (how anxious they feel), conscious movement (attention they direct to walking), rumination (worrisome thoughts), and thinking efficiency (the ability to focus on different tasks). We also investigated if people who experience freezing show different attentional characteristics compared to people who do not experience freezing. Four-hundred and forty people with Parkinsons filled the G-SAP-PD questionnaire. We confirmed the questionnaires reliability, and found that people who indicated to have more worrisome thoughts and greater physiological arousal also experienced freezing more often. Our findings suggest that people with Parkinsons who experience freezing were less able to consciously direct attention to the task at hand (taking a step) when experiencing high physiological arousal. The G-SAP-PD represents a short and convenient tool for identifying potentially negative attentional and thinking processes that may increase freezing frequency. With further research it could be used as a predictive tool and provide possible novel treatments to reduce freezing frequency.

neuroscience↗

The effects of conscious movement processing on the neuromuscular control of posture

Maintaining balance is thought to primarily occur sub-consciously. Occasionally, however, individuals will direct conscious attention towards balance, e.g., in response to a threat to balance. Such conscious movement processing (CMP) increases the reliance on attentional resources and may disrupt balance performance. However, the underlying changes in neuromuscular control remain poorly understood. We investigated the effects of CMP (manipulated using verbal instructions) on neural control of posture in twenty-five adults (11 females, mean age = 23.9, range = 18-33). Participants performed 90-second, bipedal stance balance trials in high- and low-CMP conditions, during both stable (solid surface) and unstable (foam) task conditions. Postural sway amplitude, frequency and complexity were used to assess postural control. Surface EMG was recorded bilaterally from lower leg muscles (Soleus, Tibialis Anterior, Gastrocnemius Medialis, Peroneus Longus) and intermuscular coherence (IMC) was assessed for 12 muscle pairs across four frequency bands. We observed significantly increased sway amplitude, and decreased sway frequency and complexity in the high- compared to the low-CMP conditions. All sway variables increased in the unstable compared to the stable conditions. We observed reduced beta band IMC between several muscle pairs during high- compared to low-CMP, but these findings did not remain significant after controlling for multiple comparisons. Finally, IMC significantly increased in the unstable conditions for most muscle combinations and frequency bands. In all, results tentatively suggest that CMP-induced changes in sway outcomes may be facilitated by reduced beta-band IMC, but these findings need to be replicated before they can be interpreted more conclusively.

neuroscience↗