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1.
目的 探讨引导想象训练对老年髋关节置换术患者疼痛、睡眠情况和精神状态的影响。方法 选取2020年6月~2020年10月某三甲医院收治的拟行髋关节置换手术的老年患者90例,采用随机数字表法将其分为对照组(n=46)和试验组(n=44)。对照组给予基于ERAS的围手术期护理,试验组在对照组的基础上进行运动引导想象训练。分别在术前、术后当天、术后第1天、术后第3天和术后第7天采用疼痛数字分级法(NRS)、理查兹-坎贝尔睡眠量表(RCSQ)和简易智能精神状态评价量表(MMSE)测评患者的疼痛、睡眠及精神状况;同时使用护理谵妄评分(NU_DESC)判断患者住院期间是否发生谵妄。结果 共有87例患者完成研究,总完成率为96.67%。重复测量方差分析结果显示两组患者疼痛、睡眠及精神变化存在时间效应、组间效应及交互效应;术后试验组谵妄发生率低于对照组,差异均有统计学意义(P<0.05)。结论 运动引导想象训练有助于改善老年全髋关节置换患者的疼痛程度、睡眠情况和精神状态。 相似文献
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Comparison of cerebral activation between motor execution and motor imagery of self-feeding activity
Moemi Matsuo Naoki Iso Kengo Fujiwara Takefumi Moriuchi Daiki Matsuda Wataru Mitsunaga Akira Nakashima Toshio Higashi 《中国神经再生研究》2021,16(4):778
Motor imagery is defined as an act wherein an individual contemplates a mental action of motor execution without apparent action. Mental practice executed by repetitive motor imagery can improve motor performance without simultaneous sensory input or overt output. We aimed to investigate cerebral hemodynamics during motor imagery and motor execution of a self-feeding activity using chopsticks. This study included 21 healthy right-handed volunteers. The self-feeding activity task comprised either motor imagery or motor execution of eating sliced cucumber pickles with chopsticks to examine eight regions of interest: pre-supplementary motor area, supplementary motor area, bilateral prefrontal cortex, premotor area, and sensorimotor cortex. The mean oxyhemoglobin levels were detected using near-infrared spectroscopy to reflect cerebral activation. The mean oxyhemoglobin levels during motor execution were significantly higher in the left sensorimotor cortex than in the supplementary motor area and the left premotor area. Moreover, significantly higher oxyhemoglobin levels were detected in the supplementary motor area and the left premotor area during motor imagery, compared to motor execution. Supplementary motor area and premotor area had important roles in the motor imagery of self-feeding activity. Moreover, the activation levels of the supplementary motor area and the premotor area during motor execution and motor imagery are likely affected by intentional cognitive processes. Levels of cerebral activation differed in some areas during motor execution and motor imagery of a self-feeding activity. This study was approved by the Ethical Review Committee of Nagasaki University(approval No. 18110801) on December 10, 2018. 相似文献
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IntroductionThe use of motor imagery (MI) has been shown to offer significant improvements in movement performance in sports, and is now receiving a lot of attention as a relatively new therapeutic approach which can be applied in rehabilitation. However, the effects of MI on the quality of movement is still unclear. This study explored the immediate effect of MI on reaching tasks in healthy subjects.Methods17 healthy individuals (33 ± 8.2 years) participated in the study. Surface electromyography (sEMG) and inertial measurement units (IMU) were used to identify muscle activity and angular velocity in both upper limbs. Participants performed a reach task using their dominant and non-dominant arms at their most comfortable speed, they were then asked to imagine themselves performing the same reaching task, and finally they were asked to repeat the reaching task.ResultsSignificant decreases were seen in the muscle activity between pre and post MI for Biceps Brachii, Anterior Deltoid and Triceps Brachii. In addition, a significant increase was seen in extension angular velocity post MI.DiscussionThe results indicate that the use of MI just after physical practice appears to have an immediate effect on the muscle activity and kinematics during a reaching task, which may suggest an improved quality of movement.ConclusionThis proof of concept study shows the potential for MI to improve the quality of performing reaching task and offers a possible therapeutic option for Stroke survivors and other neuromuscular disorders. 相似文献
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利用脑网络研究经颅直流电刺激(tDCS)对脑功能机制和脑皮层状态的影响具有重要意义。本研究基于偏定向相干因果分析方法,构建被试在不同tDCS刺激实验范式下进行运动想象的因效性脑网络。以因效性脑网络的功能脑区通道信息流入、流出率为局部特征,平均聚类系数、全局效率为全局特征,分析研究tDCS对运动想象脑网络特征的影响。16名健康被试均为右利手。结果显示,被试执行左手运动想象下,伪刺激和阳极刺激C4后的C4通道信息流出率、流入率、平均聚类系数和全局效率分别为0.142±0.014、0.193±0.013、0.585±0.046、0.347±0.031和0.223±0.025、0.258±0.023、0.817±0.021、0.491±0.091,均存在显著性差异(P<0.05);tDCS阴极刺激C4后的C4通道信息流出率、平均聚类系数和全局效率分别为0.109±0.009、0.356±0.037和0.252±0.024,与伪刺激相比差异显著(P<0.05),C4通道信息流入率为0.184±0.008,与伪刺激相比无显著差异(P>0.05)。研究表明,阳极tDCS有效激活该脑区皮层的活跃性,使脑区信息交流更加频繁,增加脑网络的聚集程度,提高脑网络的连通性;阴极tDCS刺激则会抑制脑区皮层的活跃性,降低了脑区信息的流出,减少脑网络的聚集程度,降低脑网络的连通性。 相似文献
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In this article, we examine the social management of fatness via an analysis of 4 years of participant‐observation in military‐style fitness boot camps and interviews with camp participants, trainers and organisers/owners. We begin by focusing on popular imagery of the ‘boot camp’. The boot camp model takes various forms; yet, whether it involves civilian participants, as on reality television shows, or the imagined military ones of films, the boot camp model emphasises the re‐fashioning of the individual via the disciplining of bodies and selves. Such constructions of boot camps were employed by our respondents to lay claim to identities which highlight their hard work, strength of character, fundamental ‘goodness’ and self‐discipline, as those qualities are demonstrated through the body – even though participants’ actual bodies change little at camp. Such meanings stand in direct contradiction to broader social constructions of fatness and participants’ own negative perceptions of fat people. Moreover, even within the camps themselves, such identity claims are contested, both by camp trainers and by slimmer and ‘fitter’ attendees. These counterclaims are grounded in ideas about the characterological implications of the fat body, beliefs about the purpose of boot camp and notions of the body's capacity for change. 相似文献
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Dennis Boye Larsen Thomas Graven-Nielsen Shellie Ann Boudreau 《The journal of pain》2019,20(11):1307-1316
Musculoskeletal pain reduces corticomotor excitability (CE) and methods modulating such CE reduction remain elusive. This study aimed to modulate pain-induced CE reduction by performing action observation and motor imagery (AOMI) during experimental muscle pain. Twelve healthy participants participated in 3 cross-over and randomized sessions separated by 1 week. During the AOMI session subjects performed an AOMI task for 10 minutes. In the AOMI+PAIN session, hypertonic saline was injected in the first dorsal interosseous muscle before performing the AOMI task. In the PAIN session, participants remained at rest for 10 minutes or until pain-resolve after the hypertonic saline injection. CE was assessed using transcranial magnetic stimulation motor-evoked potentials (TMS-MEPs) of the first dorsal interosseous muscle at baseline, during, immediately after, and 10 minutes after AOMI and/or PAIN. Facilitated TMS-MEPs were found after 2 and 4 minutes of AOMI performance (P < .017) whereas a reduction in TMS-MEPs occurred at 4 minutes (P < .017) during the PAIN session. Performing the AOMI task during pain counteracted the reduction in CE, as evident by no change in TMS-MEPs during the AOMI+PAIN session (P > .017). Pain intensity was similar between the AOMI+PAIN and PAIN sessions (P = .71). This study, which may be considered a pilot, demonstrated the counteracting effects of AOMI on pain-induced decreases in CE and warrants further studies in a larger population.PerspectiveThis is the first study to demonstrate a method counteracting the reduction in CE associated with acute pain and advances therapeutic possibilities for individuals with chronic musculoskeletal pain. 相似文献