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21.
Abstract Traumatic dislocation of the trapeziometacarpal joint is rare. A stable reduction should be accomplished as soon as possible,
usually with K-wiring. In this case of persistent instability a semi-constrained prosthesis was applied successfully. 相似文献
22.
23.
Summary This paper describes a new technique for the division of syndactyly. The commissure is reconstructed by a dorsal trilobed flap and a zig zag incision which produces triangular flaps for the side of the digits. This technique does not require use of a skin graft. Seventeen syndactylies in fourteen children, nine incomplete (six congenital and three secondary to burn) and eight complete syndactylies were treated by this technique. The results after a maximum of twelve months follow-up and the advantages of the technique are discussed.[/ab] 相似文献
24.
Wilfred C. G. Peh F.R.C.R. Louis A. Gilula M.D. Max R. Kasselt M.D. 《Emergency radiology》1997,4(4):255-257
Automobile air bag inflation-caused injuries to the chest, neck, and face, in particular the orbital contents, are infrequent but recognized. We report the occurrence of multiple digital fractures in the left hand of a 30-yearold male driver as a result of sudden air bag inflation. Continued monitoring of the potential hazards of this device is suggested. 相似文献
25.
Vincent R. Hentz M.D. Philip S. Green M.S. Marcel Arditi Ph.D. 《Skeletal radiology》1987,16(6):474-480
Ultrasonic transmission imaging has already demonstrated potential for evaluating structures in the hand. In this study, a cadaver hand was imaged using a transmission scanner with improved imaging capability. The hand was then frozen and serially sectioned and comparisons were made between the sectional anatomy and the corresponding image. Bone (in silhouette), muscle, cartilage, and tendon were visualized with high resolution. 相似文献
26.
Zehr EP Haridas C 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》2003,149(2):260-266
Stimulation of cutaneous nerves innervating the hand evokes prominent reflexes in many arm muscles during arm cycling. We
hypothesized that the mechanisms controlling reflex modulation during the rhythmic arm swing of walking would be similar to
that documented during arm cycling. Thus, we expected cutaneous reflexes to be modulated by position in the walking cycle
(phase dependence) and be different when walking compared to contraction while standing (task dependence). Subjects performed
static postures similar to those occurring during walking and also walked on a treadmill while the superficial radial nerve
was electrically stimulated pseudorandomly throughout the step cycle. EMG was recorded bilaterally from upper limb muscles
and kinematic recordings were obtained from the elbow and shoulder joints. Step cycle information was obtained from force-sensing
insoles. Analysis was conducted after averaging contingent upon the occurrence of stimulation in the step cycle. Phase-dependent
modulation of cutaneous reflexes at early (~50–80 ms) and middle (~80–120 ms) latencies was observed. Coordinated bilateral
reflexes were seen in posterior deltoid and triceps brachii muscles. Task dependency was seen in that reflex amplitude was
only correlated with background EMG during static contraction (75% of comparisons for both early and middle latency reflexes).
During walking, no significant relationship between reflex amplitude and background EMG level was found. The results show
that cutaneous reflex modulation during rhythmic upper limb movement is similar to that seen during arm cycling and to that
observed in leg muscles during locomotion. These results add to the evidence that, during cyclical movements of the arms and
legs, similar neural mechanisms observed only during movement (e.g. central pattern generators) control reflex output.
Electronic Publication 相似文献
27.
Alen Hajnal Sergio Fonseca Jeffrey M. Kinsella-Shaw Paula Silva Claudia Carello M.T. Turvey 《Neuroscience letters》2007
Nonvisual perceptions of a wielded object's spatial properties are based on the quantities expressing the object's mass distribution, quantities that are invariant during the wielding. The mechanoreceptors underlying the kind of haptic perception involved in wielding – referred to as effortful, kinesthetic, or dynamic touch – are those embedded in the muscles, tendons, and ligaments. The present experiment's focus was the selectivity of this muscle-based form of haptic perception. For an occluded rod grasped by the hand at some intermediate position along its length, participants can attend to and report selectively the rod's full length, its partial lengths (fore or aft of the hand), and the position of the grip. The present experiment evaluated whether participants could similarly attend selectively when wielding by foot. For a given rod attached to and wielded by foot or attached to (i.e. grasped) and wielded by hand, participants reported (by magnitude production) the rod's whole length or fractional length leftward of the point of attachment. On measures of mean perceived length, accuracy, and reliability, the degree of differentiation of partial from full extent achieved by means of the foot matched that achieved by means of the hand. Despite their neural, anatomical, and experiential differences, the lower and upper limbs seem to abide by the same principles of selective muscle-based perception and seem to express this perceptual function with equal facility. 相似文献
28.
Macefield VG Johansson RS 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》2003,152(2):143-149
Electrical stimulation of the digital nerves can cause short- and long-latency increases in electromyographic activity (EMG) of the hand muscles, but mechanical stimulation of primarily tactile afferents in the digits generally evokes only a long-latency increase in EMG. To examine whether such stimuli can elicit short-latency reflex responses, we recorded EMG over the first dorsal interosseous muscle when subjects (n=13) used the tip of the right index finger to restrain a horizontally oriented plate from moving when very brisk tangential forces were applied in the distal direction. The plate was subjected to ramp-and-hold pulling loads at two intensities (a 1-N load applied at 32 N/s or a 2-N load applied at 64 N/s) at times unpredictable to the subjects (mean interval 2 s; trial duration 500 ms). The contact surface of the manipulandum was covered with rayon—a slippery material. For each load, EMG was averaged for 128 consecutive trials with reference to the ramp onset. In all subjects, an automatic increase in grip force was triggered by the loads applied at 32 N/s; the mean onset latency of the EMG response was 59.8±0.9 (mean ± SE) ms. In seven subjects (54%) this long-latency response was preceded by a weak short-latency excitation at 34.6±2.9 ms. With the loads applied at 64 N/s, the long-latency response occurred slightly earlier (58.9±1.7 ms) and, with one exception, all subjects generated a short-latency EMG response (34.9±1.3 ms). Despite the higher background grip force that subjects adopted during the stronger loads (4.9±0.3 N vs 2.5±0.2 N), the incidence of slips was higher—the manipulandum escaped from the grasp in 37±5% of trials with the 64 N/s ramps, but in only 18±4% with the 32-N/s ramps. The deformation of the fingertip caused by the tangential load, rather than incipient or overt slips, triggered the short-latency responses because such responses occurred even when the finger pad was fixed to the manipulandum with double-sided adhesive tape so that no slips occurred. 相似文献
29.
Michaelsen SM Jacobs S Roby-Brami A Levin MF 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》2004,157(2):162-173
Previous studies have shown that patients with arm and hand paresis following stroke recruit an additional degree of freedom (the trunk) to transport the hand during reaching and use alternative strategies for grasping. The few studies of grasping parameters of the impaired hand have been case studies mainly focusing on describing grasping in the presence of particular impairments such as hemi-neglect or optic ataxia and have not focussed on the role of the trunk in prehension. We hypothesized that the trunk movement not only ensures the transport of the hand to the object, but it also assists in orienting the hand for grasping when distal deficits are present. Nineteen patients with chronic hemiparesis and seven healthy subjects participated in the study. Patients had sustained a stroke of non-traumatic origin 6–82 months previously (31±22 months) and had mild or moderate to severe arm paresis. Using a whole hand grasp, subjects reached and grasped a cylinder (35 mm) that was placed sagittally (T1) or at a 45° angle to the sagittal midline in the ipsilateral workspace (T2), both at about 90% arms length (10 trials per target). Eight infrared emitting diodes were placed on bony landmarks of the hand, arm and trunk and kinematic data were recorded by an optical motion analysis system (Optotrak) for 2–5 s at 120 Hz. Hand position and orientation were recorded by a Fastrack Polhemus system. Our results show that during goal-directed prehension tasks, individuals with hemiparesis oriented the hand more frontally for grasping and used more trunk anterior displacement or rotation to transport the hand to the target compared to healthy subjects. Despite these changes, the major characteristics of reaching and grasping such as grip aperture size, temporal coordination between hand transport and aperture formation and the relative timing of grip aperture were largely preserved. For patients with more severe distal impairments, the amount of trunk displacement was also correlated with a more frontal hand orientation for grasping. Furthermore, in healthy subjects and patients without distal impairments, the trunk movement was mostly related to proximal arm movements while in those with distal impairments, trunk movement was related to both proximal and distal arm movements. Data support the hypothesis that the trunk movement is used to assist both arm transport and hand orientation for grasping when distal deficits are present. 相似文献
30.
目的 刻画成都市2011—2017年暴雨洪涝与儿童手足口病(Hand, foot and mouth disease,HFMD)之间的短期滞后关系,并进一步量化在不同性别、年龄亚组中的效应,识别脆弱人群。方法 收集整理成都市2011年1月1日—2017年12月31日的15岁以下HFMD日发病数、气象因子和暴雨洪涝发生情况数据。以暴雨洪涝为关键自变量,运用准泊松分布滞后模型,探讨了暴雨洪涝发生后0~14天的滞后效应。结果 研究发现暴雨洪涝与儿童手足口病呈正相关关系。0~7天和0~14天的累积滞后效应分别为1.11(95% CI:1.01~1.22)和1.21 (95% CI:1.04~1.41)。性别和年龄亚组分析分别表明,男童和3岁以下儿童(<1岁婴儿和1~2岁幼儿亚组)存在单日滞后统计显著的正相关关系,且0~7天和0~14天的累积滞后均显著;女童的单日滞后没有统计学意义,仅0~14天累计滞后统计显著,且效应略低于男童(女童: RR =1.23(1.00~1.51),男童: RR =1.26(1.06~1.51));<1岁婴儿0~7天和0~14天的累积滞后效应最强,分别为1.26(95%CI:1.02~1.57)和1.68(95%CI:1.20~2.34)。结论 暴雨洪涝会增加儿童患HFMD的风险,尤其是男童和3岁以下的婴幼儿(对1岁以下的婴儿的影响最大)。利益相关者应充分意识到暴雨洪涝的健康风险。家庭、社区、学校和政府应共同努力,减少暴雨洪涝相关的儿童HFMD。 相似文献