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51.
目的观察骨髓间充质干细胞(BMSC)与自体腹膜桥接管联合移植修复盆腔自主神经损伤的效果.方法建立比格犬盆腔自主神经损伤模型,实验组以自体腹膜管填充胶原蛋白海绵+BMSC桥接于缺损神经两端;对照组改BMSC为生理盐水.正常对照组为自体神经移植.术后12周取材,标本切片行HE染色和神经纤维(NF)免疫组化染色.应用图像分析系统对选定数据进行测量.透射电镜观察实验组再生神经纤维超微结构.结果实验组与对照组比较再生神经纤维总数[(1742±185)根比(1131±262)根,P<0.01]、密度[(168±14)根/104μm2比(124±17)根/104μm2,P<0.01]、直径[3.83±0.22)μm比(3.28±0.41)μm,P<0.05]、面积百分比(0.32±0.07比0.21±0.08,P<0.05)差异均有统计学意义,与正常对照组比较差异均无统计学意义(P>0.05).实验组再生神经纤维结构清晰,形态接近正常.结论 BMSC与自体腹膜桥接管联合移植修复盆腔自主神经缺损再生神经纤维生长好,方法可行,与自体神经移植修复效果相当. 相似文献
52.
Frank Queisser Ralph Blüthner Dieter Bräuer Helmut Seidel 《European journal of applied physiology》1994,68(1):92-101
A group of 12 healthy men volunteered for the experiment. Electromyograms (EMG) were obtained from semispinalis capitis, splenius capitis, levator scapulae, and trapezius muscles. The flexion angle of the cervical spine was precisely adjusted to 0°, 10°, 20°, and 30° relative to the horizontal, with a constant angle of the atlanto-occipital joint. The subjects made eight short (about 2 s) vertical extension forces (6%, 12%,18%, 24%, 30%, 36%, 42%, and 48% of maximal voluntary peak contraction force). For each position, the centre of pressure under the head was determine as the basis for the calculation of the external lever arm. The presence of motor endplate regions was ascertained by multiple surface electrodes. The slopes of individual linear regression lines for the root mean square (rms)-values were dependent on the existence of endplates in the area of the electrodes — endplates caused smaller rms values per Newton metres of external torque. Significant intersubject differences between regression equations could not be eliminated by the normalization of EMG-parameters and/or torques. The elimination of gravity, the continuous monitoring of positions, and the consideration of localization of motor endplate regions were essential prerequisites for the acquisition of reliable relationships between EMG of different neck muscles and external torques. Two important conclusions were derived for the prediction of torques from EMG measurements: firstly, individual regression equations which take into account the position of the head and neck should be used; secondly, normalization procedures do not justify the application of average regressions to a group of subjects. 相似文献
53.
MA Mayoux-Benhamou JP Barbet F Bargy C Vallée M Revel 《Surgical and radiologic anatomy : SRA》1990,12(3):181-185
Summary Biomechanical models of the cervical spine require knowledge of the position, size and orientation of the individual muscles that act on the cervical spine. We have developed a technique to stereometrically measure anatomical specimens. The apparatus is composed of three graduated metallic rods, which slide along a fixed support. This method is accurate to map the anatomy of individual muscles and provides quantitative data on their lines of action. Results are obtained from one specimen. The computer processing of the collected data allows formulation of a three-dimensional model of the neck muscles in man.
Méthode d'étude anatomique quantitative des muscles de la nuqueEtude préliminaire
Résumé Pour élaborer un modèle biomécanique de la colonne cervicale, il faut connaître la position, la taille et l'orientation des différents muscles du cou. Nous avons mis au point une méthode de mesure stéréométrique sur des sujets anatomiques. L'appareil est composé de 3 axes métalliques gradués qui coulissent sur un support fixe. Cette technique permet une étude anatomique précise de chacun des muscles de la nuque, fournissant des données quantitatives sur les différents faisceaux ou lignes d'action. Les résultats sont obtenus sur un sujet. Leur traitement informatique permettra l'élaboration d'un modèle mathématique tridimensionnel des muscles du cou chez l'homme.相似文献
54.
Mice representing the twenty-second generation of selection for high and low open-field activity were tested on four different floor textures: soil, bedding, metal, and astroturf. Members of both groups were most active on soil and least active on the metal floor surface. Although floor texture significantly affected activity level, rank order of the high and low selected groups was maintained. In general, defecation scores were negatively correlated with activity. 相似文献
55.
In acute experiments on cats, the working capacity of the leg muscles during stimulation of the sciatic nerve was increased after division of the sciatic and femoral nerves. This effect was not due to changes in the circulation, for it persisted if the blood flow was stabilized. Increased working capacity was also manifested after partial deafferentation of the limb by division of the dorsal roots of the spinal cord or extirpation of the tibial bone marrow.Laboratory of Experimental Physiology, Latvian Research Institute of Experimental and Clinical Medicine, Riga. (Presented by Academician V. N. Chernigovskii.) Translated from Byulleten' Éksperimental'noi Biologii i Meditsiny, Vol. 79, No. 2, pp. 6–8, February, 1975. 相似文献
56.
T. D. Brown J. Patterson Stone J. H. Schuster D. C. Mears 《Medical & biological engineering & computing》1982,20(6):727-733
The effectiveness of external fixation in the stabilisation of pelvic ring fractures was studied in a laboratory cadaveric series. Shearing displacements occurring at sacroiliac joint and symphysis pubis dislocation sites, due to simplified longitudinal loading of the sacrum in an Instron unit, were monitored using variable-impedence transducers. The rigidity of fixation was compared for the Slätis and the Bonnel single anterior frames, for coupled and uncoupled double anterior frames, and for combined anterior-plus-posterior fixation achieved with separate transfixation pin clusters, with through-and-through pin clusters, or with a posterior screw plate. The data showed that the use of posterior fixation provided greatly enhanced stabilisation compared to that achieved with anterior fixation alone. The complex double anterior frames performed only slightly better than did the simpler single anterior frames. In no case, however, was it possible to recover rigidity levels approaching those of the intact pelvis. The results suggest that the transfixation pin arrangement is the most important determinant of pelvic fixation stability, and that further investigation of posterior screw-plate fixation is warranted. 相似文献
57.
Prof. I. M. L. Donaldson R. A. Dixon 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1980,38(3):245-255
Summary In cats, anaesthetized with chloralose and paralysed, the responses of units in the right lateral thalamus were recorded while the extrinsic ocular muscles (EOM) of the right eye were stretched in the dark. Phasic responses were found in all layers of the dorsal lateral geniculate nucleus (LGNd) and in the perigeniculate nucleus (PGN). A given unit usually responded to stretch of more than one EOM and thus to more than one direction of rotation of the eye in the orbit.
LGNd. Of a sample of 76 units in LGNd, 55 (72%) gave visual but no muscle responses and 21 (28%) responded to EOM stretch. In all, 40 units with EOM responses were examined and 25 of the 27 tested (93%) also had visual responses. Of the 40 units, 32 could be allocated to layers, thus: layer A, 8 (25%); layer A1, 20 (63%); layer B, 3 (9%); central interlaminar nucleus, 1 (3%). It is interesting that most of the EOM responses were found in layer A1 which receives the excitatory visual input from the eye whose EOM were stretched. Muscle responsive units occurred with ON- and OFF-centre visual responses of sustained and transient types.
PGN. In PGN, 21 units gave EOM responses and most of them were also excited by visual input.The conclusion is that the LGNd and PGN recieve an extraretinal proprioceptive signal which should be present during at least large saccadic eye movements. The anatomical pathways which may be involved and the significance of the signal are discussed briefly. 相似文献
58.
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
59.
R. G. Cutlip Dr. W. T. Stauber R. H. Willison T. A. McIntosh K. H. Means 《Medical & biological engineering & computing》1997,35(5):540-543
A dynamometer is designed and fabricated to measure the force output during static and dynamic muscle actions of the plantar
flexor muscles of anaesthetised rats in vivo. The design is based on a computer-controlled DC servomotor capable of angular
velocities in excess of 17.5 rad s−1. The system controls the range of motion, angular velocity and electrical stimulation of the muscles, while monitoring the
force output at the plantar surface of the foot. The force output is measured by a piezo-electric load cell that is rated
at 5 kg capacity. Angular velocity and position are measured by a DC tachometer and potentiometer, respectively. All measurement
devices are linear (r2=0.9998). The design minimises inertial loading during high-speed angular motions, with a variation in force output of less
than 0.2%. The dynamometer proves to be an accurate and reliable system for quantifying static and dynamic forces of rat plantar
flexor muscles in vivo. 相似文献
60.