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81.
Summary The axons of Purkinje cells are the sole corticonuclear afferents to the lateral nucleus. The terminal arborizations of these axons consist of many (30–50) varicose branchlets, which issue from a thick, myelinated parent axon. Each terminal plexus fills a conical field which penetrates the lateral nucleus radially encompassing the cell bodies and parts of the dendritic trees of approximately 40 neurons. The fields of neighboring Purkinje axons overlap considerably. The non-cortical axons are simple, usally unbranched varicose fibers of three sizes: (1) thick, with large varicosities, (2) medium sized with smaller varicosities, or (3) fine, delicate threads with beadlike varicosities. These axons cross the dendritic trees of successive neurons as they penetrate into the nucleus in a radial fashion.The configuration of the dendritic trees of neurons in the various parts of the nucleus—the multipolar neurons and the columnar neurons—can be related to the conical shape of the Purkinje axonal plexus. It is suggested that the organization of converging Purkinje cell axonal fields determines the pattern of input to the cells of the lateral nucleus, rather than the topographical arrangement of Purkinje cells in the cortex. The terminal arborizations of Purkinje cell axons adjacent to one another in the lateral nucleus need not necessarily arise from neighboring Purkinje cells in the cerebellar cortex.The relationships between neurons in the central columnar zone and in the swirled zones of the lateral nucleus with the two classes of afferents are discussed. It is suggested that by virtue of their slender profiles, each of the large columnar neurons falls into the field of one Purkinje cell axonal cone whereas elsewhere, the multipolar neurons tend to share their well spread dendrites with neighboring Purkinje axonal fields. The small neurons that span columns in the central zone are oriented to sample larger numbers of axonal inputs than are adjacent columnar neurons.Supported in part by U.S. Public Health Service Research Grants NS10536, NS03659, Training Grant NS 05591 from the National Institute of Neurological Diseases and Stroke, and a William F. Milton Fund Award from Harvard University.  相似文献   
82.
 The purpose of the present study was to examine the effect of maximal arm exercise on the skin blood circulation of the paralyzed lower limbs in persons with spinal cord injury (PSCI). Eight male PSCI with complete lesions located between T3 and L1 performed graded maximal arm-cranking exercise (MACE) to exhaustion. The skin blood flux at the thigh (SBFT) and that at the calf (SBFC) were monitored using laser-Doppler flowmeter at rest and for 15 s immediately after the MACE. The subject's mean peak oxygen uptake and peak heart rate was 1.41 ± 0.22 l · min–1 and 171.6 ± 19.2 beats · min–1, respectively. No PSCI showed any increase in either SBFT or SBFC after the MACE, when compared with the values at rest. These results suggest that the blood circulation of the skin in the paralyzed lower limbs in PSCI is unaffected by the MACE. Accepted: 12 September 1996  相似文献   
83.
We investigated the oxygen uptake (O2) response to exhaustive square wave exercise of approximately 2, 5 and 8 min duration in cycling and running. Nine males completed a ramp test and three square wave tests on a motorised treadmill and the same four tests on a cycle ergometer, throughout which gas exchange was assessed (Douglas bag method). The peak O2 from the ramp test was higher for running than for cycling [mean (SD): 58.4 (2.8) vs. 55.9 (3.7) ml.kg–1.min–1; P=0.04]. However O2max (defined as the highest O2 achieved in any of the four tests) did not differ between running and cycling [60.0 (2.9) vs. 58.5 (3.3) ml.kg–1.min–1; P=0.15]. The peak O2 was similar (P>0.1) for the 5 and 8 min square wave tests [98.5 (1.8) and 99.2 (2.3) %O2max for running; 97.0 (4.2) and 97.5 (2.0) %O2max for cycling] but lower (P<0.001) for the 2-min test [91.8 (2.5) and 89.9 (5.5) %O2max for running and cycling respectively]. O2 increased over the final two 30-s collection periods of the 2-min test for cycling [O2=0.18 (0.15) l.min–1; P<0.01] but not running [O2=0.00 (0.09) l.min–1; P=0.98]. We conclude that in the aerobically fit the peak O2 for square wave running or cycling at an intensity severe enough to result in exhaustion in approximately 2 min is below O2max. In running, O2 plateaus at this sub-maximal rate.  相似文献   
84.
The effects of variations in stroke volume on the intensity of cardiac stimuli was examined in a series of three experiments that empolyed classical psychophsical methods to assess heartbeat detection. Stroke volume was manipulated by passive body tilt and recorded using impedance cardiography while subjects performed heartbeat detection tasks. The postural manipulation generated little or no change in contractility or momentum but did produce substantial changes in stroke volume. However, this potential source of variation in cardiac stimulus magnitude did not influence either the precision of heartbeat detection or the temporal location of heartbeat sensations. It is concluded that the intensity dimension of the heartbeat stimulus is not determined by stroke volume.  相似文献   
85.
脑动脉DSA形态分析及其意义   总被引:3,自引:0,他引:3  
目的:探讨脑血管造影各主要动脉的投影规律及其分支的显示率,为脑血管疾病的影像诊断和介入治疗提供重要参考。方法:随机抽取140例全脑血管DSA系列图像,选择其中无脑血管疾病的51例进行观察。分别统计颈内动脉和椎动脉造影时正常脑血管各主要分支的显示率;归纳大脑前动脉A1段、大脑中动脉M1段及大脑后动脉P1段在平面上的投影规律并分析总结了脑动脉的正常解剖学特征及其变异。结果:①脑底动脉变异较大;②颈内动脉照影时OA、AChA、ACoA、PCoA、ACA和MCA的显示率分别为96.1%、92.2%、52.9%、69.6%、100%和100%;③椎动脉造影时PICA、AICA、BA、SCA、PCA和PCoA的显示率分别为66.7%、62.7%、100%、70.6%、80.4%和41.2%。结论:①尽管脑底血管实际解剖关系较为复杂,但造影时反映到平面上可简捷的用“水平、上升、下降”等来描述血管的形态和走行;②虽然是平面图像,通过调整投照体位仍可非常逼真的反映血流的动态变化。  相似文献   
86.
根据红细胞聚集时,可减少血样光散射表面的数目和光通过血样透射强度增加的原理,设计了一种新型的双圆筒式的红细胞聚集仪。该仪器具有测量速度快、测量精度高和重复性好等优点。它的产生,将为实验室和临床进行红细胞聚集的研究及检测,提供方便和可靠的测量。  相似文献   
87.
Sensitivity to heartbeat sensations is commonly assessed using tasks that require individuals to judge the simultaneity of heartbeats and tones. In two experiments, we investigated the suitability of this paradigm for examining cardioception. In the first experiment, participants judged the simultaneity of near–threshold vibrations and suprathreshold tones. Precision in judging vibration–tone simultaneity was directly related to the detectability of the mechanical stimuli, thereby supporting use of the simultaneity paradigm to assess heartbeat detection. In the second experiment, we examined the influences of sensitivity to mechanical stimuli and the ability to make intermodality simultaneity judgments on the precision of heartbeat detection. We measured participants' vibrotactile thresholds, precision in judging light–tone simultaneity, and precision in judging heartbeat–tone simultaneity. The ability to judge the simultaneity of lights and tones accounted for 24.3% of the variance in precision of heartbeat detection, and mechanical sensitivity accounted for a further 8.5%.  相似文献   
88.
Processing of binaural stimuli by cat superior olivary complex neurons   总被引:6,自引:0,他引:6  
Summary A method was developed to record stereotactically from the cat Superior Olivary Complex (SOC) using glass micropipettes. Sound stimulation was given through a closed system that permitted independent variation of interaural time (time) and intensity (int) differences. The most common binaural units found (n = 34) were ipsilateral excitatory, contralateral inhibitory (EI1), cells of the Lateral Superior Olive (LSO). Some Medial Superior Olive (MSO) cells and presumed MSO ascending afferents were found but, as noted by other authors, we found it difficult to obtain single unit recordings from this nucleus. The LSO EI cells were mostly sensitive to higher frequencies and showed Peristimulus Time Histograms (PSTHs) consisting of a sharp On response followed by a plateau when stimulated with Best Frequency (BF) tone bursts or noise bursts. This On response was sensitive to time and int such that ipsilateral time lead or intensity increase resulted in a stronger response. The response reached a minimum around zero time or int. No sharp peaks or dips were seen in the physiological range needed for localization, instead the response increased with increasing ipsilateral lead or intensity to the maximum values tested (2048 s time, 30 dB int). In the physiological range the time and int response were complementary (both increasing response as ipsilaterality was increased). Provided enough sound energy in the unit's sensitive region was present, the same time curves were produced when BF tone bursts, masked tone bursts, sharp onset tone bursts or noise bursts were used. Changing the time of the carrier of the tone burst alone had no effect (except for one cell with a BF of 560 Hz), only the relative time of arrival of the stimulus envelope seemed to be important. In contrast to these LSO EI cells MSO-type units showed EI or EE predominantly low frequency phase-locked responses. When stimulated with interaurally phase shifted (pha) BF tones the unit response was a cyclic function of pha. Some cells (all that were tested, n = 6 including the 560 Hz LSO EI cell) showed these cyclic responses when stimulated with noise bursts or non-BF tones. However, these characteristic delays were not necessarily in the physiological range, i.e. we could find no evidence that these units were responding to time/pha values corresponding to a particular sound source direction. In both LSO and MSO it seems that integration of information higher in the CNS from a population of these cells is necessary for unambiguous coding of sound source direction. The time intensity trading ratios measured in two MSO type cells (11 and 26 /dB) were clearly different to those measured in LSO EI cells (n = 6, 99–550 s/dB). These ratios correspond approximately to those of the psychophysical time and int images measured by Hafter and Jeffress (1968).Supported by the Deutsche Forschungsgemeinschaft (SFB 45)  相似文献   
89.
The topographic organization of the uncrossed retinal projections to the dorsal lateral geniculate nucleus (dLGN) and superior colliculus (SC) was studied in normal adult hooded rats and in rats subjected to unilateral ocular enucleation on the day of birth. Sections were stained for anterograde degeneration products following discrete retinal lesions at various locations. The projection from the temporal crescent to the dLGN in neonatally enucleated rats had an expanded but topographically normal organization, with the nasotemporal and dorsoventral retinal axes displaying polarities identical to those in normal adults. Neonatal enucleation permits the remaining uncrossed retinogeniculate projection to extend primarily along the "lines of projection" into neuropil normally recipient of binocularly conjugate crossed projections. In the SC, the dorsoventral axis of the temporal crescent showed a normal polarity, but the nasotemporal axis failed to display any topographic organization. Retinal loci in the temporal crescent projected throughout the rostrocaudal extent of the ipsilateral SC. Retinal lesions placed outside the temporal crescent failed to produce any substantial degeneration in ipsilateral dLGN or SC. These topographically distinct effects in dLGN and SC following unilateral eye removal on the day of birth are discussed in the context of differing constraints upon axonal ingrowth and connectivity during early development, which may normally bring about the characteristically distinct features of retinogeniculate and retinocollicular organization.  相似文献   
90.
ObjectivesModerate-intensity exercise improves insulin sensitivity, which may depend on the intensity, duration, and frequency of exercise. We examined the effects of a single bout of short-duration high-intensity exercise (HIE) and long-duration lowintensity exercise (LIE) on insulin sensitivity and the adiponectin/leptin ratio in individuals with different body mass indices (BMIs) who do not exercise regularly.MethodsWe enrolled 42 healthy volunteers aged 20–64 years and divided them into two groups based on BMI: BMI <24 kg/m2 and BMI ≥27 kg/m2. They were randomly assigned to either the short-duration (20 min) HIE (70%–80% heart rate reserve, HRR) or long-duration (60 min) LIE training groups (30%–40% HRR). Glucose, insulin, adiponectin, and leptin levels were assessed before training and at 0, 30, 60, and 120 min after training.ResultsWe finally analyzed 27 normal weight and 9 obese individuals. No significant differences were observed in the baseline information of both BMI groups. Homeostatic model assessment for insulin resistance significantly improved for both exercise patterns in the normal weight group and for the HIE pattern in the obese group (P < 0.01), whereas the adiponectin/leptin ratio increased significantly only among normal weight participants with the LIE intervention.ConclusionBoth exercise patterns in BMI <24 kg/m2 and BMI ≥27 kg/m2 benefit on insulin resistance. Therefore, people can choose the way they can fit to improve insulin resistance both short-duration high-intensity exercise and long-duration low-intensity exercise.  相似文献   
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