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1.
The hippocampal formation (HF) of food‐storing birds is larger than non‐storing species, and the size of the HF in food‐storing Black‐Capped Chickadees (Poecile atricapillus) varies seasonally. We examined whether the volume of the septum, a medial forebrain structure that shares reciprocal connections with the HF, demonstrates the same species and seasonal variation as has been shown in the HF. We compared septum volume in three parid species; non‐storing Blue Tits (Parus caeruleus) and Great Tits (Parus major), and food‐storing Black‐Capped Chickadees. We found the relative septum volume to be larger in chickadees than in the non‐storing species. We also compared septum and nucleus of the diagonal band (NDB) volume of Black‐Capped Chickadees at different times of the year. We found that the relative septum volume varies seasonally in food‐storing birds. The volume of the NDB does not vary seasonally. Due to the observed species and seasonal variation, the septum, like the hippocampal formation of food‐storing birds, may be specialized for some aspects of food‐storing and spatial memory. © 2002 Wiley Periodicals, Inc. J Neurobiol 51: 215–222, 2002  相似文献   
2.
Abstract Both the intracellular and the extracellular concentration of cyclic AMP increases logarithmically in synchronously growing cultures of Escherichia coli . Thus, cyclic AMP by itself cannot regulate growth and division of the bacterium during the cell cycle.  相似文献   
3.
Potentials were recorded from the epidermal head lines and from the CNS of young cuttlefish, Sepia officinalis, in response to weak water movements. 1. Within the test range 0.5-400 Hz a sinusoidal water movement elicits up to 4 components of response if the electrode is placed on a headline: (i) a positive phasic ON response; (ii) a tonic frequency-following microphonic response; (iii) a slow negative OFF response; and (iv) compound nerve impulses. 2. The amplitude of both the ON wave and the microphonic potential depends on stimulus frequency, stimulus amplitude and stimulus rise time. Frequencies around 100 Hz and short rise times are most effective in eliciting strong potentials. The minimal threshold was 0.06 microns peak-to-peak water displacement at 100 Hz (18.8 microns/s as velocity). 3. Change of direction of tangential sphere movement (parallel vs. across the head lines) has only a small effect on the microphonic and the summed nerve potentials. 4. Frequency and/or amplitude modulations of a carrier stimulus elicit responses at the onset and offset of the modulation and marked changes in the tonic microphonic response. 5. Evoked potentials can be recorded from the brain while stimulating the epidermal lines with weak water movements. The brain potentials differ in several aspects from the potentials of the head lines and show little or no onset or offset wave at the transitions of a frequency and amplitude modulation.  相似文献   
4.
Summary The cells of origin of afferent and efferent pathways of the lateral forebrain bundle were studied with the aid of the cobalt-filling technique. Ascending afferents originated from the lateral thalamic nucleus, central thalamic nucleus, posterior tuberculum and the cerebellar nucleus. They terminated in the anterior entopeduncular nucleus, amygdala and the striatum. Telencephalic projection neurons, which are related to the lateral forebrain bundle, were located mainly in the ventral striatum and the anterior entopeduncular nucleus, but were not so numerous in the dorsal striatum. Irrespective of their location, most of the neurons projecting axons into the lateral forebrain bundle had piriform or pyramidal perikarya. Long apical dendrites usually arborized in a narrow space, whereas widely arborizing secondary dendrites originated from short dendritic trunks. The other neurons that contributed to the lateral forebrain bundle were fusiform or multipolar cells. Striatal efferents terminated in the pretectal area and in the anterodorsal, anteroventral and posteroventral tegmental nuclei.  相似文献   
5.
1.  The actions of GABA on three classes of visual interneurons in crayfish, Procambarus clarkii, medulla externa are examined. The effect of GABA on the visual response is compared to GABA's action on agonist-elicited responses purported to mediate the visual response.
2.  GABA produces a shunting type of inhibition in medullary amacrine cells which is associated with a small depolarization (Figs. 2, 3), a large increase in input conductance (Gn) and a reversal potential close to rest (Fig. 4). GABA is a potent antagonist to the depolarizing action of acetylcholine (ACh) (Fig. 5).
3.  GABA depolarizes dimming fibers (Fig. 2), and the response is mediated by an increase in Gn (Fig. 6). GABA antagonizes the light-elicited IPSP and the hyperpolarizing action of ACh (Fig. 7).
4.  Sustaining fibers (SF) do not appear to have GABA receptors but GABA inhibits the excitatory visual input pathway to the SFs (Fig. 8). Conversely, the GABA antagonist, bicuculline, potentiates the SF light response (Fig. 9).
5.  GABA has at least three different modes of antagonist action in the medulla: i) Increased conductance and depolarization in dimming fibers and medullary amacrine neurons; ii) Decreased chloride conductance in tangential cells; and iii) An inhibitory action on the visual pathway which drives SFs.
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6.
We have developed a rapid, simple, specific, and very sensitive bioluminescence method for the measurement of L-glutamate (L-Glu). Oxidation of L-Glu by glutamate dehydrogenase has been coupled with bacterial FMN reductase and luciferase. Light production (i.e., peak height or integral) was linear from less than 0.5 to 500 pmol of L-Glu. Potential interfering substances that may be encountered in brain tissue have been identified. The most potent inhibitors were ascorbate and the biogenic amines. Procedures that conferred long-term stability of the reagent mixture (greater than 8 h) were established. Bioluminescence analysis of L-Glu content in brain tissue extracts, fractions from release experiments, and human CSF corroborated respective results obtained by HPLC analysis. In this study, we have applied the method to monitor changes in the KCl-evoked release of endogenous L-Glu from milligram amounts of brain tissue, i.e., from lateral geniculate nucleus and superior colliculus after visual cortex ablation.  相似文献   
7.
兔边缘系统隔区呼吸相关神经元   总被引:1,自引:0,他引:1  
本实验在42只家兔给与 Urethane 半量麻醉,在边缘系统隔区用玻璃微电极方法记录了60个自发的呼吸相关神经元单位放电:吸气型30个单位;呼气型16个单位;跨时相型14个单位。断双侧迷走神经,静脉注入尼克刹米后,呼吸相关神经元单位放电与呼吸节律变化具有伴随性,呈正相关。窒息可以诱发隔区神经元呼吸节律放电。延髓第四脑室局部注入2%Sod。pentothal 后,随呼吸节律抑制、隔区呼吸相关神经元单位放电立即消失。上述结果提示:到达边缘系统隔区的呼吸信息在自主功能及情绪活动的协调方面,可能被认为是有意义的。  相似文献   
8.
球毛壳(Chaetomium globosum Kze.)系 Kunze 于1817年报道见于丹麦石竹(Dianthus carthusianorum L.)茎上的毛壳菌属(Chaetomium)的第一个种(模式种)。Cooke and Ellis 在1878年描述了见于飞蓬属(Erigeron L.)腐茎上的橄榄色毛壳(C.oliaceum C.et E.)。在 Chivers(1915)、Skolko and Groves(1953)、Udagawa(1960)、Ames(1963)和 Seth(1972)关于毛壳菌属的专著都曾指出很难划分这两个种的界限。Skolk and Groves(1953)区分此两个种时以橄榄色毛壳具有较大的子囊壳、较宽的顶附属丝和较大的子囊孢子,而 Chivers(1915)则认为橄榄色毛壳是球毛壳的异名,Udagawa(1960)区分此两个种仅根据子囊孢子的长度和宽度,他认为橄榄色毛壳的子囊孢子大于球毛壳的子囊孢子。Seth(1972)在他的专著中虽保留此两个种作为独立种,但他指出限于他镜检过的标本材料及根据 Chivers 专著中的球毛壳的特征辑要概括了橄榄色毛壳的特征,对这两个种的区分界限确实是很难划分的。最近我们在北京采集和分离了来源于不同的植物和动物材料上的毛壳菌种类,以期进行北京地区毛壳菌种类调查研究。我们分离获得许多球毛壳——橄榄色毛壳类的毛壳菌菌株。参考了不同作者对这两个种的子囊壳、顶附属丝、侧附属丝、子囊及子囊孢子的特征记载,对北京的这一类型菌株进行了细致研究,认为球毛壳与橄榄色毛壳确有形态学特征区别,表现在橄榄色毛壳的子囊壳、顶附属丝和子囊孢子较球毛壳的更为粗壮,兼之球毛壳的顶附属丝较橄榄色毛壳的为窄且有分隔和微粗糙,球毛壳的子囊孢子呈浅橄榄褐色至暗橄榄褐色,含两个折光性油滴而橄榄色毛壳的子囊孢子呈暗橄榄褐色,量度亦较大,凭依经验即可鉴别此两个不同种。  相似文献   
9.
Summary The formation of apoptotic cells and their phagocytosis by viable neighbouring cells in the gastric epithelium of 2-to 6-day-old mice was analysed. In order to observe the topographic relationship between apoptotic and normal epithelial cells using scanning electron microscope, the critical-point dried tissues was cracked before coating with gold. Cytochemical methods for the identification of surface carbohydrates and different tracers for apical and lateral cell membranes were applied for the analysis using the transmission electron microscope. Apoptotic cells were found on apical and lateral surfaces; this indicates the presence of tight connections with viable cells at some points. Ruthenium red strongly stained all accessible surfaces of normal cells and of apoptotic bodies. The quantity of neutral mucosubstances, as revealed by staining with tannic acid-uranyl acetate, seemed to decrease in the glycocalyx of apoptotic cells. The scanning and transmission electronmicroscopic results suggest that the phagocytotic vacuoles arise at the lateral side of the cells. The phagocytotic activity is not dependent upon a definite differentiation step of the mucoid cell.  相似文献   
10.
Summary The interatrial septum of the rat heart contains cells which show a strong intensive-yellow paraformaldehyde-induced fluorescence. By electron microscopy these cells are characterized by an abundance of dense-core vesicles.Cholinergio axons form axo-somatic synaptic contacts with the catecholamine-containing cells. These cells, packed with dense-core vesicles, are frequently interdigitated and interconnected by zonulae and maculae adhaerentes and occludentes. The catecholamine-containing cells are surrounded by satellite cells either individually or in groups.The catecholamine-containing cells, which bear blunt, plumpish processes, can be subdivided, on the basis of position and morphology into two types. One class of cells lies within the fibroblast capsule of the intra-atrial ganglion (van der Zypen, Hasselhorst, Merz and Fillinger, 1974). A second aggregation of catecholamine-containing cells occurs outside the ganglia in close proximity to capillaries. The capillaries exhibit pores in the area of contact with the catecholaminergic cells. The structure of these catecholamine-containing cells is described and their possible function discussed.
Zusammenfassung Im Septum interatriale des Rattenherzens treten Zellen in Erscheinung, die nach Paraformaldehyd-Bedampfung eine intensive hellgelbliche Fluoreszenz zeigen. Diese Zellen zeichnen sich durch einen großen Reichtum an dense-core vesicles aus. Cholinerge Axone bilden axo-somatische Synapsen an den katecholaminhaltigen Zellen aus. Die mit dense-core vesicles angefüllten Zellen sind oft ineinander verzahnt und durch Zonulae adhaerentes verbunden. Einzeln oder in Gruppen werden die katecholamin-enthaltenden Zellen von Satelliten-Zellen umgeben.Die mit kurzen plumpen Fortsätzen versehenen katecholaminhaltigen Zellen lassen aufgrund ihrer Lage und eines andersartigen Baues zwei Typen erkennen. Eine Gruppe von Zellen liegt innerhalb der Fibrozytenkapsel des Ganglion intraatriale (van der Zypen, Hasselhorst, Merz und Fillinger, 1974). Eine zweite Ansammlung von Katecholamin enthaltenden Zellen findet sich außerhalb der Ganglien in engem Kontakt zu Kapillaren. Die Kapillaren weisen im Bereich des Kontaktes mit den katecholaminergen Zellen Poren auf. Die Struktur dieser Zellen wird geschildert und ihre mögliche Funktion diskutiert.
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