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1.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

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前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

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前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

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前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

5.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

6.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

7.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

8.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

9.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

10.
前列腺基底细胞癌是一种罕见的肿瘤,1974年由Frankei和Craig首次报道时称为前列腺腺样囊性癌.经检索文献,此病例报道较少[1],我们报道2例并结合文献复习其临床病理特征.  相似文献   

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A further analysis of already published data supports the position that retardates of low ability level less frequently have retarded siblings, retarded parents, and parents low in occupational level than do retardates higher in ability level. The analysis supports the position that there are two types of retarded individuals, persons retarded as a result of gene or chromosomal anomalies, brain injury, etc., who more frequently occur in the lower-level retardate group, and persons whose retardation represents polygenic segregation, who more frequently occur in the higher-level group.  相似文献   

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1. Recovery of responsiveness of single cells in lateral geniculate nucleus of rat has been determined in both P and I cells. There are three types of recovery curve among P cells; (a) early recovery, (b) early partial recovery followed by depression and then complete recovery, (c) prolonged depression followed by cyclic recovery. Type (c) is by far the commonest recovery curve. In contrast to the spike in a P cell, the synaptic potential recovers to its full amplitude in about 20 msec. All I cells exhibit similar rapid recovery curves after a prolonged depression.2. Conditioning stimuli applied to visual cortex also produce a prolonged depression in most P cells but I cells can be re-excited at short intervals from cortex. Decortication does not prevent the prolonged depression of the multineuronal response produced by optic nerve stimulation.3. A neuronal model is proposed to explain these observations. It is supposed that I cells (interneurones) are innervated by axon collaterals of the P cells (principal cells, projecting to visual cortex) and that the I cells exert an inhibitory influence on the P cells.  相似文献   

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Modes of Inheritance of Errors of Refraction   总被引:5,自引:0,他引:5       下载免费PDF全文
Eighteen families in which both parents had refractions within the range of +4·0 D to −4·0 D and axial lengths seen in emmetropia (22·3-26·0 mm) showed coefficients of correlation of the order 0·5 indicative of polygenic inheritance. Such coefficients were seen for axial length (0·407) and for the cornea (0·487), but not for the lens (which is known to be yoked to the axial length). No such coefficients were seen in 19 families in which one of the parents had axial length outside the emmetropic range (nine families with long axes and 10 with short axes).

The pattern of polygenic inheritance for emmetropia (completely correlated optical components) and errors of refraction up to 4·0 D (inadequately correlated components: correlation ametropia) follows that seen in stature and other measurable characters. In contrast the high refractive errors with their abnormal axial lengths (component ametropia) are—like the extremes in stature—pathological anomalies with monofactorial inheritance.

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18.
It was established, in experiments on isolated spinal ganglia of adult rats in concluons of intracellular recording, that dopamine (1 M/liter) elicits depolarized responses in 61% of neurons, hyperpolarized in 20% of neurons, and depolarized-hyperpolarized in 19% of neurons. The depolarized responses are associated with the activation of D1 dopamine receptors, and are governed by the shift of cAMP-dependent cation (sodium) channels to the conducting state. The hyperpolarized responses are triggered by the activation of D2 dopamine receptors, which by means of HTP-binding protein convert the potassium channels to the conducting state. The change in the polarization of neurons with the action of dopamine influences their electrical excitability variously.Translated from Fiziologicheskii Zhurnal SSSR imeni I. M. Sechenova, Vol. 76, No. 6, pp. 739–745, June, 1990.  相似文献   

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