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A New Triassic Ammonite from Yanaizu, North of Inai near Ishinomaki, Miyagi Prefecture 宫城县石卷附近稻奈北部柳井津的新三叠纪菊石
Pub Date : 1949-01-01 DOI: 10.2183/pjab1945.25.11_32
H. Yabe
Several months ago,. Mr. F. Ueda, teacher of the Toyoma High School, Miyagi Prefecture, showed the writer a peculiar ammonite from a Triassic sandy argyllite exposed at Yanaizu, 12 km south of Toyoma and 20 km north of Inai near Isinomaki. This ammonite attracted the writer's attention on account of the unusual growthform of its last whorl, which is first produced linearly and then incurved again as in the Jurassic Macroscaphites and the Cretaceous Scaphites, while it resembles, in its coiled part, Danubites japonicus Shimizu 1> from the Anisic Hollandites beds of Inai. The annexed figure shows this specimen in natural size. All specimens of the Anisic ammonites from the Hollandites beds of Inai are moulds, the shell-substance being never preserved. The moulds are always one-sided ; that is to say, there is no specimen ever seen by the writer, with both surfaces preserved. Moreover, the majority of the specimens are obliterated in a definite manner, lengthened in one direction and correspondingly shortened in the other, due to lateral presure. The present specimen from Yanaizu is in the same mode of preservation. The Yanaizu specimen consists of a coiled part and an uncoiled, key-shaped part; the dimensions of the coiled part are :
几个月前,……上田先生是宫城县富马高中的老师,他向笔者展示了一种特殊的菊石,它来自于富马以南12公里、伊奈以北20公里、石卷附近的柳井,这是一种三叠纪砂质硬砂岩。这种菊石引起作者的注意,是因为它的最后一个螺轮的生长形式很不寻常,它首先是线性的,然后又像侏罗纪的大纹石和白垩纪的大纹石那样弯曲,而它的卷曲部分又象伊奈岛的Anisic Hollandites床上的Danubites japonicus Shimizu 1>。附图显示了该标本的自然尺寸。所有来自伊奈岛荷兰岩床的茴香菊石标本都是霉菌,这种壳状物质从未被保存下来。模具总是片面的;也就是说,作者从未见过两面都保存完好的标本。此外,由于侧向压力的作用,大多数标本都以一定的方式被湮没,在一个方向上延长,在另一个方向上相应地缩短。现在柳井津的标本也采用了同样的保存方式。Yanaizu试样由一个盘绕部分和一个未盘绕的键形部分组成;卷绕件的尺寸为:
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引用次数: 0
Recent Advances of Researchs on Blood Types in Japan 日本血型研究的最新进展
Pub Date : 1949-01-01 DOI: 10.2183/pjab1945.25.11_36
T. Furuhata
(I) Studies on blood types of human being. In the human being C, 0 and T substances have been discovered besides Q (1935) E (1935) and S blood type (secretor and nonsecretor, 1935), and as a research method of the blood types the former iso-agglutination method has been substituted by the type-specific precipitation method as the result of which the study and analysis have come to be possible of blood group substances existing in liquid form. For this purpose anti-A, anti-B, anti-o; anti-C and anti-T precipitins are always employed as tests sera. It will be natural that many new facts have been discovered as compared with the time when two kinds of anti-A (a) and anti-B (/3) serum were used. What I have to refer to besides. is that production of various immune test sera has been made possible by consideration of the individuality of animals, i. e. " serum type " and " saliva type" of animals. All animals can be classified into four kinds of a', !3', a' (3' ,. and 0' type by the type specific agglutinins in their sera and further· divided into A+ and Atype by whether or not there exists A group
(一)人的血型研究。在人类中,除了Q(1935)、E(1935)和S血型(分泌型和非分泌型,1935)外,还发现了C、0和T等物质,作为一种血型的研究方法,用血型特异性沉淀法取代了以往的等凝集法,从而使以液体形式存在的血型物质的研究和分析成为可能。为此,反a,反b,反o;抗c和抗t沉淀常作为检测血清。与使用两种抗a (a)和抗b(/3)血清相比,自然会发现许多新的事实。除此之外,我还得提到。考虑到动物的个性,各种免疫试验血清的生产成为可能。“血清型”和“唾液型”动物。所有的动物都可以分为四种:a', !3', a' (3), a'(3)。根据血清中特异性凝集素分为A型和0型,并根据是否存在A组进一步分为A+型和A型
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引用次数: 0
Electronic interpretation of the Organic Reaction Mechanism. (IV) 有机反应机理的电子解释。(IV)
Pub Date : 1949-01-01 DOI: 10.2183/pjab1945.25.11_12
M. Murakami, S. Ōae
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引用次数: 0
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Proceedings of the Japan Academy
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