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1984年學術文章 article scientific artikel ilmiah artikulong pang-agham 1984年学术文章 জানুয়ারি ১৯৮৪-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ 1984年學術文章 1984年学术文章 1984年学术文章 научная статья wetenschappelijk artikel tieteellinen artikkeli scientific article published in January 1984 1984년 논문 wissenschaftlicher Artikel научни чланак vedecký článok 1984年学术文章 artigo científico article científic 1984 nî lūn-bûn vědecký článek artykuł naukowy scientific article published in January 1984 article scientifique 1984年學術文章 tudományos cikk 1984年學術文章 articolo scientifico artículo científico publicado en 1984 artikull shkencor scienca artikolo artigo científico 1984年学术文章 мақолаи илмӣ научна статия vetenskaplig artikel scientific article published in January 1984 teaduslik artikkel επιστημονικό άρθρο artigo científico บทความทางวิทยาศาสตร์ наукова стаття, опублікована в січні 1984 სამეცნიერო სტატია bilimsel makale 1984年學術文章 vitskapeleg artikkel bài báo khoa học מאמר מדעי 1984年の論文 artículu científicu مقالة علمية نشرت في يناير 1984 1984年学术文章 naučni članak vitenskapelig artikkel articol științific videnskabelig artikel научни чланак
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1984-01-01T00:00:00Z
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B Pöpel H Querfurth
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The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis. The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis.
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The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis. The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis.
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The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis. The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis.
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The transducer and encoder of frog muscle spindles are essentially nonlinear. Physiological conclusions from a white-noise analysis.
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21-32
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10.1007/BF00336184