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artikulong pang-agham 2007년 논문 2007 թուականի Յունիսին հրատարակուած գիտական յօդուած artículo científico publicado en 2007 tudományos cikk 2007年論文 мақолаи илмӣ 2007年论文 επιστημονικό άρθρο научна статия mokslinis straipsnis wetenschappelijk artikel (gepubliceerd op 2007/06/13) 2007年論文 سائنسی مضمون מאמר מדעי บทความทางวิทยาศาสตร์ vědecký článek publikovaný v roce 2007 videnskabelig artikel (udgivet 2007) 2007年論文 vedecký článok (publikovaný 2007/06/13) tieteellinen artikkeli teaduslik artikkel vetenskaplig artikel artigo científico (publicado na 2007) 2007年论文 bài báo khoa học articol științific article scientific 2007 nî lūn-bûn naučni članak article scientifique (publié 2007) مقالة علمية (نشرت في 13-6-2007) articolo scientifico 2007 թվականի հունիսին հրատարակված գիտական հոդված 2007年论文 artikull shkencor bilimsel makale 2007年の論文 наукова стаття, опублікована в червні 2007 2007年論文 artículu científicu espublizáu en 2007 2007年論文 научни чланак vitenskapelig artikkel artigo científico (publicado na 2007) 2007年论文 2007年论文 научная статья scientific article artigo científico vitskapeleg artikkel artykuł naukowy article científic мақолаи илмӣ scienca artikolo 2007年论文 научни чланак مقالهٔ علمی ২০০৭-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ wissenschaftlicher Artikel სამეცნიერო სტატია
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Lars Olson Matthias Erschbamer Karin Pernold
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Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury.
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Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury.
schema:name
Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury. Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury.
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Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury
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Inhibiting epidermal growth factor receptor improves structural, locomotor, sensory, and bladder recovery from experimental spinal cord injury
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