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1. www.inserco.org
2. Safarov J., Sultanova Sh., Dadyev G., Zulpanov Sh., Erkinov D. Research of technique and technology for processing cocoons silkworm. // Agricultural Research & Technology: Open Access Journal. 2018. 15(4):555960. DOI:10.19080/ARTOAJ.2018.15.555960. P.1-2
3. Safarov J. Modern State of Technology and Technology for Primary Processing of cocoons silkworm. // Innovative Techniques in Agriculture. ISSN:2578-5196. Page 577-580.
4. Isao Kobayashi, Katsura Kojima, Hideki Sezutsu, Keiro Uchino, Toshiki Tamura. Expression of the Japanese oak silkworm Antheraea yamamai fibroin gene in the domesticated silkworm Bombyx mori. // Insect Science (2009) 16, 465–473, DOI 10.1111/j.1744-7917.2009.01293. xFirst published: 26 November 2009 https://doi.org/10.1111 /j.1744-7917.2009.01293.xCitations:
5. Tetsuo Asakura, Ryuji Sakaguchi, Makoto Demura, Takuro Manabe, Atsuo Uyma, Katsuaki Ogawa, Minoru Osanai. In vitro production of Bombyx mori silk fibroin by organ culture of the posterior silk glands; isotope labeling and fluorination of the silk fibroin. Biotechnology and Bioengineering. Volume 41, Issue 2. First published: 20 January 1993 https://doi.org/10.1002/bit.260410211 Citations: 16 P. 245-252.
6. Hong-Ping Zhao, Xi-Qiao Feng, Shou-Wen Yu, Wei- Zheng Cui, Feng-Zhu Zou. Mechanical properties of silkworm cocoons.//H.-P.Zhao et.al/Polymer 46 (2005)9192- 9201.www.elsevier.com/locate/polymer. P.1418-1423.