bob×ۺϵǼbest

bob×ۺϵǼbest:ʦ×ʶÓÎé

bob×ۺϵǼbest:×ÊÔ´»·¾³Ïµ

µ±Ç°Î»ÖãºÊ×Ò³ > ʦ×ʶÓÎé > ×ÊÔ´»·¾³Ïµ >

bob×ۺϵǼbest:Àîá°ÌÎ

·¢²¼Ê±¼ä£º2021-04-25 16:46    ä¯ÀÀ´ÎÊý£º
Àîá°ÌΣ¬ÄУ¬²©Ê¿,˶ʿÑо¿Éúµ¼Ê¦¡£±¾¿Æ¾Í¶ÁÓÚbob×ۺϵǼbest£¬²©Ê¿¾Í¶ÁÓÚ»ªÖÐũҵ´óѧ¡£
Ñо¿ÁìÓò£ºÏÖ´úÊ©·Ê¼¼Êõ£»×÷ÎïÓªÑø¹âÆ×Õï¶Ï£¨¶à¹âÆ×¡¢¸ß¹âÆ×¡¢ÈȳÉÏñºÍÎÞÈË»úÒ£¸ÐµÈ£©£»ÍÁÈÀ·ÊÁ¦
½²ÊڿγÌ£ºÍÁÈÀ·ÊÁÏѧ¡¢×ÊÔ´Óë»·¾³·¨ÂÉ·¨¹æ¡¢¸ß¼¶ÊµÑéÉè¼ÆÓëÉúÎïͳ¼Æ¡¢ÐÂÐÍ·ÊÁÏÑÐÖÆÓëÓ¦ÓÃ
µç×ÓÓÊÏ䣺lilantao@henau.edu.cn
 
³Ðµ£¿ÎÌâ:
1. Ö÷³Ö£¬2020Äê¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÇàÄê»ù½ðÏîÄ¿£ºÈ«ÉúÓýÆÚÏÄÓñÃ×µªËØÀûÓÃÂÊ´¹Ö±·Ö²¼µÄ¸ß¹âÆ×¶¨Á¿·´ÑÝÓ붯̬¼à²â£¬2020/1-2022/12£¬ÏîÄ¿¾­·Ñ22ÍòÔª£¬ÏîÄ¿ºÅ31902118¡£
2. Ö÷³Ö£¬2020ÄêºÓÄÏÊ¡¸ßµÈÑ§Ð£ÖØµã¿ÆÑÐÏîÄ¿AÀàÏîÄ¿£ºÏÄÓñÃ×È«ÉúÓýÆÚµªËØ´¹Ö±·Ö²¼µÄ¸ß¹âÆ×¶¨Á¿·´ÑÝ»úÀíÓ뽨ģÑо¿£¬2020/1-2021/12£¬ÏîÄ¿¾­·Ñ5ÍòÔª£¬ÏîÄ¿ºÅ20A210001¡£
3. Ö÷³Ö£¬2019Äêbob×ۺϵǼbestÇàÄêÓ¢²ÅÆô¶¯»ù½ðÏîÄ¿£º×÷ÎïµªÓªÑø¶¨Á¿Õï¶ÏÓ뾫׼¼à²â£¬2019/11-2024/11£¬ÏîÄ¿¾­·Ñ50ÍòÔª£¬ÏîÄ¿ºÅ30500427¡£
4. Ö÷³Ö£¬2021-2022Äê¶Èbob×ۺϵǼbest“°ÙǧÍò”Éç»á·þÎñ»ù½ðÏîÄ¿£ºÎÂÏØÌú¹÷ɽҩ“²âÅä²ú¹©Ê©”Ò»Ì廯ģʽ¹¹½¨Óëʾ·¶ÍƹãÓ¦Óã¬2021/1-2022/12£¬ÏîÄ¿¾­·Ñ3ÍòÔª¡£
5. ²ÎÓ룬ʮËÄÎå¹ú¼ÒÖØµãÑз¢¼Æ»®ÏîÄ¿£º»Æ»´º£Á¸Ìï¶àÒò×ÓÕϰ­Î£º¦»úÖÆ¡¢¾«×¼Ê¶±ðÓëÏû¼õ;¾¶£¬2021/7-2025/12£¬ÏîÄ¿¾­·Ñ110ÍòÔª£¬ÏîÄ¿ºÅ2021YFD1901001£¨¿ÎÌâ¹Ç¸É£©¡£

½Ì¸ÄÏîÄ¿£º
1. ÀîÑÇÈØ£¬ÕÅî죬³þÀöÀö£¬¶ºÀÚ£¬Ë¾ÑÇÀ¤. µªÁ×¼ØÅäÊ©¶Ô¾ÕÓó¿é¾¥²úÁ¿¡¢ÓªÑø¼ÛÖµ¼°Éú̬ÊÊÓ¦ÐÔÑо¿. ºÓÄÏÊ¡´óѧÉú´´Ð´´ÒµÑµÁ·¼Æ»®ÏîÄ¿£¨±àºÅ201910466026£©-Ö¸µ¼½Ìʦ.
2.³£è´µt£¬¼½åûÈ壬Çض¡£¬¸¶ÊçÓñ£¬·¶ÐÄÔÃ. »ùÓÚ¹Ú²ãԭλ¸ß¹âÆ×¼¼ÊõµÄÏÄÓñÃ×Ö²Ö굪Ũ¶È´¹Ö±·Ö²¼¶¨Á¿¼à²âÑо¿. ¹ú¼Ò¼¶´óѧÉú´´Ð´´ÒµÑµÁ·¼Æ»®ÏîÄ¿£¬2021/6-2022/6£¬ÏîÄ¿ºÅ202110466034-Ö¸µ¼½Ìʦ.
3.¡¶ÍÁÈÀ·ÊÁÏѧ¡·»ñÅú2021Äê¶ÈºÓÄÏÊ¡±¾¿Æ¸ßУ¾«Æ·ÔÚÏß¿ª·Å¿Î³Ì£¨ÅÅÃûµÚÁù£©.
4. ¡¶·ÊÁÏѧ¿Î³Ì×é¡·»ñÅú2020Äê¶ÈºÓÄÏÊ¡¸ßµÈѧУºÏ¸ñ»ù²ã½Ìѧ×éÖ¯£¨ÅÅÃûµÚËÄ£©.
 
´ú±íÐÔѧÊõÂÛÎÄ:
1. Lantao Li, Luyi Chang, Yanru Ji, Ding Qin, Shuyu Fu, Xinyue Fan, Yulong Guo, Wenxuan Shi, Sainan Geng, Yilun Wang*. Quantification and dynamic monitoring of nitrogen utilization efficiency in summer maize with hyperspectral technique considering a non-uniform vertical distribution at whole growth stage. Field Crops Research, 2022, 281: 108490. (IF2020=5.224)
2. Di Lin, Gezi Li, Yaodi Zhu, Haitao Liu*, Lantao Li*, Shah Fahad, Xiya Zhang, Chang Wei, Qiujuan Jiao. Prediction of leaf copper content in chicory with in situ hyperspectral technique based on continuous wavelet transform and partial least square algorithms. Computers and Electronics in Agriculture, 2021, 187: 106293. (IF2020=5.565)
3. Lantao Li, Di Lin, Jin Wang, Liu Yang, Yilun Wang*. Multivariate analysis models based on full spectra range and effective wavelengths using different transformation techniques for rapid estimation of leaf nitrogen concentration in winter wheat. Frontiers in Plant Science, 2020, 11:755. ( IF2020=5.754)
4. Tianbao Ren, Nan Chen, Wan Adibah Wan Mahari, Chensheng Xu, Huilin Feng, Xiaoming Ji, Quanyu Yin, Ping Chen, Shijie Zhu, Haitao Liu, Guoshun Liu, Lantao Li*, Sushiung Lam*. Biochar for cadmium pollution mitigation and stress resistance in tobacco growth. Environmental Research, 2021, 192: 110273. (IF2020=6.498)
5. Lantao Li, Bálint Jákli, Piaopiao Lu, Tao Ren, Jin Ming, Shishi Liu, Shanqin Wang, Jianwei Lu*. Assessing leaf nitrogen concentration of winter oilseed rape with canopy hyperspectral technique considering a non-uniform vertical nitrogen distribution. Industrial Crops and Products, 2018, 116: 1-14. (IF2018=4.191)
6. Lantao Li, Shanqin Wang, Tao Ren, Quanquan Wei, Jin Ming, Jing Li, Xiaokun Li, Rihuan Cong, Jianwei Lu*. Ability of models with effective wavelengths to monitor nitrogen and phosphorus status of winter oilseed rape leaves using in situ canopy spectroscopy. Field Crops Research, 2018, 215: 173-186. (IF2018=3.868)
7. Lantao Li, Jianwei Lu, Shanqin Wang, Yi Ma, Quanquan Wei, Xiaokun Li, Rihuan Cong, Tao Ren*. Methods for estimating leaf nitrogen concentration of winter oilseed rape (Brassica napus L.) using in situ leaf spectroscopy. Industrial Crops and Products, 2016, 91: 194-204. (IF2016=3.181)
8. Lantao Li, Tao Ren, Yi Ma, Quanquan Wei, Shanqin Wang, Xiaokun Li, Rihuan Cong, Shishi Liu, Jianwei Lu*. Evaluating chlorophyll density in winter oilseed rape (Brassica napus L.) using canopy hyperspectral red-edge parameters. Computers and Electronics in Agriculture, 2016, 126: 21-31. (IF2016=2.201)
9. Àîá°ÌÎ, ÕÅîì, Ê¢¿ª, ¹¢ÈüÄÐ, Ê¯ÎÆíÛ, ÃçÓñºì, ÍõÒËÂ×*. Ê©µªÁ¿¶Ô¾ÕÓó¿é¾¥²úÁ¿¡¢Æ·ÖÊÓëÖ²ÖêÉúÀíÌØÐÔµÄÓ°Ïì. Ö²ÎïÓªÑøÓë·ÊÁÏѧ±¨, 2022.
10. ÕÅî죬Àîá°ÌÎ*£¬Áֵϣ¬Ö£Áú»Ô£¬¹¢ÈüÄУ¬Ê¯ÎÆíÛ£¬Ê¢¿ª£¬ÃçÓñºì£¬ÍõÒËÂ×. Ê©Á×ˮƽ¶Ô¾ÕÓó¿é¾¥²úÁ¿¡¢Æ·ÖÊ¡¢Ö²ÖêÉúÀíÌØÐÔÓëÁ×ÀûÓÃÂʵÄÓ°Ïì. ²Ýҵѧ±¨£¬2022. 
11. Àîá°ÌÎ#£¬¹ùÓîÁú#£¬º«Åô£¬Íõµ¤µ¤£¬ÍõÒËÂ×*. »ùÓڸ߹âÆ×µÄ¶¬Ð¡Âó²»Í¬ÉúÓýʱÆÚµØÉϲ¿ÉúÎïÁ¿¼à²â.ÂóÀà×÷Îïѧ±¨£¬2021, 41(7):904-913.
12. Àîá°ÌΣ¬Ê¢¿ª£¬Òü»ÀÀö£¬¹ùæ«£¬Íõµ¤µ¤£¬ÍõÒËÂ×*. ¿¼ÂÇÖ²Ö굪´¹Ö±·Ö²¼µÄÏÄÓñÃ×ÓªÑøÕï¶ÏÃô¸Ðλµãɸѡ. ũҵ¹¤³Ìѧ±¨£¬2020£¬36£¨6£©£º56-65. (EIÊÕ¼)
13. Àîá°ÌÎ, ÂíÎÄÁ¬, Éê·ïÃô, ·®æ¼, ÀîÑÇÈØ, Áøº£ÌÎ*. ïÓвÆÈϾÕÜÄҶƬԭλ¸ß¹âÆ×ÏìÓ¦ÌØÕ÷Ó붨Á¿¼à²âÑо¿. ũҵ»úеѧ±¨, 2020,51£¨3£©£º146-155. (EIÊÕ¼)
14. Òü»ÀÀö£¬¹ùæ«£¬³£·ï£¬Íõµ¤µ¤£¬Àîá°ÌÎ*£¬ÍõÒËÂ×*. µªÁ׼طÊÓÅ»¯ÅäÊ©¶Ô¶¬Ð¡Âó²úÁ¿ÓëÑø·ÖÎüÊÕÀûÓõÄÓ°Ïì.Öйúũѧͨ±¨£¬2020,36£¨16£©£º7-12.
15. ¹ùÓîÁú£¬Àîá°ÌÎ*£¬³Âΰǿ£¬´Þ¼Ñç÷£¬ÍõÒËÂ×*. »ùÓÚºì±ß¹âÆ×ÌØÕ÷ºÍXGBoostËã·¨µÄ¶¬Ð¡ÂóÒ¶ÂÌËØÅ¨¶È¹ÀËãÑо¿. ºìÍ⣬2020,41£¨11£©£º33-43.
16. Àîá°ÌΣ¬ÈÎÀö£¬Òü»ÀÀö£¬¹ùæ«£¬Íõº£±ê£¬ÕÅÙ»£¬ÍõÒËÂ×*. Ê©µªÄ£Ê½¶ÔÓñ-ÂóÖÜÄêÂÖ×÷ϵͳ²úÁ¿ºÍµªÎüÊÕÀûÓÃÓ°Ïì. ÖйúÉú̬ũҵѧ±¨(ÖÐÓ¢ÎÄ), 2019, 27(11)£º1682-1694.
17. Àîá°ÌΣ¬Àî¾²£¬Ã÷½ð£¬ÍôÉÆÇÚ£¬ÈÎÌΣ¬Â³½£Î¡*. ¶¬ÓͲËÒ¶Ãæ»ýÖ¸Êý¸ß¹âÆ×ÎÞËð¼à²âµÄ×î¼Ñ²¨¿í¼°ÆäÓÐЧ²¨¶ÎÑо¿. ũҵ»úеѧ±¨, 2018, 49(2): 156-165. (EIÊÕ¼)
18. Àîá°ÌΣ¬ÈÎÌΣ¬ÍôÉÆÇÚ£¬Ã÷½ð£¬ÁõÇïϼ£¬Â³½£Î¡*. »ùÓڽǹûÆÚ¸ß¹âÆ×µÄ¶¬ÓͲ˲úÁ¿Ô¤²âÄ£ÐÍÑо¿. ũҵ»úеѧ±¨£¬2017, 48(3): 221-229. (EIÊÕ¼)
19. Àîá°ÌΣ¬ÍôÉÆÇÚ£¬ÈÎÌΣ¬Âíæä£¬ÎºÈ«È«£¬¸ßö©êÏ£¬Â³½£Î¡*. »ùÓڸ߹âÆ×µÄ¶¬ÓͲËҶƬÁ׺¬Á¿Õï¶ÏÄ£ÐÍ. ũҵ¹¤³Ìѧ±¨, 2016, 32(14): 209-218. (EIÊÕ¼)
20. Àîá°ÌΣ¬Âíæä£¬ÎºÈ«È«£¬ÍôÉÆÇÚ£¬ÈÎÌΣ¬ÀîСÀ¤£¬´ÔÈÕ»·£¬ÍõÕñ£¬ÍõÉÙ»ª£¬Â³½£Î¡*. »ùÓڸ߹âÆ×µÄ¶¬ÓͲËÖ²ÖêµªËØ»ýÀÛÁ¿¼à²âÄ£ÐÍ. ũҵ¹¤³Ìѧ±¨, 2015, 31(20): 147-156. (EIÊÕ¼)
21. Àîá°ÌΣ¬ÕÅÃÈ£¬ÈÎÌΣ¬ÀîСÀ¤£¬´ÔÈÕ»·£¬ÎâÀñÊ÷£¬Â³½£Î¡*. Ó¦ÓÃÊý×ÖͼÏñ¼¼Êõ½øÐÐË®µ¾µªËØÓªÑøÕï¶Ï. Ö²ÎïÓªÑøÓë·ÊÁÏѧ±¨, 2015, 21(1): 259-268.£¨2019Äê¶ÈF5000ÂÛÎÄ£©
22. Àîá°ÌΣ¬Áõ²¨£¬Â³½£Î¡*£¬ÈÎÌΣ¬ÀîСÀ¤£¬´ÔÈÕ»·£¬ÎâÀñÊ÷£¬ÁÖµÏ. ¶¬ÓͲËҶƬSPADµÄʱ¿Õ·Ö²¼ºÍµªËØÕï¶ÏµÄҶλѡÔñ. ÖйúÓÍÁÏ×÷Îïѧ±¨£¬2014, 36(1): 76-83. 
23. Àîá°ÌΣ¬Â³½£Î¡*£¬ÈÎÌΣ¬ÀîСÀ¤£¬´ÔÈÕ»·. ËữÍÁÈÀµ÷Àí¼ÁÔÚÓͲËÉϵÄÓ¦ÓÃЧ¹û. »ªÖÐũҵ´óѧѧ±¨, 2014, 33(5): 57-60.
24. Àîá°ÌΣ¬Áֵϣ¬Ê¢¿ª£¬ÕÅÙ»£¬ÍõÒËÂ×. ÐÂÈëÖ°¸ßУÇàÄê½Ìʦ½Ìѧ¼¼ÄÜÌáÉý²ßÂÔ̽Îö.½ÌÓý½ÌѧÂÛ̳£¬2020,52:23-25.

¼ÆËã»úÈí¼þÖø×÷Ȩ£º
1. »ùÓÚÊý×ÖͼÏñ¼¼ÊõµÄÏÄÓñÃ×µª·ÊÍÆ¼öϵͳ1.0. ¼ÆËã»úÈí¼þÖø×÷Ȩ. Ö¤ÊéºÅ: 3700958. µÇ¼ÇºÅ: 2019SR0280201. Ê״η¢±íÈÕÆÚ: 2019Äê3ÔÂ.
2. ÏÄÓñÃ×NUtE´¹Ïò·Ö²¼µÄ¸ß¹âÆ×¶¯Ì¬¼à²âϵͳV1.0. ¼ÆËã»úÈí¼þÖø×÷Ȩ. Ö¤ÊéºÅ: 5302695. µÇ¼ÇºÅ: 2020SR0423999. Ê״η¢±íÈÕÆÚ: 2020Äê3ÔÂ.
3. ¶¬Ð¡ÂóµªËØÓªÑø·áȱ״¿ö¸ß¹âÆ×ʵʱ¼à²âϵͳV1.0. ¼ÆËã»úÈí¼þÖø×÷Ȩ. Ö¤ÊéºÅ: 7308266. µÇ¼ÇºÅ: 2021SR0585640. Ê״η¢±íÈÕÆÚ: 2021Äê4ÔÂ.

Öø×÷½Ì²Ä£º
1. Ë®µ¾ÓªÑøÌØÐÔ¼°¿ÆÑ§Ê©·Ê. ±±¾©: Öйúũҵ³ö°æÉç, 2016. ²Î±à
2. ÓͲËÓªÑøÌØÐÔÓëÊ©·Ê¼¼Êõ. ±±¾©£º¿ÆÑ§³ö°æÉ磬2021. ²Î±à
3. СÂó-ÓñÃ×Á½Êì·á²úÔöЧ¼¼Êõ. ±±¾©: Öйúũҵ³ö°æÉç, 2021. ²Î±à

ѧÊõ¼æÖ°£º
¡¶ÍÁÈÀͨ±¨¡·ÇàÄê±àί£¨2022/1-2023/12£©£»Computers and Electronics in Agriculture¡¢Industrial Crops and Products¡¢Archives of Agronomy and Soil Science¡¢¹âÆ×ѧÓë¹âÆ×·ÖÎö¡¢ÖÇ»Ûũҵ£¨ÖÐÓ¢ÎÄ£©µÈÆÚ¿¯Éó¸åÈË¡£

´ú±íÐÔ½±Àø£º
1. 2019Äêbob×ۺϵǼbestµÚʮһ½ì´óѧÉú·ÉÓ¥´´Ð¼ƻ®ÓÅÐãÖ¸µ¼ÀÏʦ
2. 2019Äêbob×ۺϵǼbestÇàÄê½Ìʦ½²¿Î´óÈüÌØµÈ½±
3. 2021Äêbob×ۺϵǼbestÇàÄê½Ìʦ½²¿Î´óÈü¶þµÈ½±
4. 2021Äêbob×ۺϵǼbestÓÅÐãµ³Îñ¹¤×÷Õß
5. 2021Äêbob×ۺϵǼbest±¾¿Æ±ÏÒµÂÛÎÄ£¨Éè¼Æ£©ÓÅÐãÖ¸µ¼ÀÏʦ
bob×ۺϵǼbest(ÏÃÃÅ)ÓÐÏÞ¹«Ë¾¹ÙÍø