LDR | | 00000nmm u2200205 4500 |
001 | | 000000333805 |
005 | | 20250121112628 |
008 | | 181129s2018 ||| | | | eng d |
020 | |
▼a 9780438127081 |
035 | |
▼a (MiAaPQ)AAI10903102 |
035 | |
▼a (MiAaPQ)umichrackham:001235 |
040 | |
▼a MiAaPQ
▼c MiAaPQ
▼d 248032 |
049 | 1 |
▼f DP |
082 | 0 |
▼a 574 |
100 | 1 |
▼a Chen, Junjie. |
245 | 10 |
▼a Aggregation and Dendrimer Mediated Secondary Binding towards Folate Binding Protein & Fatigue Failure Mechanism of Anterior Cruciate Ligament Fracture. |
260 | |
▼a [S.l.] :
▼b University of Michigan.,
▼c 2018 |
260 | 1 |
▼a Ann Arbor :
▼b ProQuest Dissertations & Theses,
▼c 2018 |
300 | |
▼a 56 p. |
500 | |
▼a Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B. |
500 | |
▼a Advisers: Mark M. Banaszak Holl |
502 | 1 |
▼a Thesis (Ph.D.)--University of Michigan, 2018. |
520 | |
▼a Drug conjugation gives many advantages such as improved targeting, solubility and retention. How conjugated drugs interact with proteins is a key question to answer in targeted drug delivery. This not only includes the interaction with the targe |
520 | |
▼a Chapter three addresses a question that is important to sport medicine: what leads to non-contact anterior cruciate ligament (ACL) failure? Our hypothesis was that before the ACL fracture, microdamage would have already been created by jumping a |
590 | |
▼a School code: 0127. |
650 | 4 |
▼a Biochemistry. |
690 | |
▼a 0487 |
710 | 20 |
▼a University of Michigan.
▼b Chemistry. |
773 | 0 |
▼t Dissertation Abstracts International
▼g 79-12B(E). |
773 | |
▼t Dissertation Abstract International |
790 | |
▼a 0127 |
791 | |
▼a Ph.D. |
792 | |
▼a 2018 |
793 | |
▼a English |
856 | 40 |
▼u http://www.riss.kr/pdu/ddodLink.do?id=T15000596
▼n KERIS |
980 | |
▼a 201812
▼f 2019 |
990 | |
▼a 관리자
▼b 관리자 |