×
验证码:
换一张
Forgotten Password?
Stay signed in
Login With UMPASS
English
|
繁體
Login With UMPASS
Log In
ALL
ORCID
TI
AU
PY
SU
KW
TY
JN
DA
IN
PB
FP
ST
SM
Study Hall
Image search
Paste the image URL
Home
Faculties & Institutes
Scholars
Publications
Subjects
Statistics
News
Search in the results
Faculties & Institutes
Institute of Chi... [3]
INSTITUTE OF APP... [2]
Faculty of Healt... [2]
THE STATE KEY LA... [2]
Faculty of Scien... [1]
Authors
OUYANG DEFANG [2]
LEE MING YUEN [1]
HU GUANGHUI [1]
CHEN MEIWAN [1]
GING CHAN [1]
LI HAIFENG [1]
More...
Document Type
Journal article [5]
Date Issued
2024 [1]
2023 [1]
2022 [1]
2021 [1]
2019 [1]
Language
英語English [4]
Source Publication
Drug Delivery an... [4]
DRUG DELIVERY AN... [1]
Indexed By
SCIE [4]
Funding Organization
Funding Project
×
Knowledge Map
UM
Start a Submission
Submissions
Unclaimed
Claimed
Attach Fulltext
Bookmarks
Browse/Search Results:
1-5 of 5
Help
Selected(
0
)
Clear
Items/Page:
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Sort:
Select
Issue Date Ascending
Issue Date Descending
Title Ascending
Title Descending
Author Ascending
Author Descending
WOS Cited Times Ascending
WOS Cited Times Descending
Submit date Ascending
Submit date Descending
Journal Impact Factor Ascending
Journal Impact Factor Descending
Computer-driven formulation development of Ginsenoside Rh2 ternary solid dispersion
Journal article
Lu, Tianshu, Wu, Tongchuan, Zhong, Hao, Li, Xue, Zhang, Yunsen, Yue, Hao, Dai, Yulin, Li, Haifeng, Ouyang, Defang. Computer-driven formulation development of Ginsenoside Rh2 ternary solid dispersion[J]. Drug Delivery and Translational Research, 2024.
Authors:
Lu, Tianshu
;
Wu, Tongchuan
;
Zhong, Hao
;
Li, Xue
;
Zhang, Yunsen
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
5.7
/
5.5
|
Submit date:2024/07/04
(20s)-ginsenoside Rh2
Dissolution Rate
Gelucire 44/14
Molecular Dynamics Simulation
Ternary Solid Dispersion
Machine learning in accelerating microsphere formulation development
Journal article
Deng, Jiayin, Ye, Zhuyifan, Zheng, Wenwen, Chen, Jian, Gao, Haoshi, Wu, Zheng, Chan, Ging, Wang, Yongjun, Cao, Dongsheng, Wang, Yanqing, Lee, Simon Ming Yuen, Ouyang, Defang. Machine learning in accelerating microsphere formulation development[J]. Drug Delivery and Translational Research, 2023, 13(4), 966-982.
Authors:
Deng, Jiayin
;
Ye, Zhuyifan
;
Zheng, Wenwen
;
Chen, Jian
;
Gao, Haoshi
; et al.
Favorite
|
TC[WOS]:
6
TC[Scopus]:
8
IF:
5.7
/
5.5
|
Submit date:2023/01/30
Drug Release
Machine Learning
Microspheres
Molecular Dynamics Simulation
A numerical study of the distribution of chemotherapeutic drug carmustine in brain glioblastoma
Journal article
CHEN HONGYU, HU GUANGHUI, OUYANG DEFANG. A numerical study of the distribution of chemotherapeutic drug carmustine in brain glioblastoma[J]. Drug Delivery and Translational Research, 2022.
Authors:
CHEN HONGYU
;
HU GUANGHUI
;
OUYANG DEFANG
Favorite
|
IF:
5.7
/
5.5
|
Submit date:2023/08/31
A numerical study of the distribution of chemotherapeutic drug carmustine in brain glioblastoma
Journal article
Chen, Hongyu, Hu, Guanghui, Ouyang, Defang. A numerical study of the distribution of chemotherapeutic drug carmustine in brain glioblastoma[J]. Drug Delivery and Translational Research, 2021, 12(7), 1697-1710.
Authors:
Chen, Hongyu
;
Hu, Guanghui
;
Ouyang, Defang
Favorite
|
TC[WOS]:
6
TC[Scopus]:
3
IF:
5.7
/
5.5
|
Submit date:2022/05/13
Numerical Model
Drug Release
Convection
Brain Tumor
Gliadel Wafer
Afepack
A novel scalable fabrication process for the production of dissolving microneedle arrays
Journal article
Hangping Chen, Biyuan Wu, Minmin Zhang, Peipei Yang, Beibei Yang, Wanbing Qin, Qingqing Wang, Xinguo Wen, Meiwan Chen, Guilan Quan, Xin Pan, Chuanbin Wu. A novel scalable fabrication process for the production of dissolving microneedle arrays[J]. DRUG DELIVERY AND TRANSLATIONAL RESEARCH, 2019, 9(1), 240-248.
Authors:
Hangping Chen
;
Biyuan Wu
;
Minmin Zhang
;
Peipei Yang
;
Beibei Yang
; et al.
Favorite
|
TC[WOS]:
33
TC[Scopus]:
38
IF:
5.7
/
5.5
|
Submit date:2020/01/07
Dissolving Microneedle Arrays
Double-penetration Female Mold
Positive-pressure Microperfusion Techniqu
Scale-up Fabrication