1. |
Hunziker EB. Articular cartilage repair: basic science and clinical progress. A review of the current status and prospects. Osteoarthritis Cartilage, 2002, 10(6): 432-463.
|
2. |
吳迪, 趙智君, 朱曉松, 等. 藻酸鈣凝珠復合自體軟骨細胞修復成年兔關節軟骨缺損. 中國組織工程研究與臨床康復, 2010, 14(21): 3811-3814.
|
3. |
馬勇, 陳金飛, 張允申, 等. 可注射性殼聚糖/β-甘油磷酸二鈉凝膠復合同種異體軟骨細胞修復兔膝關節軟骨缺損及威靈仙的干預效應. 中國組織工程研究與臨床康復, 2010, 14(16): 2864-2869.
|
4. |
Naito K, Watari T, Muta T, et al. Low-intensity pulsed ultrasound (LIPUS) increases the articular cartilage type II collagen in a rat osteoarthritis model. J Orthop Res, 2010, 28(3): 361-369.
|
5. |
Loyola Sánchez A, Ramirez Wakamatzu MA, Vazquez Zamudio J, et al. Effect of low-intensity pulsed ultrasound on regeneration of joint cartilagen patients with second and third degree osteoarthritis of the knee. Reumatol Clin, 2009, 5(4): 163-167.
|
6. |
高鋒. 低強度脈沖超聲波促進人髓核細胞合成胞外基質功能性成分的體外實驗研究. 鎮江: 蘇州大學, 2011.
|
7. |
Wakitani S, Nawata M, Tensho K, et al. Repair of articular cartilage defect in the patello-femoral joint with autologous bone marrow mesenchymal cell transplantation: three case reports involving nine defects in five knees. J Tissue Eng Regen Med, 2007, 1(1): 74-79.
|
8. |
陳康, 王太平. 組織工程軟骨修復關節軟骨損傷研究新進展. 中國矯形外科雜志, 2012, 20(8): 721-723.
|
9. |
劉尚侖, 董睿, 馬勇. 組織工程化軟骨構建的研究進展. 中國組織工程研究, 2012, 16(46): 8716-8720.
|
10. |
羅文, 范建楠, 葉川. 軟骨組織工程學方法修復關節軟骨缺損. 中國組織工程研究, 2012, 16(37): 7009-7014.
|
11. |
Danisovic L, Varga I, Zamborsky R, et al. The tissue engineering of articular cartilage: cells, scaffolds and stimulating factors. Exp Biol Med, 2012, 237(1): 10-17.
|
12. |
劉清宇, 王富友, 楊柳. 關節軟骨組織工程支架的研究進展. 中國修復重建外科雜志, 2012, 26(10): 1247-1250.
|
13. |
Wang CC, Yang KC, Lin KH, et al. Cartilage regeneration in SCID mice using a highly organized three- dimensional alginate scaffold. Biomaterials, 2012, 33(1): 120-127.
|
14. |
Tay LX, Ahmad RE, Dashtdar H, et al. Treatment outcomes of alginate-embedded allogenic mesenchymal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rabbit model. Am J Sports Med, 2012, 40(1): 83-90.
|
15. |
Dhollander AA, Verdonk PC, Lambrecht S, et al. Midterm results of the treatment of cartilage defects in the knee using alginate beads containing human mature allogenic chondrocytes. Am J Sports Med, 2012, 40(1): 75-82.
|
16. |
蔣愷, 崔維頂, 任科偉, 等. 低強度脈沖式超聲波對大鼠軟骨細胞增殖和基質合成的影響. 江蘇醫藥, 2011, 37(12): 1391-1393.
|
17. |
Mukai S, Ito H, Nakagawa Y, et al. Transforming growth factor-beta1 mediates the effects of low-intensity pulsed ultrasound in chondrocytes. Ultrasound Med Biol, 2005, 31(12): 1713-1721.
|
18. |
Kobayashi Y, Sakai D, Iwashina T, et al. Low-intensity pulsed ultrasound stimulates cell proliferation, proteoglycan synthesis and expression of growth factor-related genes in human nucleus pulposus cell line. Eur Cell Mater, 2009, 17: 15-22.
|
19. |
Suzuki A, Takayama T, Suzuki N, et al. Daily low-intensity pulsed ultrasound stimulates production of bone morphogenetic protein in ROS 17/2. 8 cells. J Oral Sci, 2009, 51(1): 29-36.
|
20. |
Li X, Li J, Cheng K, et al. Effect of low-intensity pulsed ultrasound on MMP-13 and MAPKs signaling pathway in rabbit knee osteoarthritis. Cell Biochem Biophys, 2011, 61(2): 427-434.
|
21. |
于海生. 低強度脈沖超聲促進骨髓來源細胞增殖的研究. 重慶: 重慶醫科大學, 2012.
|
22. |
高翔, 宋錦璘, 鄧鋒, 等. 低強度脈沖超聲波聯合引導骨再生術對Beagle犬牙周骨開窗缺損修復效應的研究. 中國生物醫學工程學報, 2012, 31(6): 895-901.
|
23. |
Romano CL, Romano D, Logoluso N. Low-intensity pulsed ultrasound for the treatment of bone delayed union or nonunion: a review. Ultrasound Med Biol, 2009, 35(4): 529-536.
|