[1] |
Blechman AM, Smiley H. Magnetic force in orthodontics. Am J Orthod, 1978, 74(4):435-443.
|
[2] |
Muller M. The use of magnets in orthodontics: an alternative means to produce tooth movement. Eur J Orthod, 1984, 6(4):247-253.
|
[3] |
Gmitrov J, Ohkubo C, Okano H. Effect of 0.25 T static magnetic field on microcirculation in rabbits. Bioelectromagnetics, 2002, 23(3):224-229.
|
[4] |
Funk RH, Monsees TK. Effects of electromagnetic fields on cells: physiological and therapeutical approaches and molecular mechanisms of interaction. a review. Cells Tissues Organs, 2006, 182(2):59-78.
|
[5] |
Nakajima H, Kishi T, Tsuchiya Y, et al. Exposure of fibroblasts derived from keloid patients to low-energy electromagnetic fields: preferential inhibition of cell proliferation, collagen synthesis, and transforming growth factor beta expression in keloid fibroblasts in vitro. Ann Plast Surg, 1997, 39(5):536-541.
|
[6] |
Obora Y, Tamaki N, Matsumoto S. Nonsuture microvascular anastomosis using magnet rings: preliminary report. Surg Neurol, 1978, 9(2):117-120.
|
[7] |
Kanshin NN, Permiakov NK, Dzhalagoniia RA, et al. Sutureless anastomoses in gastrointestinal surgery with and without steady magnetic field (experimental study). Arkh Patol(俄文), 1978, 40(8):56-61.
|
[8] |
Jansen A, Becker AE, Brummelkamp WH, et al. The importance of the apposition of the submucosal intestinal layers for primary wound healing of intestinal anastomosis. Surg Gynecol Obstet, 1981, 152(1):51-58.
|
[9] |
Jansen A, Brummelkamp WH, Davies GA, et al. Clinical applications of magnetic rings in colorectal anastomosis. Surg Gynecol Obstet, 1981, 153(4):537-545.
|
[10] |
Stepanov EA, Vasil'ev GS, Nikolaev VV. The treatment of intestinal fistulae in children by applying a by-pass anastomosis using magnetic devices. Khirurgiia(俄文), 1992, (11/12):93-95.
|
[11] |
Saveliev VS, Avaliani MV, Bashirov AD. Endoscopic magnetic cholecystodigestive anastomoses: personal technique for palliative treatment of distal bile duct obstruction. J Laparoendosc Surg, 1993, 3(2):99-112.
|
[12] |
Bulynin VI, Steshkin VI, Bulynin VV, et al. The restoration of esophageal patency in cicatricial strictures by using magnetic elements. Grud Serdechnososudistaia Khir(俄文), 1993, (3):53-56.
|
[13] |
Lubashevskiǐ VT, Shabanov AM, Vasil'ev GS. The inflammatory-reparative processes in the implantation of the ureter into the bladder by using the mechanical forces of permanent magnets. Biull Eksp Biol Med(俄文), 1993, 116(11):550-552.
|
[14] |
Yamanouchi E, Kumano R, Kobayashi K, et al. Treatment for bowel or biliary obstruction by magnetic compression anastomosis development of Yamanouchi's method and its clinical evaluation. J Nippon Med Sch(日文), 2002, 69(5):471-475.
|
[15] |
Cope C, Clark TW, Ginsberg G, et al. Stent placement of gastroenteric anastomoses formed by magnetic compression. J Vasc Interv Radiol, 1999, 10(10):1379-1386.
|
[16] |
Cope C, Ginsberg GG. Long-term patency of experimental magnetic compression gastroenteric anastomoses achieved with covered stents. Gastrointest Endosc, 2001, 53(7):780-784.
|
[17] |
Takao S, Matsuo Y, Shinchi H, et al. Magnetic compression anastomosis for benign obstruction of the common bile duct. Endoscopy, 2001, 33(11):988-990.
|
[18] |
Muraoka N, Uematsu H, Yamanouchi E, et al. Yamanouchi magnetic compression anastomosis for bilioenteric anastomotic stricture after living-donor liver transplantation. J Vasc Interv Radiol, 2005, 16(9):1263-1267.
|
[19] |
Klima U, Farhat F, Beilner J, et al. Preliminary clinical experience with the Ventrica automatic distal anastomosis system in coronary surgery. Arch Mal Coeur Vaiss(法文), 2005, 98(4):294-299.
|
[20] |
Shi Y, Lv Y, Wang B, et al. Novel magnetic rings for rapid vascular reconstruction in canine liver transplantation model. Transplant Proc, 2006, 38(9):3070-3074.
|
[21] |
Li J, Lü Y, Qu B, et al. Application of a new type of sutureless magnetic biliary-enteric anastomosis stent for one-stage reconstruction of the biliary-enteric continuity after acute bile duct injury: an experimental study. J Surg Res, 2008, 148(2):136-142.
|
[22] |
吕毅,刘仕琪.以磁吻合技术:迎接微创外科新未来.中华肝胆外科杂志, 2011, 7(8):621-623.
|
[23] |
朱志军,崔于林,张雅敏,等.肝移植术后缺血型胆道狭窄非手术治疗的长期疗效分析.中华肝胆外科杂志, 2009, 15(8):564-566.
|
[24] |
Daniel RK, Lidman D, Olding M, et al. An anastomotic device for microvascular surgery: evolution. Ann Plast Surg, 1984, 13(5):402-411.
|
[25] |
Ostrup LT, Berggren A. The UNILINK instrument system for fast and safe microvascular anastomosis. Ann Plast Surg, 1986, 17(6):521-525.
|