参考文献
[1] | Jones,W.S.;Patel,M.R.;Dai,D.;Subherwal,S.;Stafford,J.;Calhoun,S.;Peterson,E.D. .Temporal trends and geographic variation of lower-extremity amputation in patients with peripheral artery disease: Results from U.S. Medicare 2000-2008[J].Journal of the American College of Cardiology,2012(21):2230-2236. |
[2] | Hammarlund CS;Carlstrom M;Melchior R;Persson BM .Prevalence of back pain, its effect on functional ability and health-related quality of life in lower limb amputees secondary to trauma or tumour: a comparison across three levels of amputation.[J].Prosthetics and orthotics international,2011(1):97-105. |
[3] | Miyajima S;Shirai A;Yamamoto S;Okada N;Matsushita T .Risk factors for major limb amputations in diabetic foot gangrene patients.[J].Diabetes research and clinical practice,2006(3):272-279. |
[4] | Zlotolow,D.A.;Kozin,S.H. .Advances in Upper Extremity Prosthetics[J].Hand clinics,2012(4):587-563. |
[5] | Peach, M.S.;James, R.;Toti, U.S.;Deng, M.;Morozowich, N.L.;Allcock, H.R.;Laurencin, C.T.;Kumbar, S.G. .Polyphosphazene functionalized polyester fiber matrices for tendon tissue engineering: In vitro evaluation with human mesenchymal stem cells[J].Biomedical materials,2012(4):045016-1-045016-13. |
[6] | Kumbar, S.G.;Toti, U.S.;Deng, M.;James, R.;Laurencin, C.T.;Aravamudhan, A.;Harmon, M.;Ramos, D.M. .Novel mechanically competent polysaccharide scaffolds for bone tissue engineering[J].Biomedical materials,2011(6):065005-1-065005-13. |
[7] | James, R.;Kumbar, S.G.;Laurencin, C.T.;Balian, G.;Chhabra, A.B. .Tendon tissue engineering: Adipose-derived stem cell and GDF-5 mediated regeneration using electrospun matrix systems[J].Biomedical materials,2011(2):025011-1-025011-13. |
[8] | Jiang,T.;Khan,Y.;Nair,L.S.;Abdel-Fattah,W.I.;Laurencin,C.T. .Functionalization of chitosan/poly(lactic acid-glycolic acid) sintered microsphere scaffolds via surface heparinization for bone tissue engineering[J].Journal of biomedical materials research, Part A,2010(3):1193-1208. |
[9] | Meng Deng;Lakshmi S. Nair;Syam P. Nukavarapu;Sangamesh G. Kumbar;Tao Jiang;Arlin L.Weikel;Nicholas R. Krogman;Harry R. Allcock;Cato T. Laurencin .In situ Porous Structures: A Unique Polymer Erosion Mechanism in Biodegradable Dipeptide-Based Polyphosphazene and Polyester Blends Producing Matrices for Regenerative Engineering[J].Advanced functional materials,2010(17):2794-2806. |
[10] | S G Kumbar;R James;S P Nukavarapu;C T Laurencin .Electrospun nanofiber scaffolds: engineering soft tissues[J].Biomedical materials,2008(3):034002-1-034002-15-0. |
[11] | Lake C;Dodson R .Progressive upper limb prosthetics.[J].Physical medicine and rehabilitation clinics of North America,2006(1):49-72. |
[12] | González-Fernández,M. .Development of Upper Limb Prostheses: Current Progress and Areas for Growth[J].Archives of Physical Medicine and Rehabilitation,2014(6):1013-1014. |
[13] | Gerard C;Bordeleau LJ;Barralet .The stimulation of angiogenesis and collagen deposition by copper.[J].Biomaterials,2010(5):824-831. |
[14] | Schultz AE;Kuiken TA .Neural interfaces for control of upper limb prostheses: the state of the art and future possibilities.[J].PM & R: the journal of injury, function, and rehabilitation,2011(1):55-67. |
[15] | Biddiss EA;Chau TT .Upper limb prosthesis use and abandonment: A survey of the last 25 years.[J].Prosthetics and orthotics international,2007(3):236-257. |
[16] | Biddiss E;Chau T .Upper-limb prosthetics: critical factors in device abandonment.[J].American Journal of Physical Medicine and Rehabilitation,2007(12):977-987. |
[17] | Agnew,S.P.;Ko,J.;DeLaGarza,M.;Kuiken,T.;Dumanian,G. .Limb transplantation and targeted reinnervation: A practical comparison[J].Journal of reconstructive microsurgery,2012(1):63-68. |
[18] | Kuiken TA;Li G;Lock BA;Lipschutz RD;Miller LA;Stubblefield KA;Englehart KB .Targeted muscle reinnervation for real-time myoelectric control of multifunction artificial arms.[J].JAMA: the Journal of the American Medical Association,2009(6):619-628. |
[19] | Kuiken T .Targeted reinnervation for improved prosthetic function.[J].Physical medicine and rehabilitation clinics of North America,2006(1):1-13. |
[20] | Christina L Kaufman;Warren Breidenbach .World experience after more than a decade of clinical hand transplantation: update from the Louisville hand transplant program.[J].Hand clinics,2011(4):417-421. |
[21] | Petruzzo P;Lanzetta M;Dubernard JM;Landin L;Cavadas P;Margreiter R;Schneeberger S;Breidenbach W;Kaufman C;Jablecki J;Schuind F;Dumontier C .The International Registry on Hand and Composite Tissue Transplantation.[J].Transplantation: Official Journal of the Transplantation Society,2010(12):1590-1594. |
[22] | Chung KC;Oda T;Saddawi Konefka D;Shauver MJ .An economic analysis of hand transplantation in the United States.[J].Plastic and reconstructive surgery,2010(2):589-598. |
[23] | Jones NF;Schneeberger S .Arm transplantation: prospects and visions.[J].Transplantation Proceedings,2009(2):476-480. |
[24] | Petruzzo P;Lanzetta M;Dubernard JM;Margreiter R;Schuind F;Breidenbach W;Nolli R;Schneeberger S;van-Holder C;Kaufman C;Jablecki J;Landin L;Cavadas P .The international registry on hand and composite tissue transplantation.[J].Transplantation: Official Journal of the Transplantation Society,2008(4):487-492. |
[25] | Agnew,S.P.;Ko,J.;DeLaGarza,M.;Kuiken,T.;Dumanian,G. .Limb transplantation and targeted reinnervation: A practical comparison[J].Journal of reconstructive microsurgery,2012(1):63-68. |
[26] | Kuiken TA;Dumanian GA;Lipschutz RD;Miller LA;Stubblefield KA .The use of targeted muscle reinnervation for improved myoelectric prosthesis control in a bilateral shoulder disarticulation amputee.[J].Prosthetics and orthotics international,2004(3):245-253. |
[27] | Kuiken T .Targeted reinnervation for improved prosthetic function.[J].Physical medicine and rehabilitation clinics of North America,2006(1):1-13. |
[28] | Kuiken TA;Marasco PD;Lock BA;Harden RN;Dewald JPA .Redirection of cutaneous sensation from the hand to the chest skin of human amputees with targeted reinnervation[J].Proceedings of the National Academy of Sciences of the United States of America,2007(50):20061-20066. |
[29] | Examination of Force Discrimination in Human Upper Limb Amputees With Reinnervated Limb Sensation Following Peripheral Nerve Transfer[J].IEEE transactions on neural systems and rehabilitation engineering: a publication of the IEEE Engineering in Medicine and Biology Society,2009(5):438. |
[30] | Hudson TW;Evans GR;Schmidt CE .Engineering strategies for peripheral nerve repair.[J].The Orthopedic Clinics of North America,2000(3):485-498. |
[31] | Jia X;Koenig MA;Zhang X;Zhang J;Chen T;Chen Z .Residual motor signal in long-term human severed peripheral nerves and feasibility of neural signal-controlled artificial limb.[J].Journal of Hand Surgery. American Volume,2007(5):657-666. |
[32] | Dhillon G.S.;Horch K.W. .Direct neural sensory feedback and control of a prosthetic arm[J].IEEE transactions on neural systems and rehabilitation engineering: a publication of the IEEE Engineering in Medicine and Biology Society,2005(4):468-472. |
[33] | Margalit E;Maia M;Weiland J;Greenberg R;Fujii G;Torres G;Piyathaisere D;O'Hearn T;Liu W;Lazzi G;Dagnelie G;Scribner D;de Juan E;Humayun M .Retinal prosthesis for the blind.[J].Survey of Ophthalmology,2002(4):335-0. |
[34] | Leventhal D.K.;Durand D.M. .Chronic measurement of the stimulation selectivity of the flat interface nerve electrode[J].IEEE Transactions on Biomedical Engineering,2004(9):1649-1658. |
[35] | Foldes EL;Ackermann DM;Kilgore KL;Bhadra N .Design, fabrication and evaluation of a conforming circumpolar peripheral nerve cuff electrode for acute experimental use.[J].Journal of Neuroscience Methods,2011(1):31-37. |
[36] | Ward MP;Rajdev P;Ellison C;Irazoqui PP.Toward a comparison of microelectrodes for acute and chronic recordings.[J].Brain research,2009:183-200. |
[37] | Branner A.;Stein R.B.;Fernandez E.;Aoyagi Y.;Normann R.A. .Long-term stimulation and recording with a penetrating microelectrode array in cat sciatic nerve[J].IEEE Transactions on Biomedical Engineering,2004(1):146-157. |
[38] | Lago N;Ceballos D;J Rodriguez F;Stieglitz T;Navarro X .Long term assessment of axonal regeneration through polyimide regenerative electrodes to interface the peripheral nerve.[J].Biomaterials,2005(14):2021-2031. |
[39] | Badia, J.;Boretius, T.;Andreu, D.;Azevedo-Coste, C.;Stieglitz, T.;Navarro, X. .Comparative analysis of transverse intrafascicular multichannel, longitudinal intrafascicular and multipolar cuff electrodes for the selective stimulation of nerve fascicles[J].Journal of neural engineering,2011(3):036023-1-036023-13. |
[40] | Smith SL;Judy JW;Otis TS .An ultra small array of electrodes for stimulating multiple inputs into a single neuron.[J].Journal of Neuroscience Methods,2004(1/2):109-114. |
[41] | Moxon K.A.;Kalkhoran N.M.;Markert M.;Sambito M.A.;McKenzie J.L.;Webster J.T. .Nanostructured surface modification of ceramic-based microelectrodes to enhance biocompatibility for a direct brain-machine interface[J].IEEE Transactions on Biomedical Engineering,2004(6):881-889. |
[42] | Phillip A. Sharp;Robert Langer .Promoting Convergence in Biomedical Science[J].Science,2011(Jul.29 TN.6042):527-527. |
[43] | Kim, YH;Lee, C;Ahn, KM;Lee, M;Kim, YJ .Robust and real-time monitoring of nerve regeneration using implantable flexible microelectrode array[J].Biosensors & Bioelectronics,2009(7):1883-1887. |
[44] | Lebedev MA;Nicolelis MA .Brain-machine interfaces: past, present and future.[J].Trends in Neurosciences,2006(9):536-546. |
[45] | M. Sean Peach;Sangamesh G. Kumbar;Roshan James;Udaya S. Toti;Deepak Balasubramaniam;Meng Deng;Bret Ulery;Augustus D. Mazzocca;Mary Beth McCarthy;Nicole L. Morozowich;Harry R. Allcock;Cato T. Laurencin .Design and Optimization of Polyphosphazene Functionalized Fiber Matrices for Soft Tissue Regeneration[J].Journal of biomedical nanotechnology,2012(1):107-124. |
[46] | Kumbar SG;Nukavarapu SP;James R;Nair LS;Laurencin CT .Electrospun poly(lactic acid-co-glycolic acid) scaffolds for skin tissue engineering.[J].Biomaterials,2008(30):4100-4107. |
[47] | James R;Kesturu G;Balian G .Tendon: biology, biomechanics, repair, growth factors, and evolving treatment options.[J].Journal of Hand Surgery. American Volume,2008(1):102-112. |
[48] | Hampton S;King L .Healing an intractable wound using bio-electrical stimulation therapy.[J].British journal of nursing: BJN,2005(15):S30-32. |
[49] | Hudlicka O;Milkiewicz M;Cotter MA;Brown MD .Hypoxia and expression of VEGF-A protein in relation to capillary growth in electrically stimulated rat and rabbit skeletal muscles.[J].Experimental Physiology,2002(3):373-381. |
[50] | Gavin,TP;Spector,DA;Wagner,H;Breen,EC;Wagner,PD .Nitric oxide synthase inhibition attenuates the skeletal muscle VEGF mRNA response to exercise.[J].Journal of applied physiology,2000(4):1192-1198. |
[51] | Dae-Hyeong Kim;Jonathan Viventi .Dissolvable films of silk fibroin for ultrathin conformal bio-integrated electronics[J].Nature materials,2010(6):511-517. |
[52] | Cham Vepari;David L.Kaplan .Silk as a biomaterial[J].Progress in Polymer Science,2007(8/9):991-1007. |
[53] | Hu Tao;David L Kaplan;Fiorenzo C. Omenetto .Silk Materials - A Road to Sustainable High Technology[J].Advanced Materials,2012(21):2824-2837. |
[54] | Dae-Hyeong Kim;Yun-Soung Kim;Jason Amsden;Bruce Panilaitis;David L. Kaplan;Fiorenzo G. Omenetto;Mitchell R. Zakin;John A. Rogers .Silicon electronics on silk as a path to bioresorbable, implantable devices[J].Applied physics letters,2009(13):133701-1-133701-3. |
[55] | Konstantinos Tsioris;Hu Tao;Mengkun Liu;Jeffrey A. Hopwood;David L Kaplan;Richard D. Averitt;Fiorenzo G. Omenetto .Rapid Transfer-Based Micropatterning and Dry Etching of Silk Microstructures[J].Advanced Materials,2011(17):2015-2019. |
[56] | Hu Tao;Sean M. Siebert;Mark A. Brenckle;Richard D. Averitt;Mark Cronin-Golomb;David L. Kaplan;Fiorenzo G. Omenetto .Gold nanoparticle-doped biocompatible silk films as a path to implantable thermo-electrically wireless powering devices[J].Applied physics letters,2010(12):123702-1-123702-3. |
[57] | Mahmut Selman Sakar;Devin Neal;Thomas Boudou .Formation and optogenetic control of engineered 3D skeletal muscle bioactuators[J].Lab on a chip,2012(23):4976-4985. |
[58] | Sella Sellmovlc;Mehmet R. Dokmecl;All Khademhosseinl .Research Highlights[J].Lab on a chip,2012(24):5127-5129. |
[59] | Crisci AR;Ferreira AL .Low-intensity pulsed ultrasound accelerates the regeneration of the sciatic nerve after neurotomy in rats.[J].Ultrasound in Medicine and Biology,2002(10):1335-1341. |
[60] | Chang CJ;Hsu SH .The effects of low-intensity ultrasound on peripheral nerve regeneration in poly(dl-lactic acid-co-glycolic acid) conduits seeded with Schwann cells.[J].Ultrasound in Medicine and Biology,2004(8):1079-1084. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%