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Items: 1 to 20 of 83

1.

Degeneration and recovery of the neuromuscular junction after application of extracorporeal shock wave therapy.

Kenmoku T, Ochiai N, Ohtori S, Saisu T, Sasho T, Nakagawa K, Iwakura N, Miyagi M, Ishikawa T, Tatsuoka H, Inoue G, Nakamura J, Kishida S, Saito A, Takahashi K.

J Orthop Res. 2012 Oct;30(10):1660-5. doi: 10.1002/jor.22111. Epub 2012 Mar 27.

2.

Second application of low-energy shock waves has a cumulative effect on free nerve endings.

Takahashi N, Ohtori S, Saisu T, Moriya H, Wada Y.

Clin Orthop Relat Res. 2006 Feb;443:315-9.

PMID:
16462457
3.

Extracorporeal shock wave treatment can selectively destroy end plates in neuromuscular junctions.

Kenmoku T, Nemoto N, Iwakura N, Ochiai N, Uchida K, Saisu T, Ohtori S, Nakagawa K, Sasho T, Takaso M.

Muscle Nerve. 2017 Jul 31. doi: 10.1002/mus.25754. [Epub ahead of print]

PMID:
28759703
4.

Stabilizing neuromuscular contacts reduces motoneuron death caused by paralysis of muscles in neonatal rats.

Harding DI, Greensmith L, Vrbová G.

Neuroscience. 1999;93(3):1141-6.

PMID:
10473278
5.

The effects of exercise training of different intensities on neuromuscular junction morphology.

Deschenes MR, Maresh CM, Crivello JF, Armstrong LE, Kraemer WJ, Covault J.

J Neurocytol. 1993 Aug;22(8):603-15.

PMID:
8229087
6.

[Pathological changes in neuromuscular junction during ischemia-reperfusion in rat skeletal muscle].

Wang X, Kan S, Zhang B.

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2006 Nov;20(11):1103-8. Chinese.

PMID:
17191578
7.

Neuromuscular transmission and correlative morphology in young and old mice.

Banker BQ, Kelly SS, Robbins N.

J Physiol. 1983 Jun;339:355-77.

8.

[Experimental study on morphological changes of detrusor muscle and its neuromuscular junction after medullary cone injury in rats].

Hou C, Zheng X, Chen A.

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2007 May;21(5):473-7. Chinese.

PMID:
17578285
9.

Improved rate of peripheral nerve regeneration induced by extracorporeal shock wave treatment in the rat.

Hausner T, Pajer K, Halat G, Hopf R, Schmidhammer R, Redl H, Nógrádi A.

Exp Neurol. 2012 Aug;236(2):363-70. doi: 10.1016/j.expneurol.2012.04.019. Epub 2012 May 1.

PMID:
22575596
10.

Direct epicardial shock wave therapy improves ventricular function and induces angiogenesis in ischemic heart failure.

Zimpfer D, Aharinejad S, Holfeld J, Thomas A, Dumfarth J, Rosenhek R, Czerny M, Schaden W, Gmeiner M, Wolner E, Grimm M.

J Thorac Cardiovasc Surg. 2009 Apr;137(4):963-70. doi: 10.1016/j.jtcvs.2008.11.006.

11.
12.

Benefit of combined extracorporeal shock wave and bone marrow-derived endothelial progenitor cells in protection against critical limb ischemia in rats.

Yeh KH, Sheu JJ, Lin YC, Sun CK, Chang LT, Kao YH, Yen CH, Shao PL, Tsai TH, Chen YL, Chua S, Leu S, Yip HK.

Crit Care Med. 2012 Jan;40(1):169-77. doi: 10.1097/CCM.0b013e31822d74d0.

PMID:
21926605
13.

[Detection of bone fragments in pulmonary vessels following extracorporeal shock wave application to the distal femur in an in-vivo animal model].

Maier M, Freed JA, Milz S, Pellengahr C, Schmitz C.

Z Orthop Ihre Grenzgeb. 2003 Mar-Apr;141(2):223-6. German.

PMID:
12695961
14.

Dose-dependent new bone formation by extracorporeal shock wave application on the intact femur of rabbits.

Tischer T, Milz S, Weiler C, Pautke C, Hausdorf J, Schmitz C, Maier M.

Eur Surg Res. 2008;41(1):44-53. doi: 10.1159/000128279. Epub 2008 Apr 28.

PMID:
18441525
16.

Juvenile and adult rat neuromuscular junctions: density, distribution, and morphology.

Ma J, Smith BP, Smith TL, Walker FO, Rosencrance EV, Koman LA.

Muscle Nerve. 2002 Dec;26(6):804-9.

PMID:
12451605
17.
18.

[Pathophysiological, molecular and metabolic changes at the neuromuscular junction and the peripheral nerve after central nervous system lesions in humans].

Rigoard P, Bauche S, Buffenoir K, Da Costa L, Boildieu N, Seguin F, Koenig J, Lapierre F, Maixent JM.

Neurochirurgie. 2009 Mar;55 Suppl 1:S135-47. doi: 10.1016/j.neuchi.2008.05.011. Epub 2009 Feb 18. French.

PMID:
19232650
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