Literature DB >> 16427166

Low intensity pulsed ultrasound increases the matrix hardness of the healing tissues at bone-tendon insertion-a partial patellectomy model in rabbits.

Ling Qin1, Pikkwan Fok, Hongbin Lu, Sanqiang Shi, Yang Leng, Kwoksui Leung.   

Abstract

BACKGROUND: This study evaluated the low intensity pulsed ultrasound enhancement on matrix hardness of the healing tissues at the bone-tendon junction.
METHODS: Sixteen 18 week-old mature female rabbits were used. An established transverse partial patellectomy was performed at the distal one-third of the patella. Animals were then divided according to their body weight into ultrasound group (n = 8) with daily treatment of low intensity pulsed ultrasound and control group (n = 8) without ultrasound treatment. Animals were euthanized at week 8 and 16 postoperatively to evaluate the radiographic new bone formation and the Vickers hardness of the matrix of the healing tissues at the bone-tendon junction.
FINDINGS: (1) Comparing with the control group, the anterior-posterior area of the new bone in the ultrasound treated group was found on average to be 3.0 and 3.1 times greater at week 8 and 16, respectively (P < 0.01). (2) The Vickers hardness of the new bone in ultrasound group was 11.3% (P < 0.05) significantly lower at week 8 but 20.0% (P < 0.05) significantly higher at week 16 as compared with that of the control group. (3) The Vickers hardness of the newly regenerated fibrocartilage zone, healing tendon, and cartilaginous metaplasia in ultrasound group was found higher than the control group at both week 8 and 16, but the difference was significant at week 16 only, being 44.1% (P < 0.05), 20.1% (P < 0.01), and 46.4% (P < 0.01) higher, respectively.
INTERPRETATION: The preliminary findings suggested for the first time that low intensity pulsed ultrasound treatment resulted in the enhancement of the matrix hardness in new bone, fibrocartilage, cartilaginous metaplasia, and healing tendon at the healing bone-tendon junction. These findings can be extrapolated into clinical practice, i.e. the more rapid healing induced by low intensity pulsed ultrasound, the earlier mobilization of the affected joint. The beneficial effects on prevention of the musculoskeletal deterioration resulting from the prolonged immobilization would be therefore expected.

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Year:  2006        PMID: 16427166     DOI: 10.1016/j.clinbiomech.2005.11.008

Source DB:  PubMed          Journal:  Clin Biomech (Bristol, Avon)        ISSN: 0268-0033            Impact factor:   2.063


  13 in total

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2.  Biology and augmentation of tendon-bone insertion repair.

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Journal:  J Orthop Surg Res       Date:  2010-08-21       Impact factor: 2.359

Review 3.  Low-intensity pulsed ultrasound therapy: a potential strategy to stimulate tendon-bone junction healing.

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Journal:  J Zhejiang Univ Sci B       Date:  2012-12       Impact factor: 3.066

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5.  Labeling and tracing of bone marrow mesenchymal stem cells for tendon-to-bone tunnel healing.

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Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2011-04-19       Impact factor: 4.342

6.  Low-Intensity Pulsed Ultrasound Improves the Functional Properties of Cardiac Mesoangioblasts.

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7.  Sustained Acoustic Medicine: A Novel Long Duration Approach to Biomodulation Utilizing Low Intensity Therapeutic Ultrasound.

Authors:  Matthew D Langer; George K Lewis
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2015-05

8.  The effects of an early return to training on the bone-tendon junction post-acute micro-injury healing.

Authors:  Lin Wang; Weiwei Gao; Kaiyu Xiong; Ning Liu; Bo Wang
Journal:  J Sports Sci Med       Date:  2012-06-01       Impact factor: 2.988

9.  Development of biodegradable Zn-1X binary alloys with nutrient alloying elements Mg, Ca and Sr.

Authors:  H F Li; X H Xie; Y F Zheng; Y Cong; F Y Zhou; K J Qiu; X Wang; S H Chen; L Huang; L Tian; L Qin
Journal:  Sci Rep       Date:  2015-05-29       Impact factor: 4.379

10.  Genes responsive to low-intensity pulsed ultrasound in MC3T3-E1 preosteoblast cells.

Authors:  Yoshiaki Tabuchi; Yuuki Sugahara; Mika Ikegame; Nobuo Suzuki; Kei-ichiro Kitamura; Takashi Kondo
Journal:  Int J Mol Sci       Date:  2013-11-18       Impact factor: 5.923

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