• 제목/요약/키워드: Pronator quadratus

검색결과 5건 처리시간 0.017초

진행된 키엔벡 병에서의 방형회내근 유경 요골 피판을 이용한 관절성형술의 중장기 결과 (Mid to Long-term Outcome of Vascularized Pronator Quadratus-wrapped Radial Bone Flap Arthroplasty for Advanced $Kienb{\ddot{o}}ck's$ Disease)

  • 공현식;백구현;이영호;김세훈;조영재;정문상
    • Archives of Reconstructive Microsurgery
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    • 제15권2호
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    • pp.101-106
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    • 2006
  • The purpose of this study was to analyze the mid to long-term clinical and radiological outcome of vascularized pronator quadratus-wrapped radial bone flap arthroplasty for symptomatic advanced $Kienb{\ddot{o}}ck's$ disease. Between 1982 and 2000, 41 cases of advanced $Kienb{\ddot{o}}ck's$ disease were treated with vascularized pronator quadratus wrapped radial bone flap arthroplasty. There were 17 men and 24 women, with a mean age of 39 years at the time of operation. According to Lichtman's classification, there were 13 stage IIIb and 28 stage IV patients. The duration of follow-up averaged 6.1 ($3{\sim}22$) years. We assessed the clinical outcome by subjective pain and active range of motion of the wrist, and evaluated the radiologic outcome by using carpal height ratio and radioscaphoid angle. Postoperatively, all patient reported an improvement in their symptoms. The mean active extension and flexion were improved by $9^{\circ}$ and $6^{\circ}$, respectively (p<0.05). The carpal height ratio was decreased from a mean of 0.52 to 0.48, and the radioscahpoid angle was increased from a mean of $61^{\circ}$ to $66^{\circ}$, but the differences were not significant statistically. Vascularized pronator quadratus-wrapped radial bone flap arthroplasty improves the wrist motion and may prevent serious carpal collapse in advanced $Kienb{\ddot{o}}ck's$ Disease.

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뇌졸중 후 강직에 대한 도침치료: 3 증례보고 (Post-stroke Spasticity Treated by Miniscalpel-Acupuncture: Three Case Report)

  • 윤상훈;조희근;송민영
    • 한방재활의학과학회지
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    • 제28권1호
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    • pp.145-152
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    • 2018
  • Post-stroke spasticity is a common complication that can be deleterious to the daily living function and quality of life of stroke survivor. This case report was conducted to introduce the use of miniscalpel-acupuncture as a novel method for the treatment of post-stroke spasticiy in three patients with chronic stroke. Patients received miniscalpel-acpuncuture treatment for 4~7 session. The flexor digitorum brevis, pronator teres, pronator quadratus, brachioradialis, tibialis posterior, gastrocnemius on the affected side were needled. The main outcome were the Modified Ashworth Scale (MAS) muscle spasticity score and the range of motion. The evaluation indices were measured after the initiation of treatment and after treatment. After miniscalpel-acupuncture session, three patients improved as indicated in the MAS grade and range of motion. This retrospective case report presents miniscalpel-acupuncture as a potentially effective approach in Korean medicine rehabilitation treatment of post-stroke spasticity. Further research is needed to confirm these findings.

해부학적 변이를 가지는 전방골간신경 증후군: 1예 보고 (Anterior Interosseous Nerve Syndrome with Varient Nerve Innervation: A Case Report)

  • 이준호;나재범;김재수;유진종;이경규;정성훈
    • Investigative Magnetic Resonance Imaging
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    • 제6권2호
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    • pp.147-151
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    • 2002
  • 전방골간신경 증후군은 전방골간신경의 질환으로서, 장무지 굴근, 심수지 굴근 및 방형 회내근의 마비가 나타나고, 감각은 정상인 것이 특징적이다. 전방골간신경 증후군은 많이 알려져 있으나 자기공명영상 소견에 대한 보고는 적으며, 신경 분포의 해부학적 변이를 가지는 전방골간신경 증후군에 관한 보고는 더욱 드물다. 저자들은 정상변이의 신경분포를 보이는 전방골간신경 증후군 증례를 1예 경험하였기에 방사선학적 소견을 문헌고찰과 함께 보고하고자 한다.

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전방골간신경 증후군: 수술적으로 치료한 7예에 대한 임상적 고찰 (The Anterior Interosseous Nerve Syndrome: Clinical Investigation of Surgically Treated 7 Cases)

  • 김형민;정창훈;이상욱;노연태;박일중
    • Archives of Reconstructive Microsurgery
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    • 제18권2호
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    • pp.67-74
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    • 2009
  • Purpose: The etiology and treatment strategy of the anterior interosseous nerve (AIN) syndrome are still controversial. Seven patients with the AIN syndrome who were treated by surgical exploration and neurolysis were reviewed at a mean of 35.9 months follow up period. Materials & Methods: There were six men and one woman. The mean age was 37.3 years, ranging from 26 to 59. No patient was related to trauma and associated neurological lesion. Surgical exploration was performed at 7.7 months after onset of paralysis. Results: All except one patients experienced pain around the elbow region before the onset of the palsy. On 7 patients, only the flexor pollicis longus was paralysed in 1, only the index flexor digitorum profundus in 2, and none had paralysis of the middle. The most common compression structures were fibrous bands within flexor digitorum sublimis arcade. However there was no demonstrable abnormality in three. Recovery was complete in all cases within 12 months after surgery. Conclusion: We recommended surgical exploration and neurolysis in patients who have shown no improvement after 6 months of conservative treatment. And careful preoperative examination is essential to avoid misdiagnosis and inappropriate surgery, especially in incomplete AIN syndrome.

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수궐음 심포경근의 해부학적 고찰 (Study on the Anatomical Pericardium Meridian Muscle in Human)

  • 박경식
    • Korean Journal of Acupuncture
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    • 제22권1호
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    • pp.67-74
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    • 2005
  • Objectives : This study was carried to identify the component of the Pericardium Meridian Muscle in human. Methods : The regional muscle group was divided into outer, middle, and inner layer. The inner part of body surface were opened widely to demonstrate muscles, nerve, blood vessels and to expose the inner structure of the Pericardium Meridian Muscle in the order of layers. Results We obtained the results as follows; He Perfcardium Meridian Muscle composed of the muscles, nerves and blood vessels. In human anatomy, it is present the difference between terms (that is, nerves or blood vessels which control the muscle of the Pericardium Meridian Muscle and those which pass near by the Pericardium Meridian Muscle). The inner composition of the Pericardium Meridian Muscle in human is as follows ; 1) Muscle P-1 : pectoralis major and minor muscles, intercostalis muscle(m.) P-2 : space between biceps brachialis m. heads. P-3 : tendon of biceps brachialis and brachialis m. P-4 : space between flexor carpi radialis m. and palmaris longus m. tendon(tend.), flexor digitorum superficialis m., flexor digitorum profundus m. P-5 : space between flexor carpi radialis m. tend. and palmaris longus m. tend., flexor digitorum superficialis m., flexor digitorum profundus m. tend. P-6 : space between flexor carpi radialis m. tend. and palmaris longus m. tend., flexor digitorum profundus m. tend., pronator quadratus m. H-7 : palmar carpal ligament, flexor retinaculum, radiad of flexor digitorum superficialis m. tend., ulnad of flexor pollicis longus tend. radiad of flexor digitorum profundus m. tend. H-8 : palmar carpal ligament, space between flexor digitorum superficialis m. tends., adductor follicis n., palmar interosseous m. H-9 : radiad of extensor tend. insertion. 2) Blood vessel P-1 : lateral cutaneous branch of 4th. intercostal artery, pectoral br. of Ihoracoacrornial art., 4th. intercostal artery(art) P-3 : intermediate basilic vein(v.), brachial art. P4 : intermediate antebrachial v., anterior interosseous art. P-5 : intermediate antebrarhial v., anterior interosseous art. P-6 : intermediate antebrachial v., anterior interosseous art. P-7 : intermediate antebrachial v., palmar carpal br. of radial art., anterior interosseous art. P-8 : superficial palmar arterial arch, palmar metacarpal art. P-9 : dorsal br. of palmar digital art. 3) Nerve P-1 : lateral cutaneous branch of 4th. intercostal nerve, medial pectoral nerve, 4th. intercostal nerve(n.) P-2 : lateral antebrachial cutaneous n. P-3 : medial antebrachial cutaneous n., median n. musrulocutaneous n. P-4 : medial antebrachial cutaneous n., anterior interosseous n. median n. P-5 : median n., anterior interosseous n. P-6 : median n., anterior interosseous n. P-7 : palmar br. of median n., median n., anterior interosseous n. P-8 : palmar br. of median n., palmar digital br. of median n., br. of median n., deep br. of ulnar n. P-9 : dorsal br. of palmar digital branch of median n. Conclusions : This study shows some differences from already established study on meridian Muscle.

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