• Title/Summary/Keyword: 대퇴 골두 골절

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Treatment of Open Calcaneal Fracture with Massive Bone Loss using Femoral Head Allograft and Myocutaneous Free Flap (A Case Report) (종골 외측 1/2 이상의 결손을 동반한 개방성 골절의 동종 대퇴골두 이식과 유리 피판술을 이용한 치료 (1예 보고))

  • Sung, Ki-Sun;Eun, Sang-Soo;Mun, Goo-Hyoun
    • Journal of Korean Foot and Ankle Society
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    • v.11 no.1
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    • pp.111-114
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    • 2007
  • Open calcaneal fracture with more than lateral half of bone loss and soft tissue defect occurred in 17 year-old male patient due to motor vehicle accident. Soft tissue defect included heel pad, peroneal tendon. Bone loss involved mainly most part of inferior tuberosity but not subtalar joint. Open dressing and debridement were done daily in operating room and antibiotics administration was started. After granulation tissue formed, femoral head allograft was performed and fixed with 6.0 mm screws to replace bone defect. Soft tissue defect was covered with latissimus dorsi musculocutaneous free flap. No sign of infection nor major osteolysis was observed in 15 months follow up period. Soft tissue defect was covered with latissimus dorsi musculocutaneous free flap.

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A Hip 14 Years after a Non-surgiclly-treated Pipkin Type-II Fracture of the Femoral Head - A Case Report - (핍킨 2형 대퇴골두골절의 보존적 치료 14년 후 결과 - 증례보고 -)

  • Lee, Young-Kyun;Ha, Yong-Chan;Koo, Kyung-Hoi
    • Journal of Trauma and Injury
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    • v.25 no.1
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    • pp.25-27
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    • 2012
  • A 30-year-old, male truck driver had a traffic accident and visited a hospital due to left hip pain. The patient's femoral head was fractured, and he was treated conservatively. For 14 years afterwards, he walked without a limp, had no pain, and drove his truck. He was involved in another traffic accident and experienced a comminuted fracture of the left distal femur 14 years after the initial injury. Although he was symptom-free, while being treated by open reduction and internal fixation for the distal femur fracture, he was concerned about the status of his left femoral head. Pelvis radiographs and reconstructed CT images were done, and they showed a spur change around the femoral head which had a dense sclerotic band within and revealed a slight depression of subchondral bone of the medial portion of the femoral head. The diagnosis was a Pipkin type-II fracture of the femoral head.

Comparison of Subchondral Fracture on Radiographs with MR Images in Evaluation of Osteonecrosis in LCP Patients (LCP 환아에서 골괴사의 평가방법으로 연골하 골절선과 자기공명영상의 비교)

  • Kim, Jin-Won;Park, Mee-Jung;Choi, Ho-Chul;Cho, Jae-Min;Ryoo, Jae-Wook;Jeong, Seong-Hoon;Kim, Dong-Hee;Lee, Gyung-Kyu;Na, Jae-Boem
    • Investigative Magnetic Resonance Imaging
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    • v.13 no.2
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    • pp.177-182
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    • 2009
  • Purpose : To compare the subchondral fracture on plain radiography and MR image as a method for assessing osteonecrosis in Legg-Calve-Perthes(LCP) pateients. Materials and methods: We retrospetively reviewed 15 hip joint MR images and plain radiography which visualized subchondral fracture. With basis of the Salter-Thompson classification, extent of necrosis was graded group A to B, as follows; Group A = < 50%, B = > 50%. On PACS workstation, necrotic area of each MR image was measured to calculate the volume of necrotic portion: volume = necrotic area $\times$ slice thickness. Necrotic areas on MR images were graded group A to B and results were compared with that measured in Salter-Thompson classification. On follow up, bone resorption was measured and the extent was compared with subchondral fracture representing necrotic area and that on MR volume method respectively. Results : In 9 joints of 15 hip joints (60%), the degree of necrosis in Salter-Thompson classification on plain radiographs was different from that on MR volume method. Based on plain radiographs by Salter-Thompson classification, the degree of necrosis was overestimated in 6(67%) joints, and underestimated in 3(33%) joints compared with MR volume method. On follow up study, bone resorption was not correlated with necrotic extent of subchondral fracture and MR volume method. Conclusion : The extent of femoral head necrosis measured by subchondral fracture was different from that measured by MR and was not correlated with bone resorption on follow up. Therefore, usefulness of subchondral fracture as a prognostic factor may be limited.

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Avascular Necrosis of Bone after Renal Transplantation - Prevalence and Usefulness of Bone SPECT - (신장 이식후에 발생한 무혈관성 골괴사 -발생 빈도 및 골 SPECT의 유용성에 관하여 -)

  • Choi, Yun-Young;Yang, Seoung-Oh;Ryu, Jin-Sook;Moon, Dae-Hyuk;Lee, Hee-Kyung
    • The Korean Journal of Nuclear Medicine
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    • v.29 no.4
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    • pp.504-510
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    • 1995
  • Avascular necrosis(AVN) of bone can be resulted from various causes that distrub vascular supply to bone tissue, including steroid therapy after renal transplantation. In this study, we determine the prevalence of the avascular necrosis of bone after renal transplantation and compare the role of the bone scan, SPECT and MRI. In 301 patients with transplanted kidney, the prevalence of avascular necrosis was deter-mined clinically. Site of bone necrosis was evaluated by clinical symptom, bone scan, SPECT and MRI. Bone scan was done in all patients with AVN. Bone SPECT and MRI were done in six cases; and MRI was done in two cases. The prevalence of AVN was 3.3% (10/301), and the site of AVN was 16 femoral heads in 10 patients (bilateral: 60%) and bilateral calcaneal tuberosity in one patient. Bone scan showed typical AVN (cold area with surrounding hot uptake) in 13 lesions, only hot uptake in three lesions (including two calcaneal tuberosities), decreased uptake in one lesion, and normal in one lesion. Decreased uptake and normal lesion showed an equivacal cold area without surrounding hot uptake on SPECT. A symptomatic patient with positive bone SPECT showed normal finding on MRI. The prevalence of AVN of bone after renal transplantation was 3.3%, and whole body bone scan showed multiple bone involvement. Two symptomatic hip Joints without definite lesion on whole body bone scan or MRI showed cold defect on SPECT. Therefore, we conclude that bone SPECT should be perfomed in a symptomatic patient with negative bone scan or MRI in case with high risk of AVN after renal transplantation.

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