• Title/Summary/Keyword: 양성 골종양

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Quantitative Analysis of Thallium-201 Scintigraphy in Bone Tumor (골종양에서 탈륨 스캔의 정량적 분석)

  • Shin, Duk-Seop;Cho, Ihn-Ho
    • The Journal of the Korean bone and joint tumor society
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    • v.9 no.1
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    • pp.45-51
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    • 2003
  • Purpose: This study was designed to know the ability of thallium-201 scintigraphy to discriminate malignant bone tumor from benign by analysing the quantitative thallium uptake ratio. Materials and Methods: We took thallium-201 scintigraphy prospectively with other imaging studies in 82 bone tumor suspecting patients. The results of scintigraphy were read qualitatively and calculated quantitatively, and retention indexes were estimated. For the statistical analysis the patients were divided as four group; high grade malignant bone tumor, benign bone tumor, giant cell tumor and low grade malignant bone tumor. Results: The mean thallium uptake ratio was 4.14 in early phase and 2.26 in delayed phase in high grade malignant bone tumor group, 1.16 and 1.09 in benign bone tumor, 3.15 and 1.94 in giant cell tumor, and 1.41 and 1.31 in low grade malignant bone tumor. Retention indexes were 0.62, 0.97, 0.66, 0.93 in same order. The thallium uptake ratio and retention indexes were statistically correlated in high grade malignant bone tumor and benign bone tumor group(p<0.001). Conclusion: Thallium-201 scintigraphy proved as useful imaging study to discriminate malignant bone tumor from benign, but had exception in giant cell tumor and low grade malignant bone tumors.

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Tumors of the Foot (족부의 종양)

  • Shin, Duk-Seop;Park, Sung-Hyuk;Ahn, Jong-Chul
    • The Journal of the Korean bone and joint tumor society
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    • v.9 no.1
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    • pp.69-76
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    • 2003
  • Purpose: This study was designed to provide the data base for the diagnosis and treatment of the foot tumor by investigation of the clinical and pathological characteristics and distribution of the foot tumor. Materials and Methods: 142 foot tumors of 141 patients were studied. All patients were diagnosed with surgical biopsy. We investigated clinical and pathological characteristics and epidemiologic distribution of the foot tumor by reviewing the medical records and imaging materials. The location of the tumors were classified with zone of Kirby et al. Results: 75 patients were female and 66 were male. The average age of the patients was 33.2 years old. Benign soft tissue tumors were the most as 68 cases, and followed by 57 benign bone tumors, 12 malignant soft tissue tumors and 5 malignant bone tumors. Ganglia were the most in benign soft tissue tumors as 36 cases, subungual exostoses in benign bone tumors as 18, squamous cell carcinomas in malignant soft tissue tumors as 7, and metastatic lung cancers in malignant bone tumors as 2. The rate of pain complaints was the highest in malignant bone tumors, the duration of symptom was longest in benign soft tissue tumors, and the size of the tumor was the biggest in malignant bone tumors. Neurological symptoms were found in only 3 benign soft tissue tumors. For the zonal distribution, zone 5 was the most in 59 cases and zone 4 was the least as 10. The most numbers of the benign bone tumors located in zone 5, of benign soft tissue tumors in zone 1, of malignant bone tumors in zone 1 and 2, and of malignant soft tissue tumors in zone 5. The methods of surgical treatment included intralesional or marginal resection, curettage with or without bone graft, toe amputation, below knee amputation and limb salvage. Conclusion: The tumors of the foot were rare and various, and mostly benign (88%), but we can do proper treatment of those tumors without excluding malignant tumors by considering the age of patients, pain, duration of symptom, size of the tumors, and zonal distribution.

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The Treatment of the Benign Bone Tumor by Curettage and Fresh Frozen Allograft (양성 골 종양의 절제 및 소파술 후 사용한 신선 동결 동종골 이식의 결과)

  • Jung, Sung-Taek;Bae, Bong-Hyun;Lim, Keun-Young;Kong, Il-Kyu
    • The Journal of the Korean bone and joint tumor society
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    • v.11 no.1
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    • pp.62-70
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    • 2005
  • Purpose: We compared the time how much time spent until the bone unions, when we grafted fresh frozen allograft during therapy of benign bone tumor depends on the degrees of bony unions. Materials and Methods: This study selected 29 cases, in which a curettage on the benign bone tumors was conducted and a fresh frozen allograft was transplanted. The area of the focus, the new bone formation, the recurrence of the focus and complications in the plain radiographs were observed. Results: The average time when we could find out bony unions in the radiographs is eleven weeks. The time when we could observe the unions in the radiographs are 11.4 weeks in allograft group, 10.7 weeks in allograft and autograft groups and 13.6 weeks in allograft and bone substitute. On radiologic findings, the average lesion size is 40 cm3. The time when we could find bony unions are 9.3 weeks in less than 40 $cm^3$ and 12.9 weeks in more than 40 $cm^3$. We could observe recurrences in two cases. Conclusion: The authors could get the similar results between fresh frozen allograft, allograft and autograft after curettage of benign bone tumor. We can think the ideal method which is the transplantation of autograft, but if we can’t get autograft enough, the best way which heal the defects is the transplantation of fresh frozen allograft.

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The Use of Calcium Sulfate as a Treatment of Benign Bone Tumor (양성 골종양 치료시 calcium sulfate의 이용)

  • Han, Chung-Soo;Yoon, Kyung-Ho;Ha, Jeong-Han
    • The Journal of the Korean bone and joint tumor society
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    • v.9 no.1
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    • pp.31-37
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    • 2003
  • Introduction: The purpose of this study is to assess the efficacy of calcium sulfate as a bone graft substitute in the treatment of benign bone tumor. Materials and Method: Between December 2000 and November 2001, 18 patients with a benign bone tumor were treated with crettage and the defects were filled with calcium sulfate (Osteoset$^{(R)}$:Wright Medical Co. USA) as a bone graft substitute. Average age was 28.4 years and mean follow up period was 12.3 months. Calcium sulfate mixed with autograft was used in 6 cases, calcium sulfate with allograft in 2 cases, and calcium sulfate alone was used in 10 cases. The degree of absorption of calcium sulfate and new bone formation at plain radiograph was analyzed at immediate postoperative and postoperative 3 months and 6 months follow up. Results: At 3 months postoperatively, 92% of calcium sulfate was absorbed, and at 6 months postoperatively, 89% of new bone formation was observed. There was no difference in the resorption and new bone formation between the group using bone graft and the group osteoset$^{(R)}$ alone, different preoperative diagnosis and even different locations. There was no complication. Conclusion: Calcium sulfate(Osteoset$^{(R)}$) is a safe and effective bone graft substitute in the treatment of benign bone tumors, especially for the children in whom autograft is not recommandable.

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임상가를 위한 특집 2 - 구강악안면영역에서 양성 종양의 영상진단

  • Kim, Gyeong-A
    • The Journal of the Korean dental association
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    • v.47 no.10
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    • pp.637-646
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    • 2009
  • 양성 종양(benign tumor)을 언급하기에 앞서 과오종(hamartoma) 및 과다 형성(hyperplasia)과의 차이를 구분할 필요가 있다. 양성 종양은 기원조직과 유사한 조직이 이상 증식하는 것으로 서서히 성장하지만 일반적으로 치료하기 전까지 이상 증식을 지속하는 진성 신생물을 일컫는다. 이에 비해 과오종은 정상 조직이 무질서하게 과증식하는 것으로 일정기간 후에는 성장을 멈추기 때문에 진성 신생물로 간주하지 않는다. 그러나 일부 과오종이 양성 종양에 포함되기도 하는데, 예를 들어 치아종은 정상적인 치성 조직의 성장이 완료되는 시기와 거의 동일한 시기에 성장을 멈추지만 양성 종양으로 분류된다. 과다 형성은 조직의 세포가 정상적인 배열 양상을 보이면서 세포의 수가 증가하는 것으로 지속적인 성장 양상을 보이지만 그 성장이 제한적이므로 양성 종양과는 구별된다. 양성 종양은 일반적으로 무통성으로 서서히 성장하기 때문에 종양의 크기가 증가하여 안면 종창이나 동통 등을 유발하는 경우에 발견될 수 있으며, 방사선검사에서 우연히 발견되기도 한다. 방사선검사는 병소의 위치, 범위, 특징 및 병소와 인접 해부학적 구조와의 관계 등 많은 방사선학적 진단 정보를 제공한다. 일부 종양은 방사선사진에서 매우 특징적인 소견을 나타내기 때문에 방사선학적 소견으로 예비 진단을 할 수 있을 정도의 진단정보를 제공하기도 하는 반면 어떤 종양들은 방사선사진에서 관찰되는 소견이 매우 유사하여 진단에 어려움을 주기도 한다. 따라서 종양의 확진을 위해서는 생검이 필수적이며, 방사선검사는 반드시 생검에 앞서 진행되어야만 정확한 방사선학적 진단을 할 수 있다. 양성 종양은 각각의 특징적인 방사선학적인 소견을 나타내지만 일반적으로 관찰되는 양성 종양의 특징이 존재하므로 이러한 일반적인 특징을 관찰하여 병소가 양성인지 악성인지를 감별할 수 있다. 첫째, 양성 종양은 대개 호발하는 부위가 있으므로 종양의 발생부위는 감별 진단을 하는 데 매우 중요하다. 일반적으로 치성 병소는 치아가 형성되는 하악관 상방의 치조돌기에서, 혈관성 및 신경성 병소는 하악관 내에서, 연골성 종양은 하악과두와 같이 연골세포가 잔존되어 있는 부위에서 발생하는 경우가 많다. 둘째, 양성 종양은 대체로 명확한 경계와 피질골성 변연을 보이며, 종종 병소가 결체조직으로 둘러싸여 있어 병소 주위에 방사선투과성 띠가 관찰되기도 한다. 셋째, 양성 종양은 일반적으로 인접 주위 조직에 압력을 가하면서 서서히 성장하기 때문에 인접 치아의 변위 또는 흡수, 피질골의 비박, 팽융 등의 소견을 보이며 피질골의 천공은 드물다. 방사선학적으로 양성 종양의 병소 내부는 방사선투과상으로 관찰되거나, 방사선불투과상으로 관찰되거나, 방사선투과상과 방사선불투과상이 혼재된 상으로 관찰된다. 저자는 이 지면에서 이러한 방사선학적 특징을 기초로 하여 구강악안면영역에 발생하는 양성 종양을 분류하고 각각의 특징에 대해 살펴보고자 한다.

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The Analysis and Treatment of Benign Bone Tumor by Curettage and Debridement with Bone Graft Substitutes (양성 골종양의 절제 및 소파술 후 사용한 골이식 대체물의 결과 및 분석)

  • Jung, Sung-Taek;Seo, Hyoung-Yeon;Seon, Jong-Keun;Lee, Jae-Joon;Kim, Seung-Sik
    • The Journal of the Korean bone and joint tumor society
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    • v.9 no.2
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    • pp.139-147
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    • 2003
  • Purpose: The purpose of this study was to determine if bony union can be obtained when a bone graft substitute is transplanted in order to treat a benign bone tumor and if there is a difference between calcium sulfate and hydroxyapatite in the healing procedure when the degree of the bony union after the bone graft are compared. Materials and Methods: This study selected 20 cases, in which a curettage on the benign bone tumors was conducted and a bone graft substitute was transplanted. The area of the focus, the new bone formation, the recurrence of the focus in the plain radiographs and histological findings were observed. Results: Twenty cases (13 males, 7 females) were evaluated. Their mean age at surgery was 15.8 years (2~45), and the mean follow-up period was 3 years. The mean area of focus was 30.7 $cm^3$ in the radiographs, and 19 cases showed successful results in the ultimate visit, while 1 case has a recurrence of the focus. Conclusion: Calcium sulfate has osteoconduction and superior bioavailability, and is absorbed in vivo in proportion to the new bone formation. On the other hand, hydroxyapatite has good osteoconduction. It can result in better bone formation when it is combined with an autologous bone graft, autologous bone marrow, and an allogenic bone graft, but is absorbed in vivo more slowly than the former.

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Chondroblastoma of the carpal scaphoid (A Case Report) (수근부 주상골의 연골모세포종 (증례 보고))

  • Chung, Kyung-Chil;Kim, Key-Yong;Choi, Jang-Suk;Seo, Seung-Suk;Kim, Kyoung-Whan
    • The Journal of the Korean bone and joint tumor society
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    • v.11 no.2
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    • pp.194-198
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    • 2005
  • Chondroblastoma is relatively rare benign neoplasm with predilection for the epiphysis of long bones. Benign chondroblastomas of bone compromise approximately 1% of benign bone tumors in several reported series. Chondroblastoma in the carpus is extremely rare in english literature. We report the case of a chonroblastoma in the carpal scaphoid.

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The Differentiation of Malignant and Benign Musculoskeletal Tumors by F-18 FDG PET/CT Studies - Determination of maxSUV by Analysis of ROC Curve (F-18 FDG PET/CT에서 양성과 악성 근골격 종양의 감별진단 - 수신자 판단특성곡선을 이용한 maxSUV의 절단값 결정)

  • Kong, Eun-Jung;Cho, Ihn-Ho;Chun, Kyung-Ah;Won, Kyu-Chang;Lee, Hyung-Woo;Choi, Jun-Heok;Shin, Duk-Seop
    • Nuclear Medicine and Molecular Imaging
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    • v.41 no.6
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    • pp.553-560
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    • 2007
  • Purpose: We evaluated the standard uptake value (SUV) of F-18 FDG at PET/CT for differentiation of benign from malignant tumor in primary musculoskeletal tumors. Materials and Methods: Forty-six tumors (11 benign and 12 malignant soft tissue tumors, 9 benign and 14 malignant bone tumors) were examined with F-18 FDG PET/CT (Discovery ST, GE) prior to tissue diagnosis. The maxSUV(maximum value of SUV) were calculated and compared between benign and malignant lesions. The lesion analysis was based on the transverse whole body image. The maxSUV with cutoff of 4.1 was used in distinguishing benign from malignant soft tissue tumor and 3.05 was used in bone tumor by ROC curve. Results: There was a statistically significant difference in maxSUV between benign (n=11; maxSUV $3.4{\pm}3.2$) and malignant (n=12; maxSUV $14.8{\pm}12.2$) lesions in soft tissue tumor (p=0.001). Between benign bone tumor (n=9; maxSUV $5.4{\pm}4.0$) and malignant bone tumor (n=14; maxSUV $7.3{\pm}3.2$), there was not a significant difference in maxSUV. The sensitivity and specificity for differentiating malignant from benign soft tissue tumor was 83% and 91%, respectively. There were four false positive malignant bone tumor cases to include fibrous dysplasia, Langerhans-cell histiocytosis (n=2) and osteoid osteoma. Also, one false positive case of malignant soft tissue tumor was nodular fasciitis. Conclusion: The maxSUV was useful for differentiation of benign from malignant lesion in primary soft tissue tumors. In bone tumor, the low maxSUV correlated well with benign lesions but high maxSUV did not always mean malignancy.

The Effect of Platelet-Rich Plasma on Allograft Transplantation after Curettage in Benign Bone Tumor (양성 골 종양의 소파술 후 실시한 동종골 이식에서 혈소판 풍부 혈장 투여의 효과)

  • Kim, Jae-Do;Kim, Ji-Youn;Jang, Su-Jin;Chung, So-Hak;Jung, Gu-Hee
    • The Journal of the Korean bone and joint tumor society
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    • v.16 no.1
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    • pp.8-13
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    • 2010
  • Purpose: This study was performed to evaluate the effi ciency of Platelet-rich plasma (PRP) for acceleration of bone healing process on allograft transplantation after curettage in benign bone tumor. Materials and Methods: From December 2007 to February 2009, twenty-one patients who had benign bone tumor and underwent allograft transplantation after curettage were evaluated. Mean follow-up period was 14.6 months (range, 12-26 months). We compared with 13 cases of PRP group and 8 cases of non-PRP group in terms of size of lesion, bone resorption, amount of applied PRP and complications. The mean age at surgery was 23.6 years (range, 4-73 years). The most common diagnosis was simple bone cyst (7) followed by enchondroma (4), giant cell tumor (3), undifferentiated benign bone tumor (3) and so on. Results: The mean size of lesion was 33.5 $cm^3$ (range, 2.3-181.9 $cm^3$) (29.4 $cm^3$ in PRP group and 40.2 $cm^3$ in non-PRP group). The mean volume of injected PRP was 7.4 cc (range, 3-12 cc). Bone union started at 3.0 months (range, 1.5-5.8 months) in PRP group and 5.3 months (range, 4-8 months) in non-PRP group. Three cases for each group were excluded due to recurrence and pathologic fracture. One patient had febrile episode 3 weeks later after surgery which subsided with antibiotics. Conclusion: The PRP could accelerate bone union in allograft transplantation after curettage of benign bone tumor. Furthermore, we expect that PRP can accelerate bone union in fracture or non-union.

Benign Tumors of the Talar Body (거골 체부에 발생한 양성 종양)

  • Suh, Sung-Wook;Lee, Sang-Hoon;Kim, Han-Soo
    • The Journal of the Korean bone and joint tumor society
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    • v.8 no.3
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    • pp.76-82
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    • 2002
  • Purpose: Benign bone tumor of the talar body have rarely been evaluated according to the therapeutic methods because of the scarcity of their incidence. Here, we report our experience of 8 cases who were treated by using of posterior approach and curettage through the posterior process of the talus. Materials and Methods: Between February 1986 and October 2001, we experienced 8 cases of benign bone tumor occurring in the talar body. They included two osteoid osteomas, two giant cell tumors, one capillary hemangioma, one chondroblastoma, one simple bone cyst, and one osteochondroma. Their mean age was 22.1 years (ranging from 10 to 41 years). Mean follow-up period was 7.7 years (ranging from 1 to 16 years). All patients were treated by using of posterior approach. Two osteoid osteomas and one osteochondroma were treated by excision of tumors. Other cases were treated with curettage through the cortical window on the posterior process of the talus. Results: There was no recurrence during the follow-up period. one infection occurred. Except this case, all patients had no pain in weight-bearing, and complete range of movement at the ankle joint was reserved in each case. Conclusion: In this study, we suppose that posterior approach to the talar body may be a safe method with minimal damage of normal tissues and sufficient of curettage is capable through the cortical window on the posterior process of the talus.

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