• Title/Summary/Keyword: Carotid body tumor

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A Case of Multiple Paraganglioma Presenting as Recurrent Tumor Nermerous Times (수차례 재발한 다발성 부신경절종 1예)

  • Lee, Seok-Hee;Sun, Min-Jin;Choi, Mi-Suk;Lee, Dong-Wook
    • Korean Journal of Head & Neck Oncology
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    • v.27 no.1
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    • pp.80-83
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    • 2011
  • Paraganglioma is a relatively rare, generally benign and slow growing tumor arising from widely distributed paraganglionic tissue thought to originate from the neural crest. In the head and neck region, paraganglionic tissue is distributed in the superior and inferior paraganglia such as the carotid body, the vagal body, and the jugulotympanic region. Approximately 10% of patients with paraganglioma have a family history of such tumors. Multiple lesions can be found in 26% of patients with family history. It is important to distinguish between paraganglioma and atypical carcinoid tumor and medullary thyroid cancer. This can be done with histopathologic evaluation and immunohistochemical markers. Complete excision is recommended for the treatment of this tumor. Paraganglioma is particularly aggressive and rapid recurrence of paraganglioma is common after local resection. We present a case of malignant paraganglioma in the neck which recurred 2 months after local resection. We suppose that radiation therpay could be the last option for the treatment in this clinical setting.

Diagnosis and Treatment of Neurogenic Tumors in the Head and Neck (두경부 신경성 종양의 진단과 치료)

  • Kim Seong-Rae;Oh Sang-Hoon;Kim Sang-Hyo
    • Korean Journal of Head & Neck Oncology
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    • v.12 no.2
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    • pp.161-168
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    • 1996
  • The neuorogenic tumor is known to be originated from neural crest, and the involved cells are Schwann cell, ganglion cell, and paraganglion cell. The Schwannoma, neurofibroma, and malignant schwannoma arise from the schwann cell, ganglioneuroma is from ganglion cell, and carotid body tumor and glomus tumor are originated from paraganglion cell. Authors reviewed thirty-eight patients of the neurogenic tumors in the head and neck, excluding intracranial tumor and Von-Recklinghausen disease, surgically treated at the Department of Surgery, Pusan Paik Hospital from January 1981 to May 1996. Of the 38 cases, 28 cases were schwannoma, 6 cases neurofibroma, 2 cases malignant schwannoma, and 2 cases paraganglioma. These tumors occurred at any age, but the majority of patients occurred in the fourth decade of life. There was female preponderance (M : F=1 : 1. 53) in sex ratio. The lateral cervical region was the most common distribution. 12 cases arose from the anterior triangle of neck, and 12 cases from the posterior triangle of neck. The major nerve origin of tumor could be identified in 30 cases (80%). 11 cases were treated by simple excision, and partial excision was 3 cases. Excision with parotidectomy 1 case, enucleation 11 cases, enucleation with parotidectomy 7 cases, radical neck dissection 1 cases, upper neck dissection 2 cases, suprahyoid dissection 1 case, Caldwell­Luc operation 1 case. The postoperative complications were hoarseness (2 cases), facial palsy (1 case), Homer syndrome (1 case), and hypoesthesia of tongue (1 case).

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Paraganglioma of the Submandibular Region (악하선 부위에 발생한 부신경절종)

  • Kim, Jae Gu;Hong, A Ram;Kim, Jo Heon;Lee, Dong Hoon
    • Korean Journal of Head & Neck Oncology
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    • v.36 no.2
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    • pp.51-53
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    • 2020
  • Paraganglioma is a rare benign neuroendocrine tumor arising from the paraganglia of the autonomic nervous system. Paraganglioma occurs mainly in the carotid body, jugular foramen, and vagus nerve in the head and neck region. Herein, we report a case of paraganglioma of the submandibular region that has not been reported. This case highlights paraganglioma as a rare differential diagnosis for submandibular region tumors.

Clinical Presentation of Paraganglioma in Orthopaedics - Report of Two Cases - (정형외과 영역에서의 부신경절종의 임상 양상 - 2례 보고 -)

  • Lee, Sang-Lim;Oh, Joo-Han;Lee, Sang-Hoon;Kim, Han-Soo;Kim, Hyung-Ho;Kim, June-Hyuk
    • The Journal of the Korean bone and joint tumor society
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    • v.11 no.1
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    • pp.94-99
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    • 2005
  • Paraganglioma is a neoplasm consisting of sympathetic neuroendocrine cells, which arise from neural ectoderm of extra-adrenal paraganglia. It often occurs in thyroid, carotid body, mediastinum, lung, duodenum, the retroperitoneal area and periaortic area. Malignant paraganglioma is defined not by the histological diagnosis, but by spread to regional lymph nodes or distant metastasis. Rare bone metastasis mostly occurs in the base of skull or spine, and even it rarely metastasizes to pelvis or femur. We would like to report two cases of paraganglioma; one in the subcutaneous fat layer that was mistaken for a vascular tumor, and the other in the retroperitoneal space with early bone metastasis.

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Primary Splenic Paraganglioma in a Dog

  • An, Su-Jin;Moon, Jong-Hyun;Hwang, Tae-Sung;Lee, Hee-Chun;Yu, Do-Hyeon;Sur, Jung-Hyang;Jung, Dong-In
    • Journal of Veterinary Clinics
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    • v.35 no.4
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    • pp.155-160
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    • 2018
  • A 6-year-old intact female Shih-tzu dog was referred due to anorexia. Physical examination, complete blood count, serum chemical analysis, radiography, and ultrasonography were evaluated. Physical examination and hematological analysis showed normal findings. Abdominal radiographs and ultrasound revealed well-defined masses in the spleen. Other abdominal organs showed no significant abnormalities. Tissue samples taken via sono-guided fine needle aspiration of the splenic mass showed many bare nuclei, which were variable in size. Results of histopathological and immunohistochemical (IHC) analyses performed after splenectomy were consistent with paraganglioma. Based on these findings, we diagnosed this patient with a paraganglioma of splenic origin. Two months after splenectomy, abdominal ultrasonography revealed a new neoplastic lesion in the liver. The clients refused further management and the patient expired three months after initial diagnosis. Necropsy as well as histopathological and IHC examinations of other systemic organs including the liver, adrenal gland, kidney, brain, urinary bladder, lung, aortic body, carotid body, and pancreas were performed. The neoplastic tissue in the liver also demonstrated features of a paraganglioma, and there were no remarkable findings in all other organs.

Evaluation of Dose Change by Using the Deformable Image Registration (DIR) on the Intensity Modulated Radiation Therapy (IMRT) with Glottis Cancer (성문암 세기조절 방사선치료에서 변형영상정합을 이용한 선량변화 평가)

  • Kim, Woo Chul;Min, Chul Kee;Lee, Suk;Choi, Sang Hyoun;Cho, Kwang Hwan;Jung, Jae Hong;Kim, Eun Seog;Yeo, Seung-Gu;Kwon, Soo-Il;Lee, Kil-Dong
    • Progress in Medical Physics
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    • v.25 no.3
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    • pp.167-175
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    • 2014
  • The purpose of this study is to evaluate the variation of the dose which is delivered to the patients with glottis cancer under IMRT (intensity modulated radiation therapy) by using the 3D registration with CBCT (cone beam CT) images and the DIR (deformable image registration) techniques. The CBCT images which were obtained at a one-week interval were reconstructed by using B-spline algorithm in DIR system, and doses were recalculated based on the newly obtained CBCT images. The dose distributions to the tumor and the critical organs were compared with reference. For the change of volume depending on weight at 3 to 5 weeks, there was increased of 1.38~2.04 kg on average. For the body surface depending on weight, there was decreased of 2.1 mm. The dose with transmitted to the carotid since three weeks was increased compared be more than 8.76% planned, and the thyroid gland was decreased to 26.4%. For the physical evaluation factors of the tumor, PITV, TCI, rDHI, mDHI, and CN were decreased to 4.32%, 5.78%, 44.54%, 12.32%, and 7.11%, respectively. Moreover, $D_{max}$, $D_{mean}$, $V_{67.50}$, and $D_{95}$ for PTV were increased or decreased to 2.99%, 1.52%, 5.78%, and 11.94%, respectively. Although there was no change of volume depending on weight, the change of body types occurred, and IMRT with the narrow composure margin sensitively responded to such a changing. For the glottis IMRT, the patient's weight changes should be observed and recorded to evaluate the actual dose distribution by using the DIR techniques, and more the adaptive treatment planning during the treatment course is needed to deliver the accurate dose to the patients.