• Title/Summary/Keyword: Stereotactic

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Vim Thalamotomy for Intractable Rubral Tremor Associated with Midbrain Tumor - Case Report - (중뇌종양에 의한 적핵진전에 대한 Vim 시상핵절제술 - 증례보고 -)

  • Son, Byung-Chul;Kim, Moon-Chan;Ryu, Kyung-Sik;Kang, Joon-Ki
    • Journal of Korean Neurosurgical Society
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    • v.29 no.10
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    • pp.1360-1364
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    • 2000
  • This 26-year-old man gradually developed a disabling midbrain tremor involving both distal and proximal part of left upper arm. On neurologic examination, oculomotor palsy, and ataxia of the left arm were noted. Radiologic examination revealed a mass lesion on midbrain tegmentum. He was tentatively diagnosed as brain tumor (presumably germinoma) without stereotactic biopsy. Conventional radiation therapy was given for this lesion. Although there was improvement in the radiologic imaging, his midbrain tremor worsened and became untolerable. The authors performed MR-guided stereotactic Vim-thalamotomy. With macroelectrode stimulation and radiofequency lesioning, his resting, postural and action tremors were almost completely abolished in both distal and proximal part of left upper extremity. Authors consider that Vim thalamotomy is still an effective means of controlling midbrain tremor involving proximal upper limb.

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The Application and Effect of the Brown-Roberts-Wells Stereotactic System in the Management of Intracranial Lesions (두개강내 질환에서 BRW 콤퓨터 정위수술장치의 적용과 효과에 관한 연구)

  • Moon, Choong-Bae;Kim, Wan-Shup;Ko, Sam-Kyu;Ihm, Jowa-Hyuk;Baek, Seung-Chan;Chi, Yung-Chul;Choi, Byung-Yearn;Cho, Soo-Ho
    • Journal of Yeungnam Medical Science
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    • v.3 no.1
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    • pp.53-62
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    • 1986
  • In the past 10 years, modern technology has made deep seated obscure lesions visible. With development of computer technology and various stereotaxic techniques, many new procedures. refinement of old procedures, and development of new applications are possible. The authors are intended to provide a detailed description of our experience with the Brown-Roberts-Wells(BRW) stereotactic system in the evaluation and management of 90 patients with intracranial lesions, and to provide cases presentation of various inaccessible intracranial lesions.

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Huge Size Intracranial Plasmacytoma Treated with Surgery and Fractionated Stereotactic Radiotherapy

  • Choi, Woo-Jin;Yee, Gi-Taek;Choi, Chan-Young;Whang, Choong-Jin
    • Journal of Korean Neurosurgical Society
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    • v.40 no.2
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    • pp.110-113
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    • 2006
  • Surgery and radiotherapy are mainly used for plasma cell neoplasm which constitutes about $1{\sim}2%$ of human malignancy. The authors carried out Fractionated Stereotactic Radiotherapy[FSRT] on the residual tumor after the subtotal removal of Intracranial plasmacytoma. A huge mass lesion was observed on MRI [magnetic resonance image] in the left anterior and middle cranial fossa of a 63-year-old man with left exophthalmus which lasted for a month, and was suspected as a meningioma with strong contrast enhancement. Extramedullary plasmacytoma was diagnosed on histopathological examination. After the surgery, FSRT was also carried out on the residual tumor which invaded the skull base. One-year follow up after FSRT showed contrast enhancement only in the left sphenoid bone on MRI, which indicated significant decrease in the size of the tumor without any abnormal neurologic deficits. We treated intracranial plasmacytoma which invaded left anterior and middle cranial fossa and surrounded cavernous sinus without cranial nerve deficit through subtotal tumor removal and FSRT.

Image-guided Stereotactic Neurosurgery: Practices and Pitfalls

  • Jung, Na Young;Kim, Minsoo;Kim, Young Goo;Jung, Hyun Ho;Chang, Jin Woo;Park, Yong Gou;Chang, Won Seok
    • Journal of International Society for Simulation Surgery
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    • v.2 no.2
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    • pp.58-63
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    • 2015
  • Image-guided neurosurgery (IGN) is a technique for localizing objects of surgical interest within the brain. In the past, its main use was placement of electrodes; however, the advent of computed tomography has led to a rebirth of IGN. Advances in computing techniques and neuroimaging tools allow improved surgical planning and intraoperative information. IGN influences many neurosurgical fields including neuro-oncology, functional disease, and radiosurgery. As development continues, several problems remain to be solved. This article provides a general overview of IGN with a brief discussion of future directions.

A Case of Thyroid Papillary Carcinoma Metastasizing to the Brain (뇌 전이를 보인 갑상선 유두암 1예)

  • Yoon Jung-Han;JaeGal Young-Jong;Kim Jae-Hwu;Kim Sae-Jong
    • Korean Journal of Head & Neck Oncology
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    • v.12 no.2
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    • pp.235-240
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    • 1996
  • Brain metastasis is extremely rare in thyroid papillary carcinoma which has an indolent clinical course and results in good prognosis. A 24-year-old man presenting with seizure attack is described. He had been treated under the diagnosis of thyroid papillary carcinoma with total thyroidectomy, postoperative internal radiation with radioactive iodine, and thyroid hormone replacement. Although $^{99m}$Tc brain spect and $^{131}$I whole body scan did not revealed any significant lesion, brain CT and MRI showed lcm sized mass in frontal lobe. Stereotactic craniotomy and removal of the tumor, which was histologically proven metastatic lesion from thyroid papillary carcinoma, was done with satisfactory improvement.

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Stereotactic Radiofrequency Gasserian Ganglionotomy (정위적 삼차신경절 고주파열응고술)

  • Shin, Keun-Man;Shin, Sam-Chyul;Cho, Yong-Roew;Lim, So-Young;Hong, Soon-Yong;Choi, Young-Ryong
    • The Korean Journal of Pain
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    • v.9 no.1
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    • pp.183-186
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    • 1996
  • When medical therapy fail to relieve pain at tolerable level for patients confirmed with trigeminal neuralgia, presence of mass lesion excluded, surgery is indicated. Innumerable surgical strategies have been attempted for the treatment of trigeminal neuralgia but only four have proven appropriate: (1)stereotactic radiofrequency gasserian ganglionotomy, (2) percutaneous glycerol gangliolysis, (3) percutaneous microcompression, (4) microvascular decompression. Radiofrequency thermocoagulation of the gasserian ganglion stems from the efforts of Sweet. This technique is the surgical treatment of choice around the world for surgical treatment for trigeminal neuralgia. Since 1986, over 14,000 cases have been reported utilizing this technique. To improve the treatment method further, an electrode with a flexible curved tip has been developed for easier and more precise electrode placement and lesion production during the thermocoagulation of gasserian ganglion. This operation was performed recently on three patients at Hallym University Hospital. using a curved tip electrode. Complete relief of pain was achieved for all patient. However, some complications were noted.

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Astrocytoma in the Bilateral Thalamus -A Case Report- (양측 시상에 발생한 성상 세포종1례)

  • Chung, Eul-Soo;Bae, Jang-Ho;Han, Dong-Ro;Doh, Eun-Sik;Kim, Oh-Lyong;Chi, Yong-Chul;Choi, Byung-Yearn;Cho, Soo-Ho
    • Journal of Yeungnam Medical Science
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    • v.7 no.2
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    • pp.167-172
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    • 1990
  • Astrocytoma in the thalamus is not so frequent in incidence (1%). Moreover, bilateral thalamic tumor is rare. Certain tumors of the thalamus are considered resectable but most of thalamic tumors are thought to be untouchable. Bilateral thalamic astrocytoma with hydrocephalus was diagnosed by stereotactic biopsy and ventriculo-peritoneal shunt operation was done with result of improvement. We report a case of astrocytoma in the bilateral thalamus with literature review.

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THREE-DIMENSIONAL VERIFICATION OF INTRACRANIAL TARGET POINT DEVIATION USING MRI-BASED POLYMER-GEL DOSIMETRY FOR CONVENTIONAL AND FRACTIONATED STEREOTACTIC RADIOSURGERY

  • Lee, Kyung-Nam;Lee, Dong-Joon;Suh, Tae-Suk
    • Journal of Radiation Protection and Research
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    • v.36 no.3
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    • pp.107-118
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    • 2011
  • Conventional (SRS) and fractionated (FSRS) stereotactic radiosurgery necessarily require stringent overall target point accuracy and precision. We determine three-dimensional intracranial target point deviations (TPDs) in a whole treatment procedure using magnetic resonance image (MRI)-based polymer-gel dosimetry, and suggest a technique for overall system tests. TPDs were measured using a custom-made head phantom and gel dosimetry. We calculated TPDs using a treatment planning system. Then, we compared TPDs using mid bi-plane and three-dimensional volume methods with spherical and elliptical targets to determine their inherent analysis errors; finally, we analyzed regional TPDs using the latter method. Average and maximum additive errors for ellipses were 0.62 and 0.69 mm, respectively. Total displacements were 0.92 ${\pm}$ 0.25 and 0.77 ${\pm}$ 0.15 mm for virtual SRS and FSRS, respectively. Average TPDtotal at peripheral regions was greater than that at central regions for both. Overall system accuracy was similar to that reported previously. Our technique could be used as an overall system accuracy test that considers the real radiation field shape.

The Effectiveness of Volumetric Modulated arc Radiotherapy to Treat Patients with Metastatic Spinal Tumors

  • Park, Hyo-Kuk;Kim, Sungchul
    • International Journal of Contents
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    • v.13 no.4
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    • pp.12-15
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    • 2017
  • Among the possible stereotactic body radiation therapy (SBRT) modalities used to treat patients with metastatic spinal tumors, this study compared Cyberknife, tomotherapy, and volumetric modulated arc radiotherapy (VMAT). We established treatment plans for each of them modality and quantitatively analyzed the dose evaluation factors of the dose-volume histogram (DVH) for all spinal bones, focusing on the tumor and spinal cord, in order to examine the usefulness of VMAT. For the treatment planning dose, the mean dose ($D_{max}$) and $D_{5%}$ showed statistical differences in the target dose, but no difference was shown in the spinal cord dose. For the DVH indices, tomotherapy showed the best performance was the best in terms of uniformity index, while VMAT showed better performance was better than the other two modalities in terms of the conformity index and the dose gradient index. VMAT had a much shorter treatment time than Cyberknife and tomotherapy. These findings suggest that VMAT FFF is the most effective therapy for SBRT of patients with metastatic spinal tumors for whom a high dose of radiation is prescribed.

Optimization of Total Arc Degree for Stereotactic Radiotherapy by Using Integral Biologically Effective Dose and Irradiated Volume (정위방사선치료 시 적분 생물학적 유효선량 및 방사선조사용적을 이용한 Total Arc Degree의 최적화)

  • Lim Do Hoon;Lee Myung Za;Chun Ha Chung;Kim Dae Yong
    • Radiation Oncology Journal
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    • v.19 no.2
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    • pp.199-204
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    • 2001
  • Purpoe : To find the optimal values of total arc degree to protect the normal brain tissue from high dose radiation in stereotactic radiotherapy planning. Methods and Materials : With Xknife-3 planning system & 4 MV linear accelerator, the authors planned under various values of parameters. One isocenter, 12, 20, 30, 40, 50, and 60 mm of collimator diameters, $100^{\circ},\;200^{\circ},\;300^{\circ},\;400^{\circ}C,\;500^{\circ},\;600^{\circ}$ or total arc degrees, and $30^{\circ}\;or\;45^{\circ}$ or arc intervals were used. After the completion of planning, the plans were compared each other using $V_{50}$ (the volume of normal brain that is delivered high dose radiation) and integral biologically effective dose. Results : At $30^{\circ}$ of arc interval, the values of $V_{50}$ had the decreased pattern with the increase of total arc degree in any collimator diameter. At 45 arc interval, up to $400^{\circ}$ of total arc degree, the values of $ V_{50}$ decreased with the increase of total arc degree, but at $500^{\circ}\;and\;600^{\circ}$ of total arc degrees, the values increased. At $30^{\circ}$ of arc interval, integral biologically effective dose showed the decreased pattern with the increase of total arc degree in any collimator diameter. At $45^{\circ}$ arc interval with less than 40 mm collimator diameter, the integral biologically effective dose decreased with the increase of total arc degree, but with n and n mm or collimator diameters, up to $400^{\circ}$ or total arc degree, integral biologically effective dose decreased with the increase of total arc degree, but at $500^{\circ}\;and\;600^{\circ}$ of total arc degrees, the values increased. Conclusion : In the stereotactic radiotherapy planning for brain lesions, planning with $400^{\circ}$ of total arc degree is optimal. Especially, when the larger collimator more than 50 mm diameter should be used, the uses of $500^{\circ}\;and\;600^{\circ}$ of total arc degrees make the increase of$V_{50}$ and integral biologically effective dose. Therefore stereotactic radiotherapy planning using $400^{\circ}$ of total arc degree can increase the therapeutic ratio and produce the effective outcome in the management of personal and mechanical sources in radiotherapy department.

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