• Title/Summary/Keyword: Eye Dose

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Development of a Stereotactic Radiosurgery Planning System (뇌정위 방사선수술을 위한 컴퓨터 치료계획시스템의 개발)

  • 조병철;오도훈;배훈식
    • Progress in Medical Physics
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    • v.8 no.1
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    • pp.17-24
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    • 1997
  • We developed PC-based planning system for linear accelerator based stereotactic radiosurgery. The system was developed under Windows 95 on Pentium Pro$\^$(R) 200 ㎒ IBM PC with 128 MB RAM. It was programed using IDL$\^$(R)/ of Research Systems, Inc. as a programing tool. CT image data obtained with BRW stereotactic frame is transferred to PC through magnetoptical disk. As loading the image, the system automatically recognizes the location of rods and establishes stereotactic coordinates. It accurately calculates and corrects the coordinates, degree of tilting, and magnification rate of axial images. After the coordinates is defined we can delineate and edit the contours of target and organs of interest on axial images. Upon delineating contours of target, isocenter is determined automatically and we can set up the beam configuration for radiosurgery. The system provides beam's eye view and room's eye view for efficient confuguring of beams. The system calculates dose distribution 3-dimensionally. It takes 1 to 2 minutes to calculate dose distribution for 5 arcs. We can verify the dose distribution on serial axial images. We can analyze the dose distribution quantitatively by evaluation of dose-volume histogram of target and organ of interest. This system, PC-based radiosurgery planning system, includes the basic features for radiosurgery planning and calculates dose distribution within reasonable time for clinical application.

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Radiation Dose Distribution of a Surgeon and Medical Staff during Orthopedic Balloon Kyphoplasty in Japan

  • Ono, Koji;Kumasawa, Takafumi;Shimatani, Keiichi;Kanou, Masatoshi;Yamaguchi, Ichiro;Kunugita, Naoki
    • Journal of Radiation Protection and Research
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    • v.47 no.2
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    • pp.86-92
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    • 2022
  • Background: The present study investigated the radiation dose distribution of balloon kyphoplasty (BKP) among surgeons and medical staff, and this is the first research to observe such exposure in Japan. Materials and Methods: The study subjects were an orthopedic surgeon (n = 1) and surgical staff (n = 9) who intervened in BKP surgery performed at the National Hospital Organization Disaster Medical Center (Tokyo, Japan) between March 2019 and October 2019. Only disposable protective gloves (0.022 mmPb equivalent thickness or less) and trunk protectors were used, and no protective glasses or thyroid drapes were used. Results and Discussion: The surgery time per vertebral body was 36.2 minutes, and the fluoroscopic time was 6.8 minutes. The average exposure dose per vertebral body was 1.46 mSv for the finger (70 ㎛ dose equivalent), 0.24 mSv for the lens of the eye (3 mm dose equivalent), 0.11 mSv for the neck (10 mm dose equivalent), and 0.03 mSv for the chest (10 mm dose equivalent) under the protective suit.The estimated cumulative radiation exposure dose of 23 cases of BKP was calculated to be 50.37 mSv for the fingers, 8.27 mSv for the lens, 3.91 mSv for the neck, and 1.15 mSv for the chest. Conclusion: It is important to know the exposure dose of orthopedic surgeons, implement measures for exposure reduction, and verify the safety of daily use of radiation during surgery and examination.

Dose Distributions for Ll NAC Radiosurgery with Dynamically Shaping Fields (선형가속기를 이용한 방사선 수술시 Dynamical Field Shaping에 의한 선량분포)

  • Suh Tae Suk;Yoon Sei Chul;Kim Moon Chan;Jang Hong Seok;PArk Yong Whee;Shinn Kyung Sub;Park Charn Il;Ha Sung Whan;Kang Wee Saing
    • Radiation Oncology Journal
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    • v.11 no.2
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    • pp.431-437
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    • 1993
  • An important problem in radiosurgery is the utilization of the proper beam parameters, to which dose shape is sensitive. Streotactic radiosurgery techniques for a linear accelerator typically, use circular radiation fields with multiple arcs to produce an spherical radiation distribution. Target volumes are irregular in shape for a certain case, and spherical distributions can irradiate normal tissues to high dose as well as the target region. The current improvement to dose distribution utilizes treating multiple isocenters or weighting various arcs to change treatment volume shape. in this paper another promising study relies upon dynamically shaping the treatment beam to fit the beam's eye view of the target. This conformal irradiation technique was evaluated by means of visual three dimensional dose distribution, dose volume histograms to the target volume and surrounding normal brain. It is shown that using even less arcs than multiple isocenter irradiation technique, the conformal therapy yields comparable dose gradients and superior homogeneity of dose within the target volume.

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Study on the Exposure Field of Head and Neck with Measurement of X-ray dose Distribution for Dental Panoramic X-ray System (치과 파노라마 장치의 X선 공간선량분포 측정을 통한 두경부 피폭영역 조사에 대한 연구)

  • Oh, Yoonjin;Hong, Girang;Lee, Samyol
    • Journal of the Korean Society of Radiology
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    • v.9 no.1
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    • pp.17-21
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    • 2015
  • Recently, As people's interest in the health of teeth is increased in the medical field changed into aging society, the number of times for the radiological diagnosis is increased. It can be said that the radiation exposure dose of Korean population is increased. It is also growing concern about radiation exposure. Therefore, the basic data for the dental panoramic X-ray system, its investigation and measuring the radiation dose is needed. In this study, we used ALOKA PDM-117 dosimeter and estimated a two-dimensional dose distribution of the dental panoramic X-ray system (VATEC Pax-400). Dose evaluation about the distribution is confirmed from the point of radiation exposure of a patient. Dose distribution of the dental panoramic X-ray system irradiated chin and the facial region to high dose as well as the parts of teeth. It was founded that the eye lens which are sensitive to radiation are exposed to unnecessary radiation, considering the effect of scattered radiation. The results of this study will be used more accurate dose assessment in a variety of object size and location of measuring dose.

Study of Energy Dependency in Intensity Modulated Radiation Therapy of Brain Tumor (세기조절방사선치료를 이용한 뇌종양에서 에너지 의존성에 관한 연구)

  • 김성규
    • Progress in Medical Physics
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    • v.13 no.2
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    • pp.104-108
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    • 2002
  • As intensity modulated radiation therapy compared with conventional radiation therapy, tumor target dose increased and normal tissues and critical organs dose reduced. In brain tumor, treatment planning of intensity modulated radiation therapy was practiced in 4MV, 6MV, 15MV X-ray energy. In these X-ray energy, was considered the dose distribution and dose volume histogram. As 4MV X-ray compared with 6MV and 15MV, maximum dose of right optic-nerve increased 10.1%, 8.4%. Right eye increased 5.2%, 2.7%. And left optic-nerve, left eye, optic chiasm and brainstem increased 1.7% - 5.2%. Even though maximum dose of PTV and these critical organs show different from 1.7% - 10.1% according to X-ray energies, these are a piont dose. Therefore in brain tumor, treatment planning of intensity modulated radiation therapy in 9 treatment field showed no relation with energy dependency.

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Sleep-Promoting Effect of Ecklonia cava: Ethanol Extract Promotes Non-rapid Eye Movement Sleep in C57BL/6N Mice

  • Yoon, Minseok;Kim, Jin Soo;Jo, Jinho;Han, Daeseok;Cho, Suengmok
    • Fisheries and Aquatic Sciences
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    • v.17 no.1
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    • pp.19-25
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    • 2014
  • We investigated the effects of Ecklonia cava ethanol extract (ECE) on sleep architecture and sleep profiles. ECE was orally administered at a dose of 100, 250, or 500 mg/kg to C57BL/6N mice and its effects were measured by recording electroencephalogram (EEG) and electromyogram. Administration of ECE (250 and 500 mg/kg) significantly induced non-rapid eye movement sleep (NREMS) without affecting rapid eye movement sleep. The increase in NREMS by ECE (500 mg/kg) was significant (P < 0.05) during the first 2 h after administration. In addition, ECE had no effect on EEG power density (an indicator of sleep quality) in NREMS. These results suggest that ECE induces NREMS in a manner similar to physiological sleep.

Effect of Ginseng Saponin on the Skin (인삼(人蔘) Saponin이 피부(皮膚)에 미치는 영향(影響))

  • Kim, Nak-Doo;Woo, Lin-Keun
    • Korean Journal of Pharmacognosy
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    • v.7 no.2
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    • pp.119-121
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    • 1976
  • To investigate untoward effects which might be produced by local application of Ginseng saponin, sensitization test and eye irritation test were performed in guinea pigs and rabbits. Any reaction on the skin was not found at a dose of 0.1ml of 0.1% solution in sensitization test. Instillation of Ginseng saponin (0.1ml of 1.0% and 10% soultion) into the right eye of rabbits, did not produce any irritation. Median lethal dose of the total saponin in mouse was 695 mg/kg by i.p. and 1490mg/kg by s.c. injection.

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Study on Local Irritation of CJ-50001 (rG-CSF) in Rabbits (CJ-50001 (rG-CSF)의 Rabbit에서의 국소자극성)

  • 김종호;임동문;김달현;정종상;김제학;김현수
    • Toxicological Research
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    • v.13 no.3
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    • pp.307-310
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    • 1997
  • The local irritation study (skin & occular irritation tests) of CJ-50001, a rG-CSF (recombinant granulocyte-colony stimulating factor) was performed in Japanese White rabbits. CJ-50001 was administered at a dose of 150 $\mu\textrm{g}$/rabbit (300$\mu\textrm{g}$ /ml, 0.5 ml) to the bare skin and at a dose of 30 $\mu\textrm{g}$/rabbit (300 $\mu\textrm{g}$/ml, 0.1 ml) to the conjunctival sac of the eye, respectively. In these experiments, there were no clinical signs which were related to CJ-50001 compared with control group. In conclusion, CJ-50001 doesn't have any irritating activity to skin and eye as 0.03% solution.

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Local Irritation Test of HM10411 (rhG-CSF) in Rabbits (인과립구 콜로니 자극인자 제제인 HM10411 (rhG-CSF)의 국소자극성)

  • 차신우;한정희;김충용;서정은;김종춘;권세창
    • Biomolecules & Therapeutics
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    • v.10 no.3
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    • pp.170-174
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    • 2002
  • The local irritation study (skin and occular irritation tests) of HM10411, a rhG-CSF (recombinant human granulocyte-colony stimulating factor) was carried out in New Zealand White rabbits. HM10411 was applied to the bare skin at a dose of 2.5 mg/rabbit (5.0 mg/ml, 0.5 ml) and to the conjunctival sac of eye at a dose of 0.5 mg/rabbit (5.0 mg/ml, 0.1 ml) , respectively. In this study, there were no clinical signs which were related to HM10411 compared with those of control group. From above results, HM10411 has not any irritating activity to skin and eye in rabbits.

The Japan Health Physics Society Guideline on Dose Monitoring for the Lens of the Eye

  • Yokoyama, Sumi;Tsujimura, Norio;Hashimoto, Makoto;Yoshitomi, Hiroshi;Kato, Masahiro;Kurosawa, Tadahiro;Tatsuzaki, Hideo;Sekiguchi, Hiroshi;Koguchi, Yasuhiro;Ono, Koji;Akiyoshi, Masahumi;Kunugita, Naoki;Natsuhori, Masahiro;Natsume, Yoshinori;Nabatame, Kuniaki;Kawashima, Tsunenori;Takagi, Shunji;Ohno, Kazuko;Iwai, Satoshi
    • Journal of Radiation Protection and Research
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    • v.47 no.1
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    • pp.1-7
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    • 2022
  • Background: In Japan, new regulations that revise the dose limit for the lens of the eye (hereafter the lens), operational quantities, and measurement positions for the lens dose were enforced in April 2021. Based on the international safety standards, national guidelines, the results of the Radiation Safety Research Promotion Fund of the Nuclear Regulation Authority, and other studies, the Working Group of Radiation Protection Standardization Committee, the Japan Health Physics Society (JHPS) developed a guideline for radiation dose monitoring for the lens. Materials and Methods: The Working Group of the JHPS discussed the criteria of non-uniform exposure and the management criteria set not to exceed the dose limit for the lens. Results and Discussion: In July 2020, the JHPS guideline was published. The guideline consists of three parts: main text, explanations, and 26 examples. In the questions, the corresponding answers were prepared, and specific examples were provided to enable similar cases to be addressed. Conclusion: With the development of the guideline on radiation dose monitoring of the lens, radiation managers and workers will be able to smoothly comply with revised regulations and optimize radiation protection.