Zobrazeno 1 - 10
of 50
pro vyhledávání: '"Urakabe, Eriko"'
Autor:
Iseki, Yasushi *, Mizuno, Hideyuki, Futami, Yasuyuki, Tomitani, Takehiro, Kanai, Tatsuaki, Kanazawa, Mitsutaka, Kitagawa, Atsushi, Murakami, Takeshi, Nishio, Teiji, Suda, Mitsuru, Urakabe, Eriko, Yunoki, Akira, Sakai, Hirotaka
Publikováno v:
In Nuclear Inst. and Methods in Physics Research, A 11 December 2003 515(3):840-849
Autor:
Tsujii, Hirohiko, Akagi, Takashi, Akahane, Keiichi, Uwamino, Yoshitomo, Ohno, Tatsuya, Kanai, Tatsuaki, Kohno, Ryosuke, Sakae, Takeji, Shimizu, Shouichi, Urakabe, Eriko, Nakayama, Takashi, Nakamura, Takashi, Nishio, Teiji, Nishizawa, Kanae, Nishizawa, Kunihide, Fukuda, Shigekazu, Matsufuji, Naruhiro, Yamashita, Haruo, Yonai, Shunsuke
Publikováno v:
Japanese Journal of Medical Physics. 28(4):172-206
Autor:
Inaniwa, Taku, Kohno, Toshiyuki, Tomitani, Takehiro, Urakabe, Eriko, Satou, Shinji, Kanazawa, Mitsutaka, Kanai, Tatsuaki
Publikováno v:
Nuclear Instruments & Methods in Physics Research Section A. 580(3):1140-1143
For the effective utilization of the favorable properties of heavy-ion beams in cancer treatment, it is important to evaluate the range of incident ions and the deposited dose distribution in a patient's body. For this purpose, the utilization of pos
Autor:
Inaniwa, Taku, Kohno, Toshiyuki, Yamagata, Fumiko, Tomitani, Takehiro, Satou, Shinji, Kanazawa, Mitsutaka, Kanai, Tatsuaki, Urakabe, Eriko
Publikováno v:
Medical Physics. 34(5):1684-1692
In proton therapy, it is important to evaluate the field irradiated with protons and the deposited dose distribution in a patient's body. Positron emitters generated through fragmentation reactions of target nuclei can be used for this purpose. By de
Autor:
Li, Qiang, Furusawa, Yoshiya, Kanazawa, Mitsutaka, Kanai, Tatsuaki, Kitagawa, Atsushi, Aoki, Mizuho, Urakabe, Eriko, Tomitani, Takehiro, Satou, Shinji, Yoshimoto, Mitsuo, zenkyuan, wei
Publikováno v:
International Journal of Radiation Oncology Biology Physics. 63(4):1237-1244
Purpose: To evaluate the potential importance of radioactive 9C-ion beam in cancer radiotherapy. Methods and Materials: Human salivary gland (HSG) cells were exposed to a double-radiation-source 9C beam at different depths around the Bragg peak. Cell
Autor:
Li, Qiang, Komori, Masataka, Kanai, Tatsuaki, Kitagawa, Atsushi, Urakabe, Eriko, Kanazawa, Mitsutaka, Tomitani, Takehiro, Satou, Shinji
Publikováno v:
Physics in Medicine and Biology. 49:5119-5133
Qwing to the potentially therapeutic enhancement of delayed particles in treating malignant diseases by radioactive 9C-ion beam, LET spectra at different penetration depths for a 9C beam with 5% momentum spread, produced in the secondary beam line (S
Autor:
Iseki, Yasushi, Kanai, Tatsuaki, Kanazawa, Mitsutaka, Kitagawa, Atsushi, Mizuno, Hideyuki, Tomitani, Takehiro, Suda, Mitsuru, Urakabe, Eriko
Publikováno v:
Physics in Medicine and Biology. 49:3179-3195
It is desirable to reduce range ambiguities in treatment planning for making full use of the major advantage of heavy-ion radiotherapym, that is, good dose localization. A range verification system using positron emitting beams has been developed to
Autor:
Iseki, Yasushi, Mizuno, Hideyuki, Futami, Yasuyuki, Tomitani, Takehiro, Kanai, Tatsuaki, Kanazawa, Mitsutaka, Kitagawa, Atsushi, Murakami, Takeshi, Nishio, Teiji, Suda, Mitsuru, Urakabe, Eriko, Yunoki, Akira, Sakai, Hirotaka
Publikováno v:
Nuclear Instruments & Methods in Physics Research Section A. 515:840-849
Autor:
Kanazawa, Mitsutaka, Kitagawa, Atsushi, Nishio, Teiji, Torikoshi, Masami, Noda, Kouji, Murakami, Takeshi, Satou, Shinji, Suda, Mitsuru, Tomitani, Takehiro, Kanai, Tatsuaki, Futami, Yasuyuki, Shinbo, Munefumi, Urakabe, Eriko, Iseki, Yasushi
Publikováno v:
Nuclear Physics A. 746:393c-396c
Autor:
Li, Qiang, Kitagawa, Atsushi, Kanazawa, Mitsutaka, Urakabe, Eriko, Kanai, Tatsuaki, Tomitani, Takehiro, Satou, Shinji, Zhang, Wei
Publikováno v:
Nuclear Physics A. 746:288c-292c
The emitted particles from a beta-delayed particle decay beam must enhance biological effects in the region of interest and such a ratioactive ion beam may be useful in cancer treatment. To test this therapeutic purpose of beta-delayed particle decay