研究状況の概観

Experimental studies on mobile communications

1694研究
  1. 736研究
  2. 560研究
  3. 510研究
  4. 220研究
  5. 204研究
  6. 118研究

Cells

220研究
  1. 111研究
  2. 81研究
  3. 37研究
  4. 33研究
  5. 33研究
  6. 8研究
  7. 1
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Naarala J et al. 2004 無傷細胞/細胞培養, 酵母細胞株(<i>Saccharomyces cerevisiae</i>), 哺乳類の細胞(L929、SH-SY5Y、ラット初代星状膠細胞) オルニチンデカルボキシラーゼ活性, 細胞周期動態、細胞増殖、アポトーシス 50 Hz 6 W/kg continuous for 1 to 24 h 移動体通信システム, GSM, 50/60 Hz (AC), 送電線
Nikolova T et al. 2005 無傷細胞/細胞培養, ES R1細胞(マウス胚性幹細胞) 異なる影響(例:異なる転写レベル、遺伝毒性、転写、アポトーシス、細胞毒性、ミトコンドリア機能) 50 Hz–1.25 kHz 1.5 W/kg intermittent, 5 min on/30 min off, for 6 h and 48 h GSM, 移動体通信システム, 50/60 Hz (AC), 送電線
Antonopoulos A et al. 1997 human blood samples cell cycle progression 380 MHz 80–1,700 mW/kg 48 h, 52 h, 56 h, 64 h and 68 h GSM, TETRA/TETRAPOL, 移動体通信システム
Antonopoulos A et al. 1998 無傷細胞/細胞培養 frequency of sister-chromatid exchange, velocity of cell cycle 380 MHz 82.9–1,700 mW/kg continuous for 48, 52, 56, 64, and 68 h 移動体通信システム, GSM
Higashikubo R et al. 2001 無傷細胞/細胞培養, C3H 10T1/2 cells (derived from mouse embryo fibroblasts) and U87MG (human glioblastoma cells) cell cycle progression 835.62 MHz 0.6 W/kg continuous for up to 13 h or up to 100 h CDMA, 移動体通信システム
Lee KY et al. 2011 無傷細胞/細胞培養, MCF-7 (human breast cancer cell line) cell cycle distribution and its regulatory proteins 837 MHz 0.105–0.262 W/kg continuous for 1 h either CDMA (4 W/kg) alone or simultaneously CDMA (2 W/kg) and WCDMA (2 W/kg) CDMA, W-CDMA, 移動体通信システム, RF電磁界, 共ばく露
Lee JJ et al. 2008 無傷細胞/細胞培養, NIH3T3 cells (mouse fibroblasts) cellular invasion and migration, cell cycle distribution 849 MHz 2–10 W/kg continuous for 1 h デジタル携帯電話, CDMA, 移動体通信システム
Zeni O et al. 2003 無傷細胞/細胞培養 incidence of micronuclei, cell cycle kinetics 900 MHz 0.2–1.6 W/kg intermittent; 6 min on/3 h off, 14 on/off cycles of exposure, altogether 44 h GSM, 移動体通信システム
Capri M et al. 2004 無傷細胞/細胞培養 mitochondrial functionality, proliferation; cell cycle progression; spontaneous/induced apoptosis 900 MHz 70–76 mW/kg repeated daily exposure, 1 h/day during 48 h or 72 h of culture GSM, 移動体通信システム
Scarfi MR et al. 2006 無傷細胞/細胞培養 DNA damage (micronucleus formation), cell cycle kinetic 900 MHz 1–10 W/kg continuous for 24 h GSM, 移動体通信システム