研究状況の概観

Experimental studies on mobile communications

1743研究
  1. 770研究
  2. 584研究
  3. 519研究
  4. 228研究
  5. 208研究
  6. 118研究

Cells

228研究
  1. 114研究
  2. 85研究
  3. 38研究
  4. 36研究
  5. 34研究
  6. 8研究
  7. 1
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Goh J et al. 2024 無傷細胞/細胞培養 - 1.7 GHz - - 移動体通信システム, LTE, RF
Guzey YZ et al. 2018 無傷細胞/細胞培養, bovine oocytes - 900–1,800 MHz - - 移動体通信システム, 携帯電話
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
Huang TQ et al. 2008 無傷細胞/細胞培養, Jurkat cells (human lymphoblastoid T cells) cellular and molecular changes (e.g. DNA damage, gene expression, cell proliferation, cell cycle progression) 1,762.5 MHz 2–10 W/kg repeated daily exposure, 1 h/day, for 1, 2, or 3 days デジタル携帯電話, CDMA, 移動体通信システム
Huang TQ et al. 2008 無傷細胞/細胞培養, HEI-OC1 cells (immortalized mouse auditory hair cells) cell cycle, DNA damage, stress response, and gene expression 1,763 MHz 20 W/kg continuous for 24 h and 48 h 移動体通信システム, 携帯電話, CDMA
Kayhan H et al. 2016 無傷細胞/細胞培養, human neuroblastoma cell line (SH-SY5Y) apoptosis and cell cycle progression 2.1 GHz 0.235–0.491 W/kg continuous for 24 hours W-CDMA, 移動体通信システム, マイクロ波
Kim JH et al. 2021 無傷細胞/細胞培養 - 1,760 MHz - - LTE, 移動体通信システム
Lantow M et al. 2006 無傷細胞/細胞培養, Mono Mac 6 cells (human monocytes) cell cycle (cell cycle phase, proliferation, apoptosis, necrosis) 1,800 MHz 2 W/kg continuous for 12 h GSM, 移動体通信システム
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
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, 共ばく露