大胆欧美乱老熟妇伦电影免费-国产人成亚洲第一网站在线播放-精品亚洲-免费网站黄-日本精品视频一区二区-天天在

產品展示PRODUCTS

您當前的位置:首頁 > 產品展示 > 動物 > 動物呼吸代謝測量 > 斑馬魚高通量呼吸代謝測量系統
斑馬魚高通量呼吸代謝測量系統
更新時間:2025-07-02
訪問次數:821
熒光光纖氧氣測量技術具有高精確度、高可靠性、響應時間短、適用于氣相和液相等優勢,因此隨著技術的問世,精確、高通量測量微小生物的呼吸和評估其能量代謝成為可能。高通量呼吸測量系統基于熒光光纖氧氣測量技術,能夠對斑馬魚的胚胎及幼魚進行測量,測定其耗氧量,進而評估其代謝水平。系統在生物醫學、實驗生物學、污染生態學與環境毒理學、環境科學、氣候變化研究等領域具有越來越重要的應用價值。
品牌易科泰價格區間面議
產地類別國產應用領域醫療衛生,環保,生物產業,農林牧漁,綜合

熒光光纖氧氣測量技術具有高精確度、高可靠性響應時間短、適用于氣相和液相等優勢,因此隨著技術的問世,精確、高通量測量微小生物的呼吸和評估其能量代謝成為可能。高通量呼吸測量系統基于熒光光纖氧氣測量技術,能夠對斑馬魚的胚胎及幼魚進行測量,測定其耗氧量,進而評估其代謝水平。系統在生物醫學、實驗生物學、污染生態學與環境毒理學、環境科學氣候變化研究等領域具有越來越重要的應用價值

斑馬魚高通量呼吸代謝測量系統

 系統由內置熒光光纖氧氣傳感器的微型呼吸室、氧氣測量主機及數據采集分析軟件組成,可對96個通道的樣品進行同步測量。

 

功能特點

氧氣測量高精度、高可靠性、低功耗、低交叉敏感性、快速響應時間

輕松校準

非侵入性和非破壞性測量

緊湊設計,適用于溫控培養箱和/或搖床

 

技術參數

1. 檢測技術:光纖氧傳感器技術

2. 適用場景:原位檢測,可在培養箱里或搖床上使用,便于溫度控制

3. 呼吸室:透明聚苯乙烯材質,支持預消毒處理,可重復使用

4. 氧氣測量主機:單個重670 g162 x 102 x 32 mm

5. 主機內置溫度傳感器:0-50°C,分辨率0.012°C,精度±0.5°C

6. 主機內置壓強傳感器:300-1100mbar,分辨率0.11mbar,精度±6mbar

7. 最大采樣頻率:單通道激活時可達10-20次每秒

8. 氧氣測量精度:±0.1% O2@1% O2±0.05 mg/L@0.44 mg/L

9. 氧氣測量分辨率:0.01% O2@1% O20.005 mg/L@0.44 mg/L

10. 電源:5VDCUSB供電

11. 響應時間<30s

12. 通道數:96

13. 系統適配其他魚類的胚胎及幼魚

14. 可選配斑馬魚成魚的靜態及動態呼吸測量系統

斑馬魚高通量呼吸代謝測量系統


參考文獻

1. Feng, W.-W., Chen, H.-C., Audira, G., Suryanto, M.E., Saputra, F., Kurnia, K.A., Vasquez, R.D., Casuga, F.P., Lai, Y.-H., Hsiao, C.-D., Hung, C.-H., 2024. Evaluation of Tacrolimus’ Adverse Effects on Zebrafish in Larval and Adult Stages by Using Multiple Physiological and Behavioral Endpoints. Biology (Basel) 13, 112.

2. Glass, B.H., Jones, K.G., Ye, A.C., Dworetzky, A.G., Barott, K.L., 2023. Acute heat priming promotes short-term climate resilience of early life stages in a model sea anemone. PeerJ 11, e16574.

3. Heuer, R.M., Wang, Y., Pasparakis, C., Zhang, W., Scholey, V., Margulies, D., Grosell, M., 2023. Effects of elevated CO2 on metabolic rate and nitrogenous waste handling in the early life stages of yellowfin tuna (Thunnus albacares). Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 280, 111398.

4. K?mmer, N., Reimann, T., Ovcharova, V., Braunbeck, T., 2023. A novel automated method for the simultaneous detection of breathing frequency and amplitude in zebrafish (Danio rerio) embryos and larvae. Aquatic Toxicology 258, 106493.

5. Louhi, P., Pettinau, L., H?rk?nen, L.S., Anttila, K., Huusko, A., 2023. Carryover effects of environmental stressors influence the life performance of brown trout. Ecosphere 14, e4361.

6. Mandic, M., Pan, Y.K., Gilmour, K.M., Perry, S.F., 2020. Relationships between the peak hypoxic ventilatory response and critical O2 tension in larval and adult zebrafish ( Danio rerio ). Journal of Experimental Biology jeb.213942.

7. Mathiron, A.G.E., Gallego, G., Silvestre, F., 2023. Early-life exposure to permethrin affects phenotypic traits in both larval and adult mangrove rivulus Kryptolebias marmoratus. Aquatic Toxicology 259, 106543.

8. Moore, B., Jolly, J., Izumiyama, M., Kawai, E., Ryu, T., Ravasi, T., 2023. Clownfish larvae exhibit faster growth, higher metabolic rates and altered gene expression under future ocean warming. Science of The Total Environment 873, 162296.

9. Park, K.-H., Ye, Z., Zhang, J., Hammad, S.M., Townsend, D.M., Rockey, D.C., Kim, S.-H., 2019. 3-ketodihydrosphingosine reductase mutation induces steatosis and hepatic injury in zebrafish. Sci Rep 9, 1138.

10. Ricarte, M., Prats, E., Montemurro, N., Bedrossiantz, J., Bellot, M., Gómez-Canela, C., Raldúa, D., 2023. Environmental concentrations of tire rubber-derived 6PPD-quinone alter CNS function in zebrafish larvae. Science of The Total Environment 896, 165240.

11. Saputra, F., Lai, Y.-H., Roldan, M.J.M., Alos, H.C., Aventurado, C.A., Vasquez, R.D., Hsiao, C.-D., 2023. The Effect of the Pyrethroid Pesticide Fenpropathrin on the Cardiac Performance of Zebrafish and the Potential Mechanism of Toxicity. Biology 12, 1214.

12. Schuster, L., Cameron, H., White, C.R., Marshall, D.J., 2021. Metabolism drives demography in an experimental field test. Proceedings of the National Academy of Sciences 118, e2104942118.

13. Scovil, A.M., Boloori, T., de Jourdan, B.P., Speers-Roesch, B., 2023. The effect of chemical dispersion and temperature on the metabolic and cardiac responses to physically dispersed crude oil exposure in larval American lobster (Homarus americanus). Marine Pollution Bulletin 191, 114976.

14. Varshney, S., Gora, A.H., Kiron, V., Siriyappagouder, P., Dahle, D., K?gel, T., ?rnsrud, R., Olsvik, P.A., 2023. Polystyrene nanoplastics enhance the toxicological effects of DDE in zebrafish (Danio rerio) larvae. Science of The Total Environment 859, 160457.

15. Varshney, S., Gora, A.H., Siriyappagouder, P., Kiron, V., Olsvik, P.A., 2022. Toxicological effects of 6PPD and 6PPD quinone in zebrafish larvae. Journal of Hazardous Materials 424, 127623.

16. Varshney, S., Lund?s, M., Siriyappagouder, P., Kristensen, T., Olsvik, P.A., 2024. Ecotoxicological assessment of Cu-rich acid mine drainage of Sulitjelma mine using zebrafish larvae as an animal model. Ecotoxicology and Environmental Safety 269, 115796.

17. Wang, Y., Pasparakis, C., Grosell, M., 2021. Role of the cardiovascular system in ammonia excretion in early life stages of zebrafish ( Danio rerio ). American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 321, R377–R384. 


留言框

  • 產品:

  • 您的單位:

  • 您的姓名:

  • 聯系電話:

  • 常用郵箱:

  • 省份:

  • 詳細地址:

  • 補充說明:

  • 驗證碼:

    請輸入計算結果(填寫阿拉伯數字),如:三加四=7
主站蜘蛛池模板: 久久国产精品人妻丝袜 | 日产电影一区二区三区| 久久久久88色偷偷| 波多野结衣 黑人| 国产成人精品午夜福利| 色色综合社区| 欧美人与物ⅴideos另类| 小雪尝禁果又粗又大的视频| 国产一区二区三区正品| 亚洲综合久久成人a片红豆| 久久97精品久久久久久久不卡| 国产精品高潮呻吟av久久小说| 午夜电影网va内射| 久久婷婷五月综合色精品| 亚洲久热无码中文字幕人妖| 久久精品国产曰本波多野结衣| 女人被狂躁c到高潮喷水一区二区| 亚洲最大国产成人综合网站| 欧洲熟妇色xxxxx欧美老妇伦| 伊人久久大香线蕉av色婷婷色| 精品无码一区二区三区水蜜桃 | 亚洲成av人片在线观看无码不卡 | 亚洲 日韩 国产 有码 不卡| 国产成人免费无码av在线播放| 国精产品一区二区三区有限公司 | 国产福利小视频在| 怦然心动50免费完整版| 99精品久久99久久久久| 久久婷婷五月综合色国产免费观看| 久久国产亚洲精品无码| 无码熟妇人妻av在线影片最多| 亚洲精品国产精品国自产小说| 久久婷婷成人综合色| 久久综合给合久久狠狠狠88| 娇小萝被两个黑人用半米长| 精品深夜寂寞黄网站| 日本肉体裸交xxxxbbbb| 最新国产精品自在线观看| 国产亚洲欧美人成在线| 偷偷色噜狠狠狠狠的777米奇| 精品国产国产综合精品|