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多功能植物光合表型成像測(cè)量系統(tǒng)

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慧諾瑞德(北京)科技有限公司(PhenoTrait)是一家以植物表型為核心的AIoT+DT技術(shù)公司,是國(guó)家企業(yè)、中關(guān)村企業(yè)和全國(guó)科技型中小企業(yè)。公司利用智能感知、多源多維多譜視覺(jué)技術(shù)、人工智能、自動(dòng)化和物聯(lián)網(wǎng)技術(shù),為大范圍、高通量獲取與農(nóng)作物品質(zhì)、產(chǎn)量、抗性相關(guān)的植物表型及環(huán)境數(shù)據(jù)提供系統(tǒng)解決方案,為智慧育種、智慧種植和產(chǎn)業(yè)鏈賦能。表型組是基因組之后生命科學(xué)研究和產(chǎn)業(yè)應(yīng)用的又一戰(zhàn)略制高點(diǎn)?;壑Z瑞德,用表型之“瞳”,筑科研之基,拓產(chǎn)業(yè)之路,賦農(nóng)業(yè)之慧。 公司是國(guó)際植物表型學(xué)會(huì)(IPPN)會(huì)員,創(chuàng)始人韓志國(guó)博士是IPPN執(zhí)委會(huì)成員、工業(yè)分會(huì)副主席(2020-2024),也是我國(guó)“植物表型”這一細(xì)分市場(chǎng)的創(chuàng)建者。公司是亞太植物表型國(guó)際會(huì)議(APPPcon)發(fā)起單位和China Plant Phenotyping Network (CPPN)發(fā)起單位。公司先后榮登2020國(guó)際未來(lái)農(nóng)業(yè)食品榜生物農(nóng)業(yè)TOP20。和2022國(guó)際未來(lái)農(nóng)業(yè)食品榜種業(yè)創(chuàng)新TOP20。 公司旗下的學(xué)術(shù)公眾號(hào)“植物表型資訊”,已成為華人植物表型圈影響力的公眾號(hào);公司參與發(fā)起的“百博智慧大講堂”,已成為國(guó)內(nèi)的線上學(xué)術(shù)講座平臺(tái)之一。
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多功能植物光合表型成像測(cè)量系統(tǒng)PlantExplorer采用創(chuàng)新的多光譜葉綠素?zé)晒?可見(jiàn)光成像技術(shù),利用的LED技術(shù)、CCD技術(shù)、通信技術(shù),實(shí)現(xiàn)了對(duì)植物表型的創(chuàng)新測(cè)量,可以在獲取RGB成像、葉綠素成像、花青素成像的同時(shí),獲取葉綠素?zé)晒獬上瘢ǔ上衩娣e53cmx53cm)
多功能植物光合表型成像測(cè)量系統(tǒng) 產(chǎn)品詳情

 

多功能植物光合表型成像測(cè)量系統(tǒng)PlantExplorer采用創(chuàng)新的多光譜葉綠素?zé)晒?可見(jiàn)光成像技術(shù),利用的LED技術(shù)、CCD技術(shù)、通信技術(shù),實(shí)現(xiàn)了對(duì)植物表型的創(chuàng)新測(cè)量,可以在獲取RGB成像、葉綠素成像、花青素成像的同時(shí),獲取葉綠素?zé)晒獬上瘢ǔ上衩娣e53cm x 53cm)。系統(tǒng)包括帶光學(xué)濾光輪的CCD成像系統(tǒng)、聚焦系統(tǒng)、嵌入式高亮度紅光LED、光譜白光LED、多光譜LED、嵌入式電腦和觸摸屏。由于采用一個(gè)CCD加濾光輪的組合,使得能夠在像素水平上進(jìn)行圖像疊加計(jì)算。

 

多功能植物光合表型成像測(cè)量系統(tǒng)PlantExplorer包括三個(gè)版本:標(biāo)準(zhǔn)版PlantExplorer、高級(jí)版本PlantExplorerPro和適合高達(dá)120cm植物的版本PlantExplorerPro+。三個(gè)版本都可以選配GFP和/或RFP成像模塊(需在購(gòu)買(mǎi)時(shí)指出,不可后續(xù)升級(jí)),其中PlantExplorer可以在購(gòu)買(mǎi)后,再后續(xù)升級(jí)成PlantExplorerPro

 

 

功能特性

  • 創(chuàng)新的多功能植物光合表型平臺(tái)
  • 可見(jiàn)光成像+多光譜成像+葉綠素?zé)晒猓ㄕ{(diào)制和非調(diào)制)成像
  • 同一個(gè)相機(jī)采集所有成像
  • 全自動(dòng)馬達(dá)聚焦系統(tǒng),帶全景和微距聚焦程序
  • 出色的高清相機(jī)(1.3 M pixel)測(cè)量葉綠素?zé)晒?/li>
  • 高信噪比葉綠素?zé)晒獬上?/li>
  • 高質(zhì)量10 Mp鏡頭,帶光譜可見(jiàn)光和近紅外涂層
  • 無(wú)可見(jiàn)鏡頭畸變,無(wú)需圖像校正
  • 濾光片可提供10個(gè)濾光片位置
  • 大景深設(shè)計(jì)
  • 成像范圍53 x 53cm
  • 可進(jìn)行多光譜測(cè)量,精確獲知葉綠素?zé)晒?、葉綠素、花青素和R/G/B圖像每個(gè)像素的變化
  • 自動(dòng)計(jì)算熒光參數(shù)和表型參數(shù)
  • 可設(shè)置進(jìn)行延時(shí)成像測(cè)量
  • 嵌入式電腦進(jìn)行精確的成像、時(shí)間控制、光強(qiáng)控制和數(shù)據(jù)存儲(chǔ)
  • 系統(tǒng)配置觸摸屏顯示器
  • 功能強(qiáng)大的控制和分析軟件

 

選購(gòu)指南

 

  

主要技術(shù)參數(shù)

  • 相機(jī)傳感器類(lèi)型:CCD
  • 相機(jī)分辨率:130萬(wàn)像素
  • 圖像獲取時(shí)間:?jiǎn)螐埲~綠素?zé)晒鈭D像20-1 000 us
  • 圖像格式:16位RAW格式
  • 光譜范圍:350~1000 nm
  • 激發(fā)光強(qiáng)度:25cm處,1500-6000 umol m-2 s-1;60cm處,800-3500 umol m-2 s-1。強(qiáng)度可調(diào)。
  • 光化光強(qiáng)度: 60cm處,100-600 umol m-2 s-1。強(qiáng)度可調(diào)。
  • 光學(xué)濾光片(適用于多光譜版):6種高質(zhì)量光學(xué)干涉濾光片,包括熒光、紅光、綠光、藍(lán)光、花青素和近紅外濾光片
  • 成像面積:53 x 53 cm
  • 成像和計(jì)算的參數(shù):Fo成像、Fm成像、Ft成像、Ft=5min成像、Fm’成像、Fv/Fm成像、Fq’成像、ΦPSII成像、ΦRO成像、NPQ100成像、qN成像、qP成像、Rfd100成像、 NDVI成像、RNIR成像、RChl成像.、RAnth成像、RRed成像、RGreen成像、RBlue成像、葉綠素指數(shù)成像、花青素指數(shù)成像和可見(jiàn)光成像,能夠自動(dòng)計(jì)算投影葉面積、Fv/Fm平均值、低于Fv/Fm的面積百分比、ΦPSII平均值、低于ΦPSII的面積百分比、NPQ100平均值、高于NPQ100的面積百分比、Rfd100平均值、低于Rfd100的面積百分比、平均RGB比值、特殊RGB比值的面積百分比、平均葉綠素指數(shù)、低于葉綠素指數(shù)的面積百分比、平均花青素指數(shù)、低于花青素指數(shù)的面積百分比等(具體參數(shù)取決于版本),以及凸包、最小外接圓、最小外接矩形等相關(guān)表型參數(shù)。

 

應(yīng)用舉例

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

利用PhenoVation光合表型成像技術(shù)發(fā)表的部分文獻(xiàn)

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  15. Velivelli S L S, Czymmek K J, Li H, Shaw J B, Buchko G W, Shah D M. (2020) Antifungal symbiotic peptide NCR044 exhibits unique structure and multifaceted mechanisms of action that confer plant protection. PNAS, DOI: 10.1073/pnas.2003526117
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  17. Venneman J, Vandermeersch L, Walgraeve C et al. (2020) Respiratory CO2 Combined With a Blend of Volatiles Emitted by Endophytic Serendipita Strains Strongly Stimulate Growth of Arabidopsis Implicating Auxin and Cytokinin Signaling. Frontiers in Plant Science, https://doi.org/10.3389/fpls.2020.544435
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  22. Sheng X-G, Branca F, Zhao Z-Q et al. (2020) Identification of Black Rot Resistance in a Wild Brassica Species and Its Potential Transferability to Cauliflower. Argonomy, 10: 1400. doi:10.3390/agronomy
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