Erratum: Automating Citrus Budwood Processing for Downstream Pathogen Detection Through Instrument Engineering

3 października 2023

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Podsumowanie

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An erratum was issued for: Automating Citrus Budwood Processing for Downstream Pathogen Detection Through Instrument Engineering. The Authors section was updated.

Streszczenie

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An erratum was issued for: Automating Citrus Budwood Processing for Downstream Pathogen Detection Through Instrument Engineering. The Authors section was updated from:

Deborah Pagliaccia1,6
Douglas Hill2
Emily Dang1
Gerardo Uribe1
Agustina De Francesco1
Ryan Milton2
Anthony De La Torre2
Axel Mounkam2
Tyler Dang1
Sohrab Botaghi1
Irene Lavagi-Craddock1
Alexandra Syed1
William Grover3
Adriann Okamba4,5
Georgios Vidalakis2
1Department of Microbiology and Plant Pathology, University of California Riverside
2Technology Evolving Solutions (TES)
3Department of Bioengineering, University of California Riverside
4Ecole Supérieure d'Ingénieurs Léonard de Vinci ESILV
5University of California Riverside
6California Agriculture and Food Enterprise (CAFÉ), University of California Riverside

to:

Deborah Pagliaccia1,6
Douglas Hill2
Emily Dang1
Gerardo Uribe1
Agustina De Francesco1
Ryan Milton2
Anthony De La Torre2
Axel Mounkam2
Tyler Dang1
Sohrab Bodaghi1
Irene Lavagi-Craddock1
Alexandra Syed1
William Grover3
Adriann Okamba4,5
Georgios Vidalakis1
1Department of Microbiology and Plant Pathology, University of California Riverside
2Technology Evolving Solutions (TES)
3Department of Bioengineering, University of California Riverside
4Ecole Supérieure d'Ingénieurs Léonard de Vinci ESILV
5University of California Riverside
6California Agriculture and Food Enterprise (CAFÉ), University of California Riverside

Protokół

Loading...
$$\rightleftharpoonup{xx}$$ $$\longleftharp{xx}$$, $$\longrightharp{xx}$$,

An erratum was issued for: Automating Citrus Budwood Processing for Downstream Pathogen Detection Through Instrument Engineering. The Authors section was updated from:

Deborah Pagliaccia1,6
Douglas Hill2
Emily Dang1
Gerardo Uribe1
Agustina De Francesco1
Ryan Milton2
Anthony De La Torre2
Axel Mounkam2
Tyler Dang1
Sohrab Botaghi1
Irene Lavagi-Craddock1
Alexandra Syed1
William Grover3
Adriann Okamba4,5
Georgios Vidalakis2
1Department of Microbiology and Plant Pathology, University of California Riverside
2Technology Evolving Solutions (TES)
3Department of Bioengineering, University of California Riverside
4Ecole Supérieure d'Ingénieurs Léonard de Vinci ESILV
5University of California Riverside
6California Agriculture and Food Enterprise (CAFÉ), University of California Riverside

to:

Deborah Pagliaccia1,6
Douglas Hill2
Emily Dang1
Gerardo Uribe1
Agustina De Francesco1
Ryan Milton2
Anthony De La Torre2
Axel Mounkam2
Tyler Dang1
Sohrab Bodaghi1
Irene Lavagi-Craddock1
Alexandra Syed1
William Grover3
Adriann Okamba4,5
Georgios Vidalakis1
1Department of Microbiology and Plant Pathology, University of California Riverside
2Technology Evolving Solutions (TES)
3Department of Bioengineering, University of California Riverside
4Ecole Supérieure d'Ingénieurs Léonard de Vinci ESILV
5University of California Riverside
6California Agriculture and Food Enterprise (CAFÉ), University of California Riverside

Oświadczenia

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No conflicts of interest declared.

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Tagi

Zautomatyzowane przetwarzaniedetekcja w dalszym etapie procesutestowanie patogen w cytrus wautomatyzacja szczep wrozwi zania in ynieryjnesystemy detekcji patogen wrolnictwo cytrusowe