The Experts below are selected from a list of 45 Experts worldwide ranked by ideXlab platform

Annette Bruun Jensen - One of the best experts on this subject based on the ideXlab platform.

  • towards a coordination of european activities to diagnose and manage Insect Diseases in production facilities
    Journal of Insects as Food and Feed, 2018
    Co-Authors: Jørgen Eilenberg, Annette Bruun Jensen, M M Van Oers, Antoine Lecocq, Gabriela Macielvergara, L P A Santacoloma, J J A Van Loon, Helen Hesketh
    Abstract:

    The rapid increase in Insect production for food and feed both in Europe and elsewhere in the world has led to a need for a coordinated action to assist producers in the diagnosis and management of...

  • Diseases in Insects produced for food and feed
    Journal of Insects as Food and Feed, 2015
    Co-Authors: Jørgen Eilenberg, J.m. Vlak, C. Nielsen-leroux, S. Capellozza, Annette Bruun Jensen
    Abstract:

    Increased production of Insects on a large scale for food and feed will likely lead to many novel challenges, including problems with Diseases. We provide an overview of important groups of Insect pathogens, which can cause disease in Insects produced for food and feed. Main characteristics of each pathogen group (viruses, bacteria, fungi, protists and nematodes) are described and illustrated, with a selection of examples from the most commonly produced Insect species for food and feed. Honeybee and silkworm are mostly produced for other reasons than as human food, yet we can still use them as examples to learn about emergence of new Diseases in production Insects. Results from a 2014 survey about Insect Diseases in current Insect production systems are presented for the first time. Finally, we give some recommendations for the prevention and control of Insect Diseases.

Andino Maseleno - One of the best experts on this subject based on the ideXlab platform.

  • the dempster shafer theory algorithm and its application to Insect Diseases detection
    2013
    Co-Authors: Andino Maseleno
    Abstract:

    This paper presents Dempster-Shafer Theory for Insect Diseases detection. Sustainable elimination of Insect Diseases as a public-health problem is feasible and requires continuous efforts and innovative approaches. In this research, we used Dempster-Shafer theory for detecting Insect Diseases and displaying the result of detection process. Insect Diseases which include babesiosis, dengue fever, lyme, malaria, and west nile. We describe six symptoms as major symptoms which include fever, red urine, skin rash, paralysis, headache, and arthritis. Dempster-Shafer theory to quantify the degree of belief, our approach uses Dempster-Shafer theory to combine beliefs under conditions of uncertainty and ignorance, and allows quantitative measurement of the belief and plausibility in our identification result.

Jørgen Eilenberg - One of the best experts on this subject based on the ideXlab platform.

  • towards a coordination of european activities to diagnose and manage Insect Diseases in production facilities
    Journal of Insects as Food and Feed, 2018
    Co-Authors: Jørgen Eilenberg, Annette Bruun Jensen, M M Van Oers, Antoine Lecocq, Gabriela Macielvergara, L P A Santacoloma, J J A Van Loon, Helen Hesketh
    Abstract:

    The rapid increase in Insect production for food and feed both in Europe and elsewhere in the world has led to a need for a coordinated action to assist producers in the diagnosis and management of...

  • Diseases in Insects produced for food and feed
    Journal of Insects as Food and Feed, 2015
    Co-Authors: Jørgen Eilenberg, J.m. Vlak, C. Nielsen-leroux, S. Capellozza, Annette Bruun Jensen
    Abstract:

    Increased production of Insects on a large scale for food and feed will likely lead to many novel challenges, including problems with Diseases. We provide an overview of important groups of Insect pathogens, which can cause disease in Insects produced for food and feed. Main characteristics of each pathogen group (viruses, bacteria, fungi, protists and nematodes) are described and illustrated, with a selection of examples from the most commonly produced Insect species for food and feed. Honeybee and silkworm are mostly produced for other reasons than as human food, yet we can still use them as examples to learn about emergence of new Diseases in production Insects. Results from a 2014 survey about Insect Diseases in current Insect production systems are presented for the first time. Finally, we give some recommendations for the prevention and control of Insect Diseases.

R. I. Carruthers - One of the best experts on this subject based on the ideXlab platform.

  • Epizootiological Models of Insect Diseases
    Annual Review of Entomology, 1990
    Co-Authors: D. W. Onstad, R. I. Carruthers
    Abstract:

    Les modeles de maladies des Insectes sont examines en les comparant aux modeles epidemiologiques generaux et les modeles du parasitisme. Leurs contributions aux theories ecologiques et epidemiologiques sont discutes. Le lien entre les modeles epizootiologiques et les etudes empiriques est discute pour apporter de nouveaux apercus sur la dynamique des populations d'hote et de pathogene

Jayant Rajbade - One of the best experts on this subject based on the ideXlab platform.

  • The InsecticidAL Effect of Neem and its prodcuts ON various Insect Diseases : A review
    Bhartiya Krishi Anusandhan Patrika, 2017
    Co-Authors: Shimla Gupta, Jayant Rajbade
    Abstract:

    Out of various botanicals, neem tree as source of natural Insecticidal is the richest in active compounds. Nearly 550 Insect pest species are sensitive to azadirachtin, an active compound extracted from the A. indica tree. It is effective against various crop pest like rice, wheat, pulses and vegetables. Besides it is safer to non target organism and also ecofriendly as compared to synthetic and chemical Insecticides. This review throws light on the use and efficacy of A. indica A. juss based Insecticides which is very important.