Abstract:
The present invention relates to an algorithm by which a fish abdominal position for vaccine injection is determined based on morphological measurement data including the total length (TL), the body width (WL), and the weight (W) of the fish. More particularly, according to the fish vaccine injection position following algorithm of the present invention, abdominal position and shape including a linear distance (ML) from a mouth end portion to the abdomen, the length of the abdomen (AL), and the width of the abdomen (AW) are detected through fish X-raying and weight center point coordinates of an injection area where an internal organ is absent are obtained with the ML line being the x axis and the AW line being the y axis. Then, the coordinates are deduced into an equation using TL, TL and WL, or TL, WL, and W as variables, that is, morphological injection position coordinates. According to the present invention, the injection position following can be more accurate than in the related art in which the correlation between the total length and the body width of the fish and the like are analyzed for morphological injection position following based on an injection position manually marked on an outer surface of the fish body by an injection specialist. Also, according to the present invention, damage to the internal organ attributable to the vaccine injection can be minimized. In addition, the present invention can be effectively applied to various types of automated vaccine injection devices, including the automated vaccine injection devices of the related art in which a vision system and a rectangular coordinates robot are used.
Abstract:
PURPOSE: An automatic vaccinating method for fishes and a vaccinating apparatus are provided to minimize damage due to careless vaccine treatment. CONSTITUTION: An automatic vaccinating method for fishes is as follows. A vaccination tray is transferred while a fish is put on the vaccination tray mounted in a fish transfer robot(10). The plane image of the fish is photographed. The abdominal cavity position of the fish is determined by reading the plane image of the fish. A horizontal moving robot(20) and a vertical moving robot(30) are operated. Vaccine is injected into the abdominal cavity of the fish. The vaccination tray and a syringe body are restored to an initial position.
Abstract:
PURPOSE: An automatic continuous injection device for fishes is provided to minimize the waste of unnecessary vaccine and to efficiently perform vaccination of fishes. CONSTITUTION: An automatic continuous injection device for fishes comprises a gun type device body(1) with a handle, a syringe body(9) which is mounted on the top surface of the device body, and a pneumatic cylinder(14) which is mounted on the top surface of the device body in the rear side of the syringe body. A vaccine inflow port(12) is formed in the bottom of the syringe body. A container mounting port(11) is formed in the upper part of the syringe body. The vaccine inflow port is connected to the exit of a vaccine injection path. The entrance of the vaccine injection path is connected to a vaccine injection hose.
Abstract:
본 발명은 연쇄구균증에 감염된 넙치로부터 분리된 감마-용혈성 스트렙토코커스 파라우베리스( Streptococcus parauberis ) FP2284(미생물 기탁번호 KCTC 11633BP) 균주 및 베타-용혈성 스트렙토코커스 이니애( Streptococcus iniae ) FP5024(미생물 기탁번호 11634BP) 균주를 포함하는 연쇄구균증 예방용 혼합 불활성화 백신 및 이를 이용하여 어류를 면역시키는 방법에 대한 것이다.
Abstract:
PURPOSE: A feed additive for fish using a hot water extract of complex herbal materials, and fish feed containing thereof are provided to offer an antimicrobial activity effect for the bacterial disease and a parasite insecticidal effect to cultured fish. CONSTITUTION: A feed additive for fish contains a hot water extract of complex herbal materials including sophora roots, tangerine skins, lonicera flowers, benincasa hispida cogniaux, perilla frutescens var. acuta kudo, and scutellaria baicalensis georgi. Fish feed contains 0.01wt% of hot water extract.
Abstract:
PURPOSE: A polypeptide containing an epitope of fish nodavirus protein is provided to quickly diagnose fish nodavirus disease. CONSTITUTION: A polypeptide of an epitope of fish nodavirus protein contains an amino acid selected from sequence numbers 1-3. A recombinant expression vector contains the polypeptide. A vaccine composition contains the epitope. The vaccine includes a live vaccine, attenuated vaccine, or killed vaccine. A cell inactivated vaccine is a Streptococcus inactivated vaccine. A method for diagnosing fish nodavirus disease comprises a step of reacting an antibody which specifically recognizes the epitope and a sample containing the fish nodavirus; and a step of determining a sample having positive response to the antibody is infected by the fish nodavirus.