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    • 1. 发明授权
    • Method and device for assessing cattle
    • 用于评估牛的方法和装置
    • US06591221B1
    • 2003-07-08
    • US09720141
    • 2000-12-21
    • John Conan Doyle
    • John Conan Doyle
    • G01B1102
    • A61B5/4872A01K29/00G01N33/12
    • A method for assessing whether an animal has a total body fat or protein composition falling within a desired range, the method comprising the steps of: (a) obtaining a range of animal weight and a value selected from the group comprising pelvic height, frame score and animal size, such that animals having a weight and value within said range will have a total body fat or protein corresponding to the desired total body fat or protein, (b) measuring the pelvic height of said animal and if said value is frame score, further obtaining the age of the animal and calculating the frame score and where said value is animal size, further measuring the length of the animal and estimating the volume from the height and length measurements, (c) obtaining the weight of said animal and (d) comparing the value obtained in step (b) and the weight obtained in step (c) with the values obtained in step (a) and determining whether said obtained weight and value (c) and (d) fall within the range obtained in step (a) and if the obtained weight and value do fall within said range, then said animal has the desired body fat or protein composition.
    • 一种用于评估动物是否具有落入所需范围内的总体脂肪或蛋白质组成的方法,所述方法包括以下步骤:(a)获得动物体重范围和选自包括骨盆高度,框架评分 动物大小,使得体重和价值在所述范围内的动物具有对应于期望的全身体脂肪或蛋白质的总体脂肪或蛋白质,(b)测量所述动物的骨盆高度,并且如果所述值是框架评分 进一步获得动物的年龄并计算帧分数,并且在所述值为动物大小的地方,进一步测量动物的长度并从高度和长度测量值估计体积,(c)获得所述动物的体重和( d)将步骤(b)中获得的值和步骤(c)中获得的重量与步骤(a)中获得的值进行比较,并确定所得到的重量和值(c)和(d)是否落在获得的范围内 n步骤(a),如果获得的重量和值确实落入所述范围内,则所述动物具有所需的身体脂肪或蛋白质组成。
    • 2. 发明授权
    • System and method for measuring animals
    • 用于测量动物的系统和方法
    • US07128024B2
    • 2006-10-31
    • US10619921
    • 2003-07-15
    • John Conan Doyle, II
    • John Conan Doyle, II
    • A01K29/00
    • A22B5/007A01K29/00
    • A system and method for measuring an animal includes a light source and an optical source. The light source, which is preferably an array of monochromatic light emitting diodes, at least partially backlights one or more of the animal's legs. The optical sensor or device, which is preferably a single dimension camera or charged-coupled device, opposes the light source and obtains an image that includes silhouettes of one or more legs of the animal. A processor, such as a computer with software and data storage, determines measurements, such as the approximate skeletal trunk length of the animal, from the silhouetted legs in the image. One or more first ultrasound transducers can be arranged to determine an approximate height of the pelvic region, and one or more second ultrasound transducers can be arranged to determine an approximate width of the pelvic region.
    • 用于测量动物的系统和方法包括光源和光源。 光源优选地是单色发光二极管的阵列,至少部分地背对动物腿部的一个或多个。 光学传感器或设备(其优选地是单维摄像机或带电耦合的设备)与光源相反并且获得包括动物的一条或多条腿的轮廓的图像。 诸如具有软件和数据存储的计算机的处理器从图像中的假轮廓确定测量,例如动物的近似骨架躯干长度。 可以布置一个或多个第一超声换能器以确定骨盆区域的近似高度,并且可以布置一个或多个第二超声换能器以确定骨盆区域的大致宽度。
    • 3. 发明授权
    • System and method for measuring relative leg positions of an ungulate
    • 用于测量有蹄类动物相对腿位置的系统和方法
    • US09363983B2
    • 2016-06-14
    • US13824745
    • 2011-09-29
    • John Conan Doyle
    • John Conan Doyle
    • A01K1/00A01K29/00
    • A01K29/005A01K29/00
    • A system (20) for measuring relative front (12, 13) and hind leg (16, 17) positions of a standing ungulate, the system including a sensing area within which an ungulate to be measured stands and which comprises a plurality of discrete linear sensor regions (30) spaced a known distance apart within the sensing area, each sensing region having a sensor operatively associated therewith, which sensor is responsive to the presence of the lower part of a leg within a sensing region and; a processor for receiving data from each sensor, identifying those sensor regions within which a lower part of a leg is present and based upon the distance between the identified sensor regions, determining the relative front and hind leg positions.
    • 一种用于测量站立有蹄类动物的相对前部(12,13)和后腿(16,17)位置的系统(20),所述系统包括感测区域,待测量的有蹄类植物站在该感测区域内,并且包括多个离散线性 传感器区域(30)在感测区域内间隔已知距离,每个感测区域具有与之相关联的传感器,该传感器响应于感测区域内腿部的下部的存在; 用于从每个传感器接收数据的处理器,识别存在腿的下部的那些传感器区域,并且基于所识别的传感器区域之间的距离,确定相对的前腿和后腿位置。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR MEASURING RELATIVE LEG POSITIONS OF AN UNGULATE
    • 用于测量发光体的相对位置的系统和方法
    • US20130179088A1
    • 2013-07-11
    • US13824745
    • 2011-09-29
    • John Conan Doyle
    • John Conan Doyle
    • A01K29/00
    • A01K29/005A01K29/00
    • A system (20) for measuring relative front (12, 13) and hind leg (16, 17) positions of a standing ungulate, the system including a sensing area within which an ungulate to be measured stands and which comprises a plurality of discrete linear sensor regions (30) spaced a known distance apart within the sensing area, each sensing region having a sensor operatively associated therewith, which sensor is responsive to the presence of the lower part of a leg within a sensing region and; a processor for receiving data from each sensor, identifying those sensor regions within which a lower part of a leg is present and based upon the distance between the identified sensor regions, determining the relative front and hind leg positions.
    • 一种用于测量站立有蹄类动物的相对前部(12,13)和后腿(16,17)位置的系统(20),所述系统包括感测区域,待测量的有蹄类植物站在该感测区域内,并且包括多个离散线性 传感器区域(30)在感测区域内间隔已知距离,每个感测区域具有与之相关联的传感器,该传感器响应于感测区域内腿部的下部的存在; 用于从每个传感器接收数据的处理器,识别存在腿的下部的那些传感器区域,并且基于所识别的传感器区域之间的距离,确定相对的前腿和后腿位置。
    • 5. 发明授权
    • System and method for measuring animals
    • 用于测量动物的系统和方法
    • US08036429B2
    • 2011-10-11
    • US11542841
    • 2006-10-04
    • John Conan Doyle, II
    • John Conan Doyle, II
    • G06K9/00
    • A22B5/007A01K29/00
    • A system and method for measuring an animal includes a light source and an optical source. The light source, which is preferably an array of monochromatic light emitting diodes, at least partially backlights one or more of the animal's legs. The optical sensor or device, which is preferably a single dimension camera or charged-coupled device, opposes the light source and obtains an image that includes silhouettes of one or more legs of the animal. A processor, such as a computer with software and data storage, determines measurements, such as the approximate skeletal trunk length of the animal, from the silhouetted legs in the image. One or more first ultrasound transducers can be arranged to determine an approximate height of the pelvic region, and one or more second ultrasound transducers can be arranged to determine an approximate width of the pelvic region.
    • 用于测量动物的系统和方法包括光源和光源。 光源优选地是单色发光二极管的阵列,至少部分地背对动物腿部的一个或多个。 光学传感器或设备(其优选地是单维摄像机或带电耦合的设备)与光源相反并且获得包括动物的一条或多条腿的轮廓的图像。 诸如具有软件和数据存储的计算机的处理器从图像中的假轮廓确定测量,例如动物的近似骨架躯干长度。 可以布置一个或多个第一超声换能器以确定骨盆区域的近似高度,并且可以布置一个或多个第二超声换能器以确定骨盆区域的大致宽度。