Embleton
Karl Vincent Embleton, Macclesfield GB
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20100135560 | IMAGE PROCESSING METHOD - A method for generating data indicating a degree of anatomical connectivity for each of a plurality of image elements, each image element representing a part of a body to be imaged. The method comprises for each of a plurality of image elements, that image element and others of said plurality of image elements; for each of said plurality of image elements, generating data indicating a degree of connectivity of that image element, said degree of connectivity being based upon said plurality of generated data sets. | 06-03-2010 |
Neil Embleton, Sundre CA
Patent application number | Description | Published |
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20140257292 | QUADRUPED STIFLE STABILIZATION SYSTEM - A stifle stabilization system is provided herein. The system comprising a femoral component having a leg portion and bottom portion, the bottom portion including an interconnected coupling member protruding therefrom, an articular sliding insert component defining a channel corresponding in size and shape to at least part of the coupling member, and a tibial component having a first proximal planar portion defining a slot, the slot being of corresponding and complementary shape to the articular sliding insert component to receive the articular sliding insert component therein, wherein, when the channel receives the at least part of the coupling member and the articular sliding insert component is received in the slot of the tibial component, the tibial component is interlocked with the femoral component with translational and rotational movement therebetween. | 09-11-2014 |
20140277531 | CANINE INTERNAL STIFLE STABILIZATION (CISS) SYSTEM - A Canine internal stifle stabilizing (CISS) system is provided as a three part modular, stifle stabilizing device that can be permanently or temporarily surgically implanted and attached onto the medial side of the distal femur and proximal tibia of quadrupeds. The stabilizing device is centered over the medial aspect of the quadruped stifle joint. The device includes three parts: a femoral component, a tibial component and an articular sliding insert component. The tibial and femoral components are fastened to the medial aspect of the femur and tibia by a varying number of fasteners. The distal end of the femoral component contains a ball and stem. The ball and stem is attached to the femoral component. The proximal tibial component has a rectangular space that accepts and holds the articular sliding insert component, such as by a pressure fit into the rectangular space provided on the proximal tibial component. The articular sliding insert component includes a groove that accepts and holds the ball that is attached to the femoral component. This locks the femoral and tibial components together. Also on the underside of the articular sliding insert component is a flange. In operation, the flange is located between the femoral and tibial components and has a bevelled edge (for example a ten (10) degree bevelled edge) on either side. This bevelled edge allows for a maximum internal and external rotation of the stabilized stifle joint. This device permits normal stifle joint movement in all planes, while continually providing support. | 09-18-2014 |
Steven Embleton, Austin, TX US
Patent application number | Description | Published |
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20150359146 | COMPUTE DEVICE CASING THAT DOUBLES AS PACKAGING AND SHIPPING CONTAINER FOR THE COMPUTE DEVICE - An information handling system (IHS) when operational has compute components held by a lightweight server (LWS) chassis. For both shipping and operational support, the LWS chassis is inserted into a casing that is laterally sized to prevent lateral movement of the server chassis. The casing is formed of an impact tolerant material to protect the server chassis and any functional compute components inserted within the server chassis. In addition, the casing has sealable flaps that enable the server chassis to be fully enclosed within the casing. Thereby, the casing can be utilized as an external shipping carton in which the IHS can be physically shipped to a destination. | 12-10-2015 |