Patent classifications
A61B5/1074
Foot differentiation scoring
Methods, systems, and non-transitory computer readable medium for foot differentiation scoring pertaining to an individual's differences in their two feet. A method includes receiving, from sensors of a scanning device, pressure and/or other measurement data corresponding to feet of a user. The method further includes preprocessing the pressure and/or measurement data. The method further includes generating, based on the preprocessed pressure and/or measurement data, a foot differentiation score based on differences between a left foot and a right foot of the user. The foot differentiation score may assign or correspond to a numerical rating based on how different the user's left foot and right foot are from each other.
DEVICE AND METHOD FOR FOOT SIZE MEASUREMENT
In a foot size measurement system, a measurement unit selectively measures one or more of multiple measurement elements to be measured as feature values defining one foot size, based on a one-foot image of a measured person. An information generator generates foot size information based on one or more measurement elements selectively measured by the measurement unit, among the multiple measurement elements. An output unit outputs the foot size information. The measurement unit selectively measures one or more of multiple measurement elements including a foot width and a foot length of one foot of a measured person.
Measuring board and foot shape data creating system
A measuring board having a simple structure is to be provided. A measuring board includes a main body having a foldable structure, and the main body includes a placement part on which a foot is placed and that includes a measurement marker, a wall part provided adjacent to the placement part and configured to position a heel during measurement, and supporting structures and that support the wall part. With such a configuration, a measuring board having a simple structure can be provided.
Footwear with traction elements
The invention relates to articles of footwear having traction elements, and systems and methods for manufacturing same. An example shoe includes an upper and a sole plate, the sole plate including a lower surface adapted for ground contact having a first sole portion including first traction elements, the first traction elements having a distal end and a side wall with extensions extending from a central core, and a second sole portion including second traction elements, the second traction elements having at least one geometrical feature differing in one or more aspects from a corresponding geometrical feature of the first traction elements.
Methods for determining the size of body parts as part of compression therapy procedures
Methods are disclosed for measuring the size of body parts treated by a compression therapy device. Either the volume or circumference of the body part may be measure. The methods my include evacuating an inflatable compression sleeve to a known pressure, inserting the body part into the compression sleeve, inflating the sleeve to a pre-set condition, and then measuring one or more inflation related parameters. The pre-set conditions may include a predetermined pressure, volume, or size of the inflatable cells comprising the sleeve. The inflation related parameters may include the time to fill the cell to a pre-set pressure, the pressure attained after a pre-set time of inflation, or the measure volume of a cell after a pre-set amount of air is introduced into it. The methods may also include deflating the cells from the known inflation state to a second inflation state and measuring similar parameters.
Chameleon sole station footwear apparatus
A footwear apparatus, comprising receptacles, having a mechanism that automatically removes and replaces interchangeable sole footwear parts; an automatic complete new sole dispenser; an automatic new sole heel dispenser; a complete old sole recycling automatic ejection component; an old sole heel dispenser automatic ejection component; a computer-implemented method for serving footwear and footwear soles to consumers from a vending machine; a computer-implemented foot scanning device, wherein said apparatus is comprised of a configuration to automatically replace the sole or partial sole of a pair or pairs of footwear.
Custom foot orthotic and system and method for designing of a custom foot orthotic
A custom foot orthotic and a system and a method for designing of a custom foot orthotic. The method includes: receiving 3D scan data of the patient's foot; receiving plantar pressure scan data of the patient's foot; establishing a desirable pressure distribution; generating an underfoot elevation profile relative to an elevation profile of the patient's foot in the 3D scan data; determining an internal density profile of the resulting foot orthotic 3D model by superimposing the desirable pressure distribution over the resulting foot orthotic 3D model and reducing or increasing density in regions of the foot orthotic 3D model based on the difference between an expected pattern of support and the desirable pressure distribution; and outputting the 3D model of the custom foot orthotic.
SYSTEM TO DETECT FOOT ABNORMALITIES
A device for detecting a foot abnormality includes a platform configured to be stood upon by a user, an imaging device within the platform, and a processor connected to the imaging device. The processor is configured to detect a foot abnormality from images gathered by the imaging device.
PREDICTION DEVICE, PREDICTION METHOD, AND PREDICTION SYSTEM
A prediction device includes: a communication device that acquires measurement subject data including measurement data of a shape of a foot of a measurement subject person in a loaded state; a storage that stores first sample data in the loaded state and second sample data in an unloaded state, the first sample data and the second sample data being calculated from measurement data of foot shapes of a plurality of samples, the samples being identical both in the loaded state and the unloaded state; and a processor that predicts the shape of the foot of the measurement subject person in the unloaded state. The processor calculates a difference between the measurement subject data and the first sample data, and predicts the shape of the foot of the measurement subject person in the unloaded state based on the difference and the second sample data.
THREE-DIMENSIONAL PLANTAR IMAGING APPARATUS AND MEMBRANE ASSEMBLY FOR USE IN THE SAME
A membrane assembly for use with a three-dimensional imager to obtain a topographical plantar image of a foot is provided. The assembly includes a support structure having a front end and a rear end elevated relative to the front end, and a flexible membrane suspended from the support structure and configured to receive and support an entire plantar surface of the foot. The membrane defines and encloses an upper portion of an inflatable chamber, and includes a forefoot- and a rearfoot-receiving region respectively adjacent to the front and the rear end of the support structure. The rearfoot-receiving region is under less tension than the forefoot-receiving region. The imager is positionable under the membrane in order to acquire the plantar image when the foot is disposed on the membrane. An apparatus including a membrane assembly and a three-dimensional imager, and a method for imaging a foot are also provided.