Abstract:
An adaptive ambulatory support includes a shock absorbing and pivoting tip assembly attached to the staff of a walking aid, such as a cane, crutch or walker. The shock absorbing and pivoting tip assembly includes a shock absorber sandwiched between a lower portion and an upper portion. The shock absorber may be a bendable spring or elastic material. The tip assembly enables the shaft of the walking aid to dynamically pivot without the loss of adherence of the lower portion to the floor surface and simultaneous provides the adaptive shock absorbing capability in any angle during ambulation.
Abstract:
An adaptive ambulatory support includes a shock absorbing and pivoting tip assembly attached to the staff of a walking aid, such as a cane, crutch or walker. The shock absorbing and pivoting tip assembly includes a shock absorber sandwiched between a lower portion and an upper portion. The shock absorber may be a bendable spring or elastic material. The tip assembly enables the shaft of the walking aid to dynamically pivot without the loss of adherence of the lower portion to the floor surface and simultaneous provides the adaptive shock absorbing capability in any angle during ambulation.
Abstract:
A walker/cane assembly, multi-legged cane, and single-pointed cane may share common parts that may be easily connected and detached to allow a user to convert a walker/cane assembly to a multi-legged cane and/or a single-pointed cane. Accordingly, a user may use a single assembly that may be quickly and easily modified to meet the user's needs, such as his/her current balance or energy level. One or more folding mechanisms may be employed to allow the walker/cane assembly, or the frame forming a portion of the walker/cane assembly, to be easily collapsed and folded. This may allow a user to store the walker/cane assembly, or the frame portion of the assembly, in a smaller amount of space than the expanded walker/cane assembly or the frame portion of the assembly may otherwise occupy.
Abstract:
An adaptive ambulatory support includes a shock absorbing and pivoting tip assembly attached to the staff of a walking aid, such as a cane, crutch or walker. The shock absorbing and pivoting tip assembly includes a shock absorber sandwiched between a lower portion and an upper portion. The shock absorber may be a bendable spring or elastic material. The tip assembly enables the shaft of the walking aid to dynamically pivot without the loss of adherence of the lower portion to the floor surface and simultaneous provides the adaptive shock absorbing capability in any angle during ambulation.
Abstract:
A walker/cane assembly, multi-legged cane, and single-pointed cane may share common parts that may be easily connected and detached to allow a user to convert a walker/cane assembly to a multi-legged cane and/or a single-pointed cane. Accordingly, a user may use a single assembly that may be quickly and easily modified to meet the user's needs, such as his/her current balance or energy level. One or more folding mechanisms may be employed to allow the walker/cane assembly, or the frame forming a portion of the walker/cane assembly, to be easily collapsed and folded. This may allow a user to store the walker/cane assembly, or the frame portion of the assembly, in a smaller amount of space than the expanded walker/cane assembly or the frame portion of the assembly may otherwise occupy.
Abstract:
The invention is a multi-legged walking cane where each leg operates independently of each other by employing compressible legs, enhancing stability thru the complete gait cycle.
Abstract:
A light power socket adaptor may be positioned between an energy-saving light bulb and a light socket that may provide electrical power to the light bulb. Adaptors may include a motorized rotational mechanism that allows sensors to rotate in any direction. Light power socket adaptors may be network-enabled. Each node on a sensor network may operate independently. Each node may also function as a router so that it may forward data packets to other nodes if the data received is targeted for its own consumption. Adaptors may further include a motion sensor, an image sensor, a sound sensor, and a photo (day/night) sensor.
Abstract:
A light power socket adaptor is positioned between an energy-saving light bulb and a light socket that provides electrical power to the light bulb. Light power socket adaptors are network-enabled, and a sensor network is ZigBee, which is IEEE compliant and quickly forms a mesh network. Each node on the network operates independently. Each node also functions as a router so that it forwards data packets to other nodes if the data received is targeted for its own consumption. Each adaptor further includes a motion sensor as well as a photo (day/night) sensor.
Abstract:
A light power socket adaptor may be positioned between an energy-saving light bulb and a light socket that may provide electrical power to the light bulb. Adaptors may include a motorized rotational mechanism that allows sensors to rotate in any direction. Light power socket adaptors may be network-enabled. Each node on a sensor network may operate independently. Each node may also function as a router so that it may forward data packets to other nodes if the data received is targeted for its own consumption. Adaptors may further include a motion sensor, an image sensor, a sound sensor, and a photo (day/night) sensor.
Abstract:
A light power socket adaptor may be positioned between an energy-saving light bulb and a light socket that may provide electrical power to the light bulb. Light power socket adaptors may be network-enabled, and a sensor network may be ZigBee, which is IEEE compliant and can quickly form a mesh network. Each node on the network may operate independently. Each node may also function as a router so that it may forward data packets to other nodes if the data received is targeted for its own consumption. Adaptors may further include a motion sensor as well as a photo (day/night) sensor.