Abstract:
A system for loading a patient transport apparatus into a vehicle is described. The system includes a loading and unloading system including a track and a trolley supporting a receiver movable between locked and unlocked configurations. The system also includes a patient transport apparatus for attachment to the loading and unloading system including a base, a litter, and a lift mechanism to facilitate arranging the litter at different heights relative to the base with an actuator movable between fully-retracted and fully-extended configurations, a coupler for engaging the receiver to secure the patient transport apparatus, first and second sensors configured to output a first signal and second signal and a controller to determine a target lift configuration during unloading from the emergency based on first and second values and to drive the actuator to the target lift configuration to limit relative movement between the patient transport apparatus and the trolley.
Abstract:
A patient rotation system for rotating the body of a patient comprises an air inflatable cushion having two elastic exterior surfaces, e.g. of stretch material, wherein one of said two elastic surfaces of said cushion forms the top surface, and the other one forms the bottom surface. In deflated state the cushion has a flat shape and in inflated state the two elastic surfaces bulge away from each other, such that inflation of the cushion causes the cushion to assume a wedge shape thereby rotating the body around said rotation axis. The cushion is embodied as a unitary, semi-rigid, portable board when in its deflated state, which enables the sliding of the deflated cushion in between the body of the patient and a horizontal surface, on which the body is lying in supine position, until its posterior support points are being supported by the cushion at its top elastic surface.
Abstract:
The transfer assistance device includes a bogie, an arm tiltably supported by the bogie, a holding part that is supported by the arm and holds a torso of a person being assisted. The holding part includes at least a low pressure cell group and a high pressure cell group configured to respectively face different parts of a front surface of the torso of the person being assisted. The transfer assistance device further includes air pressure adjuster configured to individually adjust air pressure of the low pressure cell group and air pressure of the high pressure cell group.
Abstract:
The various embodiments disclosed herein relate to wheelchair systems for transporting a mobility-challenged passenger onto an aircraft and transfer that passenger into an aircraft seat. The implementations include systems with lift systems, belt systems, and/or transfer ramps.
Abstract:
A self-assisting robot for assisting a paraplegic user is disclosed which comprises a platform having a plurality of wheels, a robotic arm, an inclination sensor, operable to measure the inclination angle formed between said platform and a road in front thereof, a saddle configured to be adjusted up and down to fit the height of a user, a controller panel connected to said saddle, a processor operable to control the operations of the self-assisting robot, and a kneeling seat connected to and move with the robotic arm.
Abstract:
The present invention relates to a transportation apparatus for patients, which is a transportation apparatus that transfers and moves a patient that is on a main body frame in which the legs thereof are mounted with moving wheels. The present invention includes: a sliding plate that is moved to slide to both sides along the widthwise direction, by a sliding and moving means, on the upper surface of the main body frame; a transport conveyor that is coupled to the upper portion of the sliding plate so as to be moved to slide with the sliding plate, and has a conveyor belt which rotate in the forward direction or reverse direction by a rotating and moving means, after the movement; and an operation unit that is disposed on the front surface of the main body frame in the lengthwise direction so as to operate the sliding plate and the transport conveyor by means of the sliding and moving means and the rotating and moving means. According to the present invention, polytrauma patients, spinalized patients, or the like can be transported swiftly, safely, and conveniently.
Abstract:
A patient transfer system includes a patient transfer assembly and a patient transfer device. The assembly includes a sheet of corrugatable material, at least one stiffener that resists corrugation of the sheet in a first dimension when the patient transfer assembly including the sheet corrugated in a second dimension is inserted between the patient and a surface of a first resting device on which the patient rests. The sheet includes portions at which pulling in a direction along the second dimension decorrugates the sheet between the patient and the surface and fasteners. The device includes a sheet engaging assembly that pulls at least one of the fasteners in a direction along the first dimension to slide the decorrugated sheet relative to the surface thereby transferring the patient.
Abstract:
Obesity has grown into one of the world's most significant health problems. The field of bariatrics and the quantity of bariatric surgical procedures is projected to continue to increase rapidly each year. This trend presents a challenge to healthcare providers and facilities striving to provide dignified care that is effective and safe both for the patient and the provider. There is a great demand for new approaches to bariatric patient care. The present invention is a robotic patient lifting system, targeted for, but not limited to, bariatric patient care. Without the need for difficult, time consuming slings and hoists associated with currently available systems, the invented lifting and transferring system utilizes rapidly deployable, articulated robotic arms with gentle conveyor belts. A unique linkage system allows powerful, safe, and flexible lifting and positioning of the patient with a minimal number of actuators. The lifting mechanism is mounted on a low profile, stable and flexible footprint, omnidirectional robotic mobile base. A simple, intuitive user interface allows control by a single caregiver with minimal training
Abstract:
A care method and a care robot that can simplify care and reduce the burden on a caregiver, in particular the burden on the caregiver during the transfer of a care receiver. A sheet is spread out on top of a bed, and the care receiver is laid on the sheet. The sheet is formed so that both ends thereof have parts to be held that are held by arms of a robot. The robot and the arms are positioned relative to the care receiver, and the robot is moved towards the bed so that the arms hold the parts to be held. The arms are raised by a predetermined distance, and when the arms are in the raised state, the robot is moved away from the bed.
Abstract:
The present invention relates to a functional table for patient transportation, including: a patient supporter which supports a patient laid thereon and allows the patient to be horizontally slidably transported, with its both sides being changed in their angle with respect to a vertical axis of the patient; a support frame which is located in the central bottom of the patient supporter and allows the patient supporter to be vertically moved; a base frame which is connected to the bottom of the support frame and supports the whole of functional table; and at least three transporting wheels which are connected to the base frame and allow the functional table to be freely moved.