Autonomous/Involuntary Action Devices

A non-autonomous, action-based technology, applied in psychological devices, medical equipment, etc., can solve the problem that the force cannot be completely guaranteed to be equal, and the force cannot be completely guaranteed to be equal, and achieve the effect of strong operability and simple instrument design

Active Publication Date: 2018-11-06
INST OF PSYCHOLOGY CHINESE ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the recognized psychological experiment instruments can only realize the independent button / lift button action, but the strength cannot be completely guaranteed to be equal.
Alternatively, according to the experimental process reported in most literatures, the voluntary button / lift action is completely determined by the subjects themselves, and their strength cannot be completely guaranteed to be equal, which will bring great disadvantages to the experiment.
In addition, some involuntary key presses or key lift actions are lacking in current psychological experiments.

Method used

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  • Autonomous/Involuntary Action Devices
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  • Autonomous/Involuntary Action Devices

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] Example 1 Autonomous / non-autonomous operation device of motor drive coil

[0023] The device includes a motion drive system, a motion transmission system, and a motion sensing system. The motion sensing system is composed of a wearable component and a sensing component that it contacts. The wearable component contains the limbs of the human body; when the motion drive system generates motion , Through the motion transmission system to transfer to the motion sensing system to realize the involuntary movements of the human limbs in the motion sensing system.

[0024] Such as Picture 1-1 As shown, the action drive system is a motor drive coil system, which includes a fixed frame A1, a motor A2, a control component A3, a pulley A4, and a coil A5. The control component A3 controls the motor A2, and controls its start and rotation speed. The control component A3 can be a microcomputer control component to achieve precise speed control.

[0025] The motion transmission system inclu...

Embodiment 2

[0029] Example 2 Autonomous / non-autonomous action device driven by electromagnet

[0030] Such as figure 2 As shown, the action drive system is an electromagnet drive, which includes an electromagnet B4, a circuit B1, control components B2 and B3, and a power supply arranged up and down. The control components B2 and B3 respectively control the electromagnet B4 arranged up and down, and the power and speed of the electromagnet drive can be controlled by the power supply.

[0031] The motion transmission system includes a metal transmission rod (lever), a spring component B5, a dead point B7, and a fulcrum B8. The transfer rod of the motion transfer system has a magnetic sensing component B6 at one end, and a ring B9 of the motion sensing system at one end to realize motion transfer. The magnetically sensitive component B6 can be attracted by an electromagnet, such as an iron sheet or an iron ingot.

[0032] The wearable part of the motion sensing system is a finger ring B9, which ...

Embodiment 3

[0035] Example 3 Autonomous / non-autonomous action device of motor-driven belt

[0036] Such as image 3 As shown, the action drive system is a motor-driven belt device, which includes a motor C1, a control component C2, a pulley C4, and a belt C3. The control component C2 controls the motor C1 and controls its start and rotation speed. The control component C2 can be a microcomputer control component to achieve precise speed control.

[0037] The motion transmission system includes a metal transmission rod (lever), a spring component C5, a dead point C7, and a fulcrum C8. One end of the transmission rod of the motion transmission system is connected to the belt C3 of the motion drive system through the flange C6, and one end is connected to the ring C9 of the motion sensing system to realize the transmission of motion.

[0038] The wearing part of the motion sensing system is a finger ring C9, which can accommodate human fingers. The ring C9 is in contact with the sensing componen...

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Abstract

The invention discloses a voluntary / involuntary action device applicable to psychological experiments. The voluntary / involuntary action device comprises an action driving system, an action transfer system and an action sensing system and is characterized in that the action sensing system is composed of a wearable part and an induction part contacted with the wearable part; the wearable part is used for containing four limbs of a human body; when the action driving system acts, actions are transferred to the action sensing system through the action transfer system; and thus, involuntary actions of the four limbs of the human body can be realized through the action sensing system. By means of the voluntary / involuntary action device disclosed by the invention, tested voluntary / involuntary actions of humans satisfying psychological experiments, in particular a key pressing action and a key lifting action, can be flexibly realized;

Description

Technical field [0001] The present invention relates to the technical field of a psychology experimental instrument. Specifically, an autonomous / involuntary-key / key-lifting action can be realized through such a device, and the four actions can be substantially the same in strength. This can provide good equipment guarantee for psychology experiments. Background technique [0002] At present, the recognized psychology experimental instruments can only achieve autonomous key-pressing / key-lifting actions, but the power cannot be fully guaranteed to be equal. Or, according to most of the experimental procedures reported in the literature, the autonomous key-pressing / key-lifting actions are completely determined by the subjects themselves, and their strength cannot be completely guaranteed to be equal, which will bring great disadvantages to the experiment. In addition, some involuntary keystrokes or key-lifting actions are currently lacking in psychological experiments. With the co...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G16H40/63A61B5/16
Inventor 赵科陈宥辛傅小兰
Owner INST OF PSYCHOLOGY CHINESE ACADEMY OF SCI
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