Smart Device Light Therapy Control via Clinical Codes
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Solution Overview
Problem
Current smart communication device-based light therapy systems lack the capability for customized therapy, as they are typically specialized for treating specific spots and do not allow users to perform tailored treatments for various diseases or symptoms, and they often have unstable operation due to power issues.
Innovation Solution
A system and method that utilizes a smart communication device to receive a lightceutical clinical code from an information providing server, which includes wavelength, intensity, and irradiation pattern of light, to control a light therapy device, enabling customized therapy for various diseases or symptoms, and allows users to purchase and manage lightceutical clinical codes for safe and convenient use anytime and anywhere.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If a light therapy device is specialized for treating a specific spot, then the device structure can be simplified, but the adaptability for treating various diseases or symptoms is reduced
Solution Approach 1:
The light therapy device is designed with multiple light emitting units that can emit different wavelengths of light, allowing it to treat various diseases and symptoms. The device includes a control unit that can selectively activate different light emitting units based on the specific therapy needed, making a single device capable of performing multiple therapeutic functions rather than requiring separate specialized devices for each condition.
Solution Approach 2:
The device incorporates a control unit that dynamically adjusts the operation of different light emitting units based on real-time requirements. The control unit can selectively turn on/off different light emitting units and adjust their intensity, enabling the device to adapt its configuration for different therapeutic needs rather than being fixed in a single specialized configuration.
2Ease of operation
If light therapy parameters are fixed for specific spots, then the operation becomes simpler, but the ability to provide customized therapy for various diseases is limited
Solution Approach 1:
The control unit stores multiple lightceutical clinical codes that contain pre-configured light therapy parameters (wavelength, intensity, irradiation time, irradiation pattern) for different diseases and symptoms. Before treatment, the user selects the appropriate clinical code corresponding to their condition, and the control unit automatically configures the light emitting units according to the stored parameters, eliminating the need for manual adjustment of each parameter while enabling customized therapy for various conditions.
Solution Approach 2:
The device enables changes in multiple light therapy parameters including wavelength, intensity, irradiation time, and irradiation pattern through the selection of different lightceutical clinical codes. The control unit adjusts these parameters automatically based on the selected code, allowing the same physical device to deliver different therapeutic regimens for different diseases without requiring physical modification of the device structure.
3Adaptability or versatility
If light therapy parameters are manually adjusted, then customization is possible, but the operation becomes more complex and error-prone
Solution Approach 1:
The control unit stores multiple lightceutical clinical codes that contain pre-configured light therapy parameters (wavelength, intensity, irradiation time, irradiation pattern) for different diseases and symptoms. Before treatment, the user selects the appropriate clinical code corresponding to their condition, and the control unit automatically configures the light emitting units according to the stored parameters, eliminating the need for manual adjustment of each parameter while enabling customized therapy for various conditions.
4Ease of operation
If light therapy parameters are pre-configured for specific conditions, then operation becomes easier, but the system cannot provide customized therapy for various diseases
Solution Approach 1:
The light therapy device is designed with multiple light emitting units that can emit different wavelengths of light, allowing it to treat various diseases and symptoms. The device includes a control unit that can selectively activate different light emitting units based on the specific therapy needed, making a single device capable of performing multiple therapeutic functions rather than requiring separate specialized devices for each condition.
Solution Approach 2:
The control unit stores multiple lightceutical clinical codes that contain pre-configured light therapy parameters (wavelength, intensity, irradiation time, irradiation pattern) for different diseases and symptoms. Before treatment, the user selects the appropriate clinical code corresponding to their condition, and the control unit automatically configures the light emitting units according to the stored parameters, eliminating the need for manual adjustment of each parameter while enabling customized therapy for various conditions.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables users to perform customized low-level light therapy safely and conveniently for various diseases or symptoms using a smart communication device, improving treatment accessibility and effectiveness by allowing users to select and manage light therapy sessions through a user interface.
Implementation Method 1
a light therapy device is operated in conjunction with a smart communication device and an information providing server to perform a light therapy
Data Source
AI summary
The present disclosure relates to a system and method for providing a smart communication device-based light therapy service in which a light therapy device is operated in conjunction with a smart communication device and an information providing server to perform a light therapy, and when a user purchases a lightceutical clinical code corresponding to a certain disease using the smart communication device, the information providing server generates the lightceutical clinical code of the disease containing a wavelength of light, an intensity of light, an irradiation time of light, and an irradiation pattern of light and sends the generated lightceutical clinical code to the smart communication device, and the smart communication device sends the received lightceutical clinical code to the light therapy device or generates a light therapy device control signal in accordance with the lightceutical clinical code and transmits the generated light therapy device control signal to the light therapy device to operate the light therapy device, thereby allowing customized therapy of various diseases or symptoms to be performed.The system for providing a smart communication device-based light therapy service includes a smart communication device through which a screen for purchasing a lightceutical clinical code including a wavelength of light, an intensity of light, an irradiation time of light, and an irradiation pattern of light is output and configured to receive a lightceutical clinical code from an information providing server and send the received lightceutical clinical code to a light therapy device or generate a light therapy device control signal in accordance with the lightceutical clinical code and send the generated light therapy device control signal to the light therapy device when a payment for a purchase of the lightceutical clinical code is completed in conjunction with a financial payment server, the information providing server configured to read the lightceutical clinical code from an information providing server DB and send the read lightceutical clinical code to the smart communication device when the payment for the lightceutical clinical code is completed by the smart communication device operating in conjunction with the financial payment server, and the light therapy device configured to operate in accordance with the lightceutical clinical code or the light therapy device control signal received from the smart communication device.


