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Completed

NCT Number: NCT04407351

Develop Novel Phototherapy for Health Care of Patients With Sleep Disorder, Mild Cognitive Impairment, or Dementia

Investigators aim to collaborate with the division of neurology, ophthalmology and dermatology at the Kaohsiung Medical University, and make a new phototherapy for participants suffering from dementia, sleep disorder, mild cognitive dysfunction by using IoT and data science on big health and environmental data.

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Key information

Age range

55 year–80 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Kaohsiung Medical University Hospital

Kaohsiung City, 807, Taiwan

About this study

Solar light is an important environmental factor for all living organisms. With the advancement of the lighting technology, artificial light, such as light emitting diode (LED), has become another major lighting source. The influence of blue light and color temperature emitted from LED light source in most of the commercial 3C electronics on human health has been increasingly paid attention. Light exposure has been reported to be associated with different physiological mechanisms and pathologic events, including sleeping, metabolism and brain dysfunctions. However, lights are also applied in many therapeutic processes. Hence, it is a critical issue to develop a next-generation lighting environment for health promotion and improve the competitiveness of green-technology industries in Taiwan by integrating biomedical researches and cutting-edge lighting technology. For developing next-generation LED industry, the inspection technology and product standard on photobiology safety has been established in Taiwan. Inspiringly, Researchers in Taiwan have made a LED structure that can emit all the hues of sunlight by changing its terminal voltage, which may further facilitate the use of future lighting device on health promotion. Based on these technical advancement, in this project, investigators aim to integrate multidisciplinary investigations on animal experiments, translational applications, and clinical trials to establish an good lighting environment for participants with dementia and mild cognitive dysfunction, and bring benefits to Taiwan's green technologies. To meet this goal, this project aims to integrate lighting and information technologies, including Internet of Things (IoT) and data science analytics, to investigate the lighting effects on human health by conducting animal and translational experiments, and further promote the health in multiple testing groups across different patients. In this project, investigators incorporate the research strengths in light bioscience, environmental bioscience and medical engineering developed at National Health Research Institutes (NHRI) and the lighting, IoT and data science technologies developed at National Applied Research Laboratories (NARL). Additionally, investigators aim to collaborate with the division of neurology, ophthalmology and dermatology at the Kaohsiung Medical University, and make a new phototherapy for participants suffering from dementia, sleep disorder, cognitive dysfunction by using IoT and data science on big health and environmental data. By integrating multi-disciplinary technologies, investigators aim to promote health on brain, mind and body for elderly people and susceptible population by providing a health home lighting environment, which would be potentially beneficial to resolve the emerging issues of aging, sub-health population, psychiatric and neurodegenerative diseases. Moreover, the safety and molecular mechanism of phototherapy will be validated using animal models. Industrially, this project will build a strong linkage between LED, information and health promotion industries and upgrade the traditional LED industry by adding the novel application on health promotion.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • (1) The age is between 55 and 80 years old
  • (2) Education level is above elementary school graduation
  • (3) Use Edinburgh Inventory as the right hand

Exclusion criteria

  • (1) Neurological diseases, including cerebral stroke, epilepsy, Parkinson's disease and head trauma that cause local nerve signs
  • (2) Mental illnesses, including mental disorders, drug addiction, abnormal personality, and poorly controlled schizophrenia;
  • (3) Regularly take sedative and sleeping drugs or central nervous system stimulants
  • (4) Major physical diseases, including cancer, poorly controlled diabetes, hypertension and thyroid disease, immune rheumatism, heart failure, chronic obstructive pulmonary disease, liver cirrhosis, and chronic kidney disease stages IV and V

Treatment and study plan

Green LED light

Device

Investigators arrange 12 weeks green LED light phototherapy.

Red LED light (placebo)

Device

Investigators arrange 12 weeks red LED light phototherapy (placebo).

Primary outcomes

  1. Laser Doppler blood flow analysis (perfusion unit (PU))

    Time frame: Baseline

    It is a technique for monitoring microvascular perfusion by PeriFlux System 5000 (Perimed, Stockholm, Sweden). The light source can penetrate tissues and thus can measure blood perfusion without invasive procedures. The microvascular perfusion situation is immediate results and can be used to quantify the degree of skin damage. Its unit is perfusion unit (PU).

  2. Laser Doppler blood flow analysis (perfusion unit (PU))

    Time frame: 12 weeks

    It is a technique for monitoring microvascular perfusion by PeriFlux System 5000 (Perimed, Stockholm, Sweden). The light source can penetrate tissues and thus can measure blood perfusion without invasive procedures. The microvascular perfusion situation is immediate results and can be used to quantify the degree of skin damage. Its unit is perfusion unit (PU).

  3. Laser Doppler blood flow analysis (perfusion unit (PU))

    Time frame: 26 weeks

    It is a technique for monitoring microvascular perfusion by PeriFlux System 5000 (Perimed, Stockholm, Sweden). The light source can penetrate tissues and thus can measure blood perfusion without invasive procedures. The microvascular perfusion situation is immediate results and can be used to quantify the degree of skin damage. Its unit is perfusion unit (PU).

Secondary outcomes

  1. Hydration

    Time frame: Baseline

    The skin multi-functional detection system measures the skin's water content to detect whether the skin is too dry.

  2. Hydration

    Time frame: 12 weeks

    The skin multi-functional detection system measures the skin's water content to detect whether the skin is too dry.

  3. Hydration

    Time frame: 26 weeks

    The skin multi-functional detection system measures the skin's water content to detect whether the skin is too dry.

  4. Transepidermal water loss

    Time frame: Baseline

    Use the skin multifunctional detection system to measure the skin water loss state to understand the skin health.

  5. Transepidermal water loss

    Time frame: 12 weeks

    Use the skin multifunctional detection system to measure the skin water loss state to understand the skin health.

  6. Transepidermal water loss

    Time frame: 26 weeks

    Use the skin multifunctional detection system to measure the skin water loss state to understand the skin health.

  7. Sebum

    Time frame: Baseline

    The measuring principle is to use a photometer to measure the oil point transmittance to determine the size of the oil point and detect the skin oil content.

  8. Sebum

    Time frame: 12 weeks

    The measuring principle is to use a photometer to measure the oil point transmittance to determine the size of the oil point and detect the skin oil content.

  9. Sebum

    Time frame: 26 weeks

    The measuring principle is to use a photometer to measure the oil point transmittance to determine the size of the oil point and detect the skin oil content.

Sponsors and collaborators

Lead sponsor

Kaohsiung Medical University

Other

Registry information

Official study title

Develop Phototherapy of Improving the Quality of Sleep and Healthcare for Patients With Sleep Disorder, Mild Cognitive Impairment, or Dementia: a Novel Light Emitting Diode (LED) Application on Health Promotion

Important dates

Study start
2017
Primary completion
2020
Study completion
2020
First posted
May 29, 2020
Registry last updated
May 29, 2020

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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