351 | articlesid == 351
351 | articlescategoryid == 20
351 | articlescategoryorder == 17
351 | articlescategoryname == Attention
351 | articlescategorycolor == #C47AC0
351 | articlesslug == COMT-attention
351 | articlestitle == Can This Gene Influence Your Attention Span (COMT)?
351 | articlesmeta_description == The COMT gene breaks down neurotransmitters and is associated with attention and ADHD. Learn more here!
351 | articlessummary == <p style="text-align:justify"><strong>The COMT gene encodes a protein that breaks down the neurotransmitters dopamine, epinephrine, and norepinephrine. Certain variants have been associated with ADHD and reduced attention. Read on to learn where your COMT gene stands!</strong></p>
351 | articlesoverall_score_text == Your Attention Score (based on COMT Gene)
351 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/COMT-Attention.jpg
351 | articlesauthorid == 12
351 | articlesauthorname == Carlos Tello
351 | articlesauthortitle == PhD
351 | articlesauthororder == 55
351 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/CarlosTello.webp
351 | articlesauthorintro == <p><strong>Carlos received his PhD and MS from the Universidad de Sevilla.</strong></p>    <p>Carlos spent 9 years in the laboratory investigating mineral transport in plants. He then started working as a freelancer, mainly in science writing, editing, and consulting. Carlos is passionate about learning the mechanisms behind biological processes and communicating science to both academic and non-academic audiences. He strongly believes that scientific literacy is crucial to maintain a healthy lifestyle and avoid falling for scams.</p>
351 | articlesauthorsocialmedia_name == linkedin
351 | articlesauthorsocialmedia_icon == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/social-icon/linkedin.png
351 | articlesauthorsocialorder == 1
351 | articlesauthorsociallink == https://www.linkedin.com/in/carlos-tello-lacal-b946b4a7/
351 | articlesreviewer == None
351 | articlesmedical_reviewerid == 11
351 | articlesmedical_reviewername == Puya Yazdi
351 | articlesmedical_reviewertitle == MD
351 | articlespublish_date == 2020
351 | articlespublish_date == 9
351 | articlespublish_date == 25
351 | articlesavg_rating == 3.0
351 | articlestagsid == 30
351 | articlestagsname == ADHD
351 | articlestagsid == 56
351 | articlestagsname == Attention
351 | articlestagsid == 65
351 | articlestagsname == COMT Gene
351 | articlestagsid == 51
351 | articlestagsname == Dopamine
351 | articlestagsid == 53
351 | articlestagsname == Epinephrine
351 | articlestagsid == 54
351 | articlestagsname == Executive Function
351 | articlestagsid == 52
351 | articlestagsname == Norepinephrine
351 | articlespermissionsfavorite == False
351 | Tags = ADHD=30,Attention=56,COMT Gene=65,Dopamine=51,Epinephrine=53,Executive Function=54,Norepinephrine=52,
351 | articlespermissionsrate == False
332 | articlesid == 332
332 | articlescategoryid == 20
332 | articlescategoryorder == 17
332 | articlescategoryname == Attention
332 | articlescategorycolor == #C47AC0
332 | articlesslug == SLC6A3-ADHD
332 | articlestitle == A Genetic Link Between Dopamine and ADHD (SLC6A3)
332 | articlesmeta_description == SLC6A3 codes for a protein that removes dopamine. Variants of SLC6A3 have been associated with ADHD. Read more here.
332 | articlessummary == <p style="text-align:justify"><strong>The <em>SLC6A3</em> gene codes for the dopamine transporter: a protein that removes dopamine from the brain. Variants of <em>SLC6A3</em> have been linked to an increased risk of ADHD and its associated symptoms. Read more to learn how you can reduce the impact of these variants.</strong></p>
332 | articlesoverall_score_text == Your ADHD Score (based on SLC6A3 gene)
332 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/SLC6A3-DAT1-ADHD.jpg
332 | articlesauthorid == 14
332 | articlesauthorname == Shany Lahan
332 | articlesauthortitle == MS (Neuroscience)
332 | articlesauthororder == 5
332 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Shany.webp
332 | articlesauthorintro == <p>Shany received her MSc in Neuroscience from Western University.</p>    <p>Prior to joining SelfDecode, Shany conducted research related to Alzheimer&rsquo;s disease, and taught science to undergraduate students. She believes that research should be accessible to everyone, regardless of scientific background. Shany joined SelfDecode&nbsp;with a mission to help others optimize their health and wellbeing &ndash; as well as help them understand the science behind it all.</p>
332 | articlesreviewer == None
332 | articlesmedical_reviewerid == 11
332 | articlesmedical_reviewername == Puya Yazdi
332 | articlesmedical_reviewertitle == MD
332 | articlespublish_date == 2020
332 | articlespublish_date == 9
332 | articlespublish_date == 15
332 | articlesavg_rating == 5.0
332 | articlestagsid == 30
332 | articlestagsname == ADHD
332 | articlestagsid == 56
332 | articlestagsname == Attention
332 | articlestagsid == 708
332 | articlestagsname == DAT1 Gene
332 | articlestagsid == 51
332 | articlestagsname == Dopamine
332 | articlestagsid == 709
332 | articlestagsname == Dopamine Transporter
332 | articlestagsid == 697
332 | articlestagsname == Impulsivity
332 | articlestagsid == 707
332 | articlestagsname == SLC6A3 Gene
332 | articlespermissionsfavorite == False
332 | Tags = ADHD=30,Attention=56,DAT1 Gene=708,Dopamine=51,Dopamine Transporter=709,Impulsivity=697,SLC6A3 Gene=707,
332 | articlespermissionsrate == False
328 | articlesid == 328
328 | articlescategoryid == 20
328 | articlescategoryorder == 17
328 | articlescategoryname == Attention
328 | articlescategorycolor == #C47AC0
328 | articlesslug == SLC6A2-Attention
328 | articlestitle == How Does This Gene Relate To ADHD? (SLC6A2)
328 | articlesmeta_description == SLC6A2 gene variants may be affecting your ADHD susceptibility. Read on to find out more!
328 | articlessummary == <p style="text-align:justify"><strong><em>SLC6A2</em> variants may influence your ADHD susceptibility. Read on to find out the impact these variants may be having on you and what you can do to reduce it!</strong></p>
328 | articlesoverall_score_text == Your ADHD Score (based on SLC6A2 gene)
328 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/SLC6A2-NET1-ADHD.jpg
328 | articlesauthorid == 13
328 | articlesauthorname == Lewis Cuthbertson
328 | articlesauthortitle == PhD
328 | articlesauthororder == 12
328 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Lewis_SelfDecode.jpg
328 | articlesauthorintro == <p><strong>Lewis completed his PhD in Molecular Microbiology at Northumbria University (UK).</strong></p>    <p>Lewis spent several years researching the biodiversity of bacterial communities in the Arctic and Antarctic, whilst also performing research for a DNA sequencing service, where he was involved in several health based microbiome studies. This gave him an insight into how the highly diverse and invisible to the naked eye portion of human health, can potentially impact an individual&rsquo;s quality of life, driving his desire to help others understand their own complex health needs through the most current scientific research.<br />  &nbsp;</p>
328 | articlesreviewer == None
328 | articlesmedical_reviewerid == 11
328 | articlesmedical_reviewername == Puya Yazdi
328 | articlesmedical_reviewertitle == MD
328 | articlespublish_date == 2020
328 | articlespublish_date == 9
328 | articlespublish_date == 15
328 | articlesavg_rating == 5.0
328 | articlestagsid == 30
328 | articlestagsname == ADHD
328 | articlestagsid == 56
328 | articlestagsname == Attention
328 | articlestagsid == 52
328 | articlestagsname == Norepinephrine
328 | articlestagsid == 557
328 | articlestagsname == Omega-3 Fatty Acids
328 | articlestagsid == 705
328 | articlestagsname == SLC6A2 gene
328 | articlespermissionsfavorite == False
328 | Tags = ADHD=30,Attention=56,Norepinephrine=52,Omega-3 Fatty Acids=557,SLC6A2 gene=705,
328 | articlespermissionsrate == False
329 | articlesid == 329
329 | articlescategoryid == 20
329 | articlescategoryorder == 17
329 | articlescategoryname == Attention
329 | articlescategorycolor == #C47AC0
329 | articlesslug == DBH-ADHD
329 | articlestitle == Can This Gene Increase Your Risk Of ADHD? (DBH)
329 | articlesmeta_description == DBH gene variants may be affecting your ADHD susceptibility. Read on to find out more!
329 | articlessummary == <p style="text-align:justify"><strong><em>DBH</em> variants may influence your ADHD susceptibility. Read on to find out the impact these variants may be having on you and what you can do to reduce it!</strong></p>
329 | articlesoverall_score_text == Your ADHD Score (based on DBH gene)
329 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/DBH-ADHD.jpg
329 | articlesauthorid == 13
329 | articlesauthorname == Lewis Cuthbertson
329 | articlesauthortitle == PhD
329 | articlesauthororder == 12
329 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Lewis_SelfDecode.jpg
329 | articlesauthorintro == <p><strong>Lewis completed his PhD in Molecular Microbiology at Northumbria University (UK).</strong></p>    <p>Lewis spent several years researching the biodiversity of bacterial communities in the Arctic and Antarctic, whilst also performing research for a DNA sequencing service, where he was involved in several health based microbiome studies. This gave him an insight into how the highly diverse and invisible to the naked eye portion of human health, can potentially impact an individual&rsquo;s quality of life, driving his desire to help others understand their own complex health needs through the most current scientific research.<br />  &nbsp;</p>
329 | articlesreviewer == None
329 | articlesmedical_reviewerid == 11
329 | articlesmedical_reviewername == Puya Yazdi
329 | articlesmedical_reviewertitle == MD
329 | articlespublish_date == 2020
329 | articlespublish_date == 9
329 | articlespublish_date == 15
329 | articlesavg_rating == 5.0
329 | articlestagsid == 30
329 | articlestagsname == ADHD
329 | articlestagsid == 56
329 | articlestagsname == Attention
329 | articlestagsid == 636
329 | articlestagsname == DBH Gene
329 | articlestagsid == 51
329 | articlestagsname == Dopamine
329 | articlestagsid == 207
329 | articlestagsname == Exercise
329 | articlestagsid == 52
329 | articlestagsname == Norepinephrine
329 | articlestagsid == 557
329 | articlestagsname == Omega-3 Fatty Acids
329 | articlespermissionsfavorite == False
329 | Tags = ADHD=30,Attention=56,DBH Gene=636,Dopamine=51,Exercise=207,Norepinephrine=52,Omega-3 Fatty Acids=557,
329 | articlespermissionsrate == False
330 | articlesid == 330
330 | articlescategoryid == 20
330 | articlescategoryorder == 17
330 | articlescategoryname == Attention
330 | articlescategorycolor == #C47AC0
330 | articlesslug == TERT-stress-ADHD
330 | articlestitle == Genetic Link Between Stress and ADHD (TERT)
330 | articlesmeta_description == The TERT gene is crucial for longevity and stress response. Learn about its link with ADHD.
330 | articlessummary == <p style="text-align:justify"><strong>Stress can significantly contribute to ADHD development, depending on one variant in the TERT gene. Read on to check your genes and learn more!</strong></p>
330 | articlesoverall_score_text == Your ADHD Score (Based on TERT Gene)
330 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/TERT-ADHD.jpg
330 | articlesauthorid == 9
330 | articlesauthorname == Aleksa Ristic
330 | articlesauthortitle == MS (Pharmacy)
330 | articlesauthororder == 45
330 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Aleksa.jpg
330 | articlesauthorintro == <p><strong>Aleksa received his MS in Pharmacy from the University of Belgrade, his master thesis focusing on protein sources in plant-based diets.</strong>&nbsp;&nbsp;</p>    <p>Aleksa is passionate about herbal pharmacy, nutrition, and functional medicine. He found a way to merge his two biggest passions&mdash;writing and health&mdash;and use them for noble purposes. His mission is to bridge the gap between science and everyday life, helping readers improve their health and feel better.</p>
330 | articlesreviewer == None
330 | articlesmedical_reviewerid == 11
330 | articlesmedical_reviewername == Puya Yazdi
330 | articlesmedical_reviewertitle == MD
330 | articlespublish_date == 2020
330 | articlespublish_date == 9
330 | articlespublish_date == 14
330 | articlesavg_rating == 5.0
330 | articlestagsid == 30
330 | articlestagsname == ADHD
330 | articlestagsid == 56
330 | articlestagsname == Attention
330 | articlestagsid == 101
330 | articlestagsname == Longevity
330 | articlestagsid == 50
330 | articlestagsname == Stress
330 | articlestagsid == 163
330 | articlestagsname == Telomerase
330 | articlestagsid == 162
330 | articlestagsname == Telomeres
330 | articlestagsid == 161
330 | articlestagsname == TERT Gene
330 | articlespermissionsfavorite == False
330 | Tags = ADHD=30,Attention=56,Longevity=101,Stress=50,Telomerase=163,Telomeres=162,TERT Gene=161,
330 | articlespermissionsrate == False
327 | articlesid == 327
327 | articlescategoryid == 20
327 | articlescategoryorder == 17
327 | articlescategoryname == Attention
327 | articlescategorycolor == #C47AC0
327 | articlesslug == CACNA1C-attention
327 | articlestitle == Does This Calcium Channel Gene Play a Role in Attention? (CACNA1C)
327 | articlesmeta_description == CACNA1C is associated with attention-related problems. Click here for some diet and gene-based tips!
327 | articlessummary == <p style="text-align:justify">The CACNA1C gene encodes a calcium channel in the brain and has been associated with many psychiatric disorders, including ADHD. What kind of a role does it play in attention? Read on to find out!</p>
327 | articlesoverall_score_text == Your Attention Score (Based on CACNA1C)
327 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/CACNA1C_image.jpg
327 | articlesauthorid == 15
327 | articlesauthorname == John Williams
327 | articlesauthortitle == B.Sc
327 | articlesauthororder == 3987
327 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/sinan_pic.png
327 | articlesauthorintro == <p>John received his BSc from the University of Toronto.&nbsp;John has spent the last several years teaching high school science and math to English-language learners, which has forced him to learn how to simplify difficult concepts as much as possible. He has also worked in two different research labs and has experience as a student intern working and studying under doctors in hospitals and clinics to help diagnose and treat patients, interpret lab results and fill out mountains of paperwork.</p>
327 | articlesreviewer == None
327 | articlesmedical_reviewerid == 11
327 | articlesmedical_reviewername == Puya Yazdi
327 | articlesmedical_reviewertitle == MD
327 | articlespublish_date == 2020
327 | articlespublish_date == 9
327 | articlespublish_date == 12
327 | articlesavg_rating == 5.0
327 | articlestagsid == 30
327 | articlestagsname == ADHD
327 | articlestagsid == 56
327 | articlestagsname == Attention
327 | articlestagsid == 704
327 | articlestagsname == CACNA1C Gene
327 | articlestagsid == 703
327 | articlestagsname == L-type Calcium Channels
327 | articlespermissionsfavorite == False
327 | Tags = ADHD=30,Attention=56,CACNA1C Gene=704,L-type Calcium Channels=703,
327 | articlespermissionsrate == False
326 | articlesid == 326
326 | articlescategoryid == 20
326 | articlescategoryorder == 17
326 | articlescategoryname == Attention
326 | articlescategorycolor == #C47AC0
326 | articlesslug == BDNF-ADHD
326 | articlestitle == Can Brain Development Impact ADHD? (BDNF)
326 | articlesmeta_description == BDNF is essential to brain development. Variants of BDNF have been associated with increased risk of ADHD. Read more here.
326 | articlessummary == <p style="text-align:justify"><strong>The <em>BDNF </em>gene is essential to the development of the dopamine system. Dopamine dysfunction has been implicated in ADHD. Read more to learn how <em>BDNF </em>variants can influence ADHD, and how to mitigate the negative effects of these variants.</strong></p>
326 | articlesoverall_score_text == Your ADHD Score (based on BDNF gene)
326 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/BDNF-ADHD.jpg
326 | articlesauthorid == 14
326 | articlesauthorname == Shany Lahan
326 | articlesauthortitle == MS (Neuroscience)
326 | articlesauthororder == 5
326 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Shany.webp
326 | articlesauthorintro == <p>Shany received her MSc in Neuroscience from Western University.</p>    <p>Prior to joining SelfDecode, Shany conducted research related to Alzheimer&rsquo;s disease, and taught science to undergraduate students. She believes that research should be accessible to everyone, regardless of scientific background. Shany joined SelfDecode&nbsp;with a mission to help others optimize their health and wellbeing &ndash; as well as help them understand the science behind it all.</p>
326 | articlesreviewer == None
326 | articlesmedical_reviewerid == 11
326 | articlesmedical_reviewername == Puya Yazdi
326 | articlesmedical_reviewertitle == MD
326 | articlespublish_date == 2020
326 | articlespublish_date == 9
326 | articlespublish_date == 12
326 | articlesavg_rating == 4.5
326 | articlestagsid == 30
326 | articlestagsname == ADHD
326 | articlestagsid == 160
326 | articlestagsname == BDNF Gene
326 | articlestagsid == 51
326 | articlestagsname == Dopamine
326 | articlestagsid == 696
326 | articlestagsname == Hyperactivity
326 | articlestagsid == 59
326 | articlestagsname == Learning and Memory
326 | articlestagsid == 57
326 | articlestagsname == Synaptic Plasticity
326 | articlespermissionsfavorite == False
326 | Tags = ADHD=30,BDNF Gene=160,Dopamine=51,Hyperactivity=696,Learning and Memory=59,Synaptic Plasticity=57,
326 | articlespermissionsrate == False
325 | articlesid == 325
325 | articlescategoryid == 20
325 | articlescategoryorder == 17
325 | articlescategoryname == Attention
325 | articlescategorycolor == #C47AC0
325 | articlesslug == HTR2C-serotonin-ADHD
325 | articlestitle == Serotonin Genetics in ADHD (HTR2C)
325 | articlesmeta_description == The HTR2C gene plays crucial roles in mental health and cognition. Learn about its link with ADHD.
325 | articlessummary == <p style="text-align:justify"><strong>Scientists have discovered another genetic factor that connects serotonin and attention disorders. Read this post to learn the link between the HTR2C gene and ADHD.</strong></p>
325 | articlesoverall_score_text == Your ADHD Score (Based on HTR2C Gene)
325 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/HTR2C-ADHD.jpg
325 | articlesauthorid == 9
325 | articlesauthorname == Aleksa Ristic
325 | articlesauthortitle == MS (Pharmacy)
325 | articlesauthororder == 45
325 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Aleksa.jpg
325 | articlesauthorintro == <p><strong>Aleksa received his MS in Pharmacy from the University of Belgrade, his master thesis focusing on protein sources in plant-based diets.</strong>&nbsp;&nbsp;</p>    <p>Aleksa is passionate about herbal pharmacy, nutrition, and functional medicine. He found a way to merge his two biggest passions&mdash;writing and health&mdash;and use them for noble purposes. His mission is to bridge the gap between science and everyday life, helping readers improve their health and feel better.</p>
325 | articlesreviewer == None
325 | articlesmedical_reviewerid == 11
325 | articlesmedical_reviewername == Puya Yazdi
325 | articlesmedical_reviewertitle == MD
325 | articlespublish_date == 2020
325 | articlespublish_date == 9
325 | articlespublish_date == 12
325 | articlesavg_rating == 5.0
325 | articlestagsid == 701
325 | articlestagsname == 5-HT2C receptor
325 | articlestagsid == 30
325 | articlestagsname == ADHD
325 | articlestagsid == 56
325 | articlestagsname == Attention
325 | articlestagsid == 13
325 | articlestagsname == Cognition
325 | articlestagsid == 478
325 | articlestagsname == HTR2C Gene
325 | articlestagsid == 309
325 | articlestagsname == Serotonin
325 | articlespermissionsfavorite == False
325 | Tags = 5-HT2C receptor=701,ADHD=30,Attention=56,Cognition=13,HTR2C Gene=478,Serotonin=309,
325 | articlespermissionsrate == False
324 | articlesid == 324
324 | articlescategoryid == 20
324 | articlescategoryorder == 17
324 | articlescategoryname == Attention
324 | articlescategorycolor == #C47AC0
324 | articlesslug == DTNBP1-Attention
324 | articlestitle == Can This Dopamine Regulating Gene Increase Your Risk Of ADHD? (DTNBP1)
324 | articlesmeta_description == DTNBP1 gene variants may be affecting your attention span and ADHD susceptibility. Read on to find out more!
324 | articlessummary == <p style="text-align:justify"><strong><em>DTNBP1</em> variants may influence your attention span. Read on to find out the impact these variants may be having on you and what you can do to reduce it!</strong></p>
324 | articlesoverall_score_text == Your Attention Score (based on DTNBP1 gene)
324 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/DTNBP1-ADHD.jpg
324 | articlesauthorid == 13
324 | articlesauthorname == Lewis Cuthbertson
324 | articlesauthortitle == PhD
324 | articlesauthororder == 12
324 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Lewis_SelfDecode.jpg
324 | articlesauthorintro == <p><strong>Lewis completed his PhD in Molecular Microbiology at Northumbria University (UK).</strong></p>    <p>Lewis spent several years researching the biodiversity of bacterial communities in the Arctic and Antarctic, whilst also performing research for a DNA sequencing service, where he was involved in several health based microbiome studies. This gave him an insight into how the highly diverse and invisible to the naked eye portion of human health, can potentially impact an individual&rsquo;s quality of life, driving his desire to help others understand their own complex health needs through the most current scientific research.<br />  &nbsp;</p>
324 | articlesreviewer == None
324 | articlesmedical_reviewerid == 11
324 | articlesmedical_reviewername == Puya Yazdi
324 | articlesmedical_reviewertitle == MD
324 | articlespublish_date == 2020
324 | articlespublish_date == 9
324 | articlespublish_date == 11
324 | articlesavg_rating == 5.0
324 | articlestagsid == 56
324 | articlestagsname == Attention
324 | articlestagsid == 51
324 | articlestagsname == Dopamine
324 | articlestagsid == 700
324 | articlestagsname == DTNBP1 gene
324 | articlespermissionsfavorite == False
324 | Tags = Attention=56,Dopamine=51,DTNBP1 gene=700,
324 | articlespermissionsrate == False
323 | articlesid == 323
323 | articlescategoryid == 20
323 | articlescategoryorder == 17
323 | articlescategoryname == Attention
323 | articlescategorycolor == #C47AC0
323 | articlesslug == HTR1B-serotonin-ADHD
323 | articlestitle == How Serotonin Receptors Impact Attention (HTR1B)
323 | articlesmeta_description == The HTR1B gene helps make a serotonin receptor crucial for attention. Click to discover its link with ADHD.
323 | articlessummary == <p style="text-align:justify"><strong>Scientists have found a crucial genetic link between serotonin and attention. Read this post to learn about the HTR1B gene and its role in ADHD.</strong></p>
323 | articlesoverall_score_text == Your ADHD Score (Based on HTR1B Gene)
323 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/HTR1B--HTR2C-ADHD.jpg
323 | articlesauthorid == 9
323 | articlesauthorname == Aleksa Ristic
323 | articlesauthortitle == MS (Pharmacy)
323 | articlesauthororder == 45
323 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Aleksa.jpg
323 | articlesauthorintro == <p><strong>Aleksa received his MS in Pharmacy from the University of Belgrade, his master thesis focusing on protein sources in plant-based diets.</strong>&nbsp;&nbsp;</p>    <p>Aleksa is passionate about herbal pharmacy, nutrition, and functional medicine. He found a way to merge his two biggest passions&mdash;writing and health&mdash;and use them for noble purposes. His mission is to bridge the gap between science and everyday life, helping readers improve their health and feel better.</p>
323 | articlesreviewer == None
323 | articlesmedical_reviewerid == 11
323 | articlesmedical_reviewername == Puya Yazdi
323 | articlesmedical_reviewertitle == MD
323 | articlespublish_date == 2020
323 | articlespublish_date == 9
323 | articlespublish_date == 11
323 | articlesavg_rating == 5.0
323 | articlestagsid == 682
323 | articlestagsname == 5-HT1B receptor
323 | articlestagsid == 30
323 | articlestagsname == ADHD
323 | articlestagsid == 56
323 | articlestagsname == Attention
323 | articlestagsid == 681
323 | articlestagsname == HTR1B gene
323 | articlestagsid == 557
323 | articlestagsname == Omega-3 Fatty Acids
323 | articlestagsid == 309
323 | articlestagsname == Serotonin
323 | articlestagsid == 485
323 | articlestagsname == Sleep
323 | articlespermissionsfavorite == False
323 | Tags = 5-HT1B receptor=682,ADHD=30,Attention=56,HTR1B gene=681,Omega-3 Fatty Acids=557,Serotonin=309,Sleep=485,
323 | articlespermissionsrate == False
322 | articlesid == 322
322 | articlescategoryid == 20
322 | articlescategoryorder == 17
322 | articlescategoryname == Attention
322 | articlescategorycolor == #C47AC0
322 | articlesslug == NRG1-executive-function
322 | articlestitle == How Does Brain Development Impact Attention and Memory? (NRG1)
322 | articlesmeta_description == NRG1 is important in brain development. Variants of NRG1 have been associated with cognitive impairments. Read more here.
322 | articlessummary == <p style="text-align:justify"><strong>The <em>NRG1</em> gene plays an important role in establishing inhibitory brain cell connections during brain development. Variants of <em>NRG1</em> have been associated with cognitive impairments, such as attentional control and working memory deficits. Scroll down to learn more.</strong></p>
322 | articlesoverall_score_text == Your Executive Function Score (based on NRG1 gene)
322 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/NRG1-Attention.jpg
322 | articlesauthorid == 14
322 | articlesauthorname == Shany Lahan
322 | articlesauthortitle == MS (Neuroscience)
322 | articlesauthororder == 5
322 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Shany.webp
322 | articlesauthorintro == <p>Shany received her MSc in Neuroscience from Western University.</p>    <p>Prior to joining SelfDecode, Shany conducted research related to Alzheimer&rsquo;s disease, and taught science to undergraduate students. She believes that research should be accessible to everyone, regardless of scientific background. Shany joined SelfDecode&nbsp;with a mission to help others optimize their health and wellbeing &ndash; as well as help them understand the science behind it all.</p>
322 | articlesreviewer == None
322 | articlesmedical_reviewerid == 11
322 | articlesmedical_reviewername == Puya Yazdi
322 | articlesmedical_reviewertitle == MD
322 | articlespublish_date == 2020
322 | articlespublish_date == 9
322 | articlespublish_date == 10
322 | articlesavg_rating == 5.0
322 | articlestagsid == 30
322 | articlestagsname == ADHD
322 | articlestagsid == 56
322 | articlestagsname == Attention
322 | articlestagsid == 54
322 | articlestagsname == Executive Function
322 | articlestagsid == 699
322 | articlestagsname == NRG1 Gene
322 | articlestagsid == 109
322 | articlestagsname == Working Memory
322 | articlespermissionsfavorite == False
322 | Tags = ADHD=30,Attention=56,Executive Function=54,NRG1 Gene=699,Working Memory=109,
322 | articlespermissionsrate == False
321 | articlesid == 321
321 | articlescategoryid == 20
321 | articlescategoryorder == 17
321 | articlescategoryname == Attention
321 | articlescategorycolor == #C47AC0
321 | articlesslug == CHRNA4-Attention
321 | articlestitle == Could This Gene Impact Your Ability To Navigate? (CHRNA4)
321 | articlesmeta_description == CHRNA4 gene variants may be affecting your attention span. Read on to find out more!
321 | articlessummary == <p style="text-align:justify"><strong><em>CHRNA4</em> variants may influence your attention span. Read on to find out the impact these variants may be having on you and what you can do to reduce it!</strong></p>
321 | articlesoverall_score_text == Your Attention Score (based on CHRNA4 gene)
321 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/CHRNA4-Attention.jpg
321 | articlesauthorid == 13
321 | articlesauthorname == Lewis Cuthbertson
321 | articlesauthortitle == PhD
321 | articlesauthororder == 12
321 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Lewis_SelfDecode.jpg
321 | articlesauthorintro == <p><strong>Lewis completed his PhD in Molecular Microbiology at Northumbria University (UK).</strong></p>    <p>Lewis spent several years researching the biodiversity of bacterial communities in the Arctic and Antarctic, whilst also performing research for a DNA sequencing service, where he was involved in several health based microbiome studies. This gave him an insight into how the highly diverse and invisible to the naked eye portion of human health, can potentially impact an individual&rsquo;s quality of life, driving his desire to help others understand their own complex health needs through the most current scientific research.<br />  &nbsp;</p>
321 | articlesreviewer == None
321 | articlesmedical_reviewerid == 11
321 | articlesmedical_reviewername == Puya Yazdi
321 | articlesmedical_reviewertitle == MD
321 | articlespublish_date == 2020
321 | articlespublish_date == 9
321 | articlespublish_date == 10
321 | articlesavg_rating == 5.0
321 | articlestagsid == 237
321 | articlestagsname == Acetylcholine
321 | articlestagsid == 56
321 | articlestagsname == Attention
321 | articlestagsid == 698
321 | articlestagsname == CHRNA4 gene
321 | articlespermissionsfavorite == False
321 | Tags = Acetylcholine=237,Attention=56,CHRNA4 gene=698,
321 | articlespermissionsrate == False
320 | articlesid == 320
320 | articlescategoryid == 20
320 | articlescategoryorder == 17
320 | articlescategoryname == Attention
320 | articlescategorycolor == #C47AC0
320 | articlesslug == SNAP25-ADHD
320 | articlestitle == How Does Memory Relate to ADHD? (SNAP25)
320 | articlesmeta_description == SNAP25 is essential to learning and memory. Variants of SNAP25 have been associated with ADHD. Read on to learn more.
320 | articlessummary == <p style="text-align:justify"><strong>SNAP25 is a protein essential to learning and memory. Variants of <em>SNAP25 </em>have been associated with ADHD and its cognitive and behavioral symptoms. Read on to learn more.</strong><br />  &nbsp;</p>
320 | articlesoverall_score_text == Your ADHD Score (based on SNAP25 gene)
320 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/SNAP25-ADHD.jpg
320 | articlesauthorid == 14
320 | articlesauthorname == Shany Lahan
320 | articlesauthortitle == MS (Neuroscience)
320 | articlesauthororder == 5
320 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Shany.webp
320 | articlesauthorintro == <p>Shany received her MSc in Neuroscience from Western University.</p>    <p>Prior to joining SelfDecode, Shany conducted research related to Alzheimer&rsquo;s disease, and taught science to undergraduate students. She believes that research should be accessible to everyone, regardless of scientific background. Shany joined SelfDecode&nbsp;with a mission to help others optimize their health and wellbeing &ndash; as well as help them understand the science behind it all.</p>
320 | articlesreviewer == None
320 | articlesmedical_reviewerid == 11
320 | articlesmedical_reviewername == Puya Yazdi
320 | articlesmedical_reviewertitle == MD
320 | articlespublish_date == 2020
320 | articlespublish_date == 9
320 | articlespublish_date == 10
320 | articlesavg_rating == 5.0
320 | articlestagsid == 30
320 | articlestagsname == ADHD
320 | articlestagsid == 696
320 | articlestagsname == Hyperactivity
320 | articlestagsid == 697
320 | articlestagsname == Impulsivity
320 | articlestagsid == 695
320 | articlestagsname == SNAP25 Gene
320 | articlestagsid == 109
320 | articlestagsname == Working Memory
320 | articlespermissionsfavorite == False
320 | Tags = ADHD=30,Hyperactivity=696,Impulsivity=697,SNAP25 Gene=695,Working Memory=109,
320 | articlespermissionsrate == False
319 | articlesid == 319
319 | articlescategoryid == 20
319 | articlescategoryorder == 17
319 | articlescategoryname == Attention
319 | articlescategorycolor == #C47AC0
319 | articlesslug == TPH2-ADHD
319 | articlestitle == Does This Gene Affect Your Risk of ADHD? (TPH2)
319 | articlesmeta_description == TPH2 is associated with ADHD. Click here for some diet and gene-based tips!
319 | articlessummary == <p style="text-align:justify"><strong>The TPH2 gene is needed to make serotonin, a molecule associated with ADHD. Variants of TPH2 are associated with less serotonin production. Read on to find out if this is you and get some recommendations!</strong></p>
319 | articlesoverall_score_text == Your ADHD Score (based on TPH2)
319 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/tph2.jfif
319 | articlesauthorid == 15
319 | articlesauthorname == John Williams
319 | articlesauthortitle == B.Sc
319 | articlesauthororder == 3987
319 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/sinan_pic.png
319 | articlesauthorintro == <p>John received his BSc from the University of Toronto.&nbsp;John has spent the last several years teaching high school science and math to English-language learners, which has forced him to learn how to simplify difficult concepts as much as possible. He has also worked in two different research labs and has experience as a student intern working and studying under doctors in hospitals and clinics to help diagnose and treat patients, interpret lab results and fill out mountains of paperwork.</p>
319 | articlesreviewer == None
319 | articlesmedical_reviewerid == 11
319 | articlesmedical_reviewername == Puya Yazdi
319 | articlesmedical_reviewertitle == MD
319 | articlespublish_date == 2020
319 | articlespublish_date == 9
319 | articlespublish_date == 9
319 | articlesavg_rating == 5.0
319 | articlestagsid == 30
319 | articlestagsname == ADHD
319 | articlestagsid == 309
319 | articlestagsname == Serotonin
319 | articlestagsid == 693
319 | articlestagsname == TPH2 gene
319 | articlestagsid == 694
319 | articlestagsname == Tryptophan
319 | articlespermissionsfavorite == False
319 | Tags = ADHD=30,Serotonin=309,TPH2 gene=693,Tryptophan=694,
319 | articlespermissionsrate == False
318 | articlesid == 318
318 | articlescategoryid == 20
318 | articlescategoryorder == 17
318 | articlescategoryname == Attention
318 | articlescategorycolor == #C47AC0
318 | articlesslug == HTR2A-serotonin-ADHD
318 | articlestitle == Genetic Link Between ADHD and Serotonin (HTR2A)
318 | articlesmeta_description == The HTR2A gene enables serotonin to enhance attention & cognition. Learn about its link with ADHD.
318 | articlessummary == <p style="text-align:justify"><strong>Did you know that serotonin is crucial for attention and other cognitive functions? The HTR2A gene helps produce a crucial serotonin receptor &mdash; read this post to learn about its link with ADHD.</strong></p>
318 | articlesoverall_score_text == Your ADHD Score (Based on HTR2A Gene)
318 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/HTR2A-ADHD.jpg
318 | articlesauthorid == 9
318 | articlesauthorname == Aleksa Ristic
318 | articlesauthortitle == MS (Pharmacy)
318 | articlesauthororder == 45
318 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Aleksa.jpg
318 | articlesauthorintro == <p><strong>Aleksa received his MS in Pharmacy from the University of Belgrade, his master thesis focusing on protein sources in plant-based diets.</strong>&nbsp;&nbsp;</p>    <p>Aleksa is passionate about herbal pharmacy, nutrition, and functional medicine. He found a way to merge his two biggest passions&mdash;writing and health&mdash;and use them for noble purposes. His mission is to bridge the gap between science and everyday life, helping readers improve their health and feel better.</p>
318 | articlesreviewer == None
318 | articlesmedical_reviewerid == 11
318 | articlesmedical_reviewername == Puya Yazdi
318 | articlesmedical_reviewertitle == MD
318 | articlespublish_date == 2020
318 | articlespublish_date == 9
318 | articlespublish_date == 9
318 | articlesavg_rating == 5.0
318 | articlestagsid == 673
318 | articlestagsname == 5-HT2A receptor
318 | articlestagsid == 30
318 | articlestagsname == ADHD
318 | articlestagsid == 56
318 | articlestagsname == Attention
318 | articlestagsid == 692
318 | articlestagsname == Cannabinoids
318 | articlestagsid == 13
318 | articlestagsname == Cognition
318 | articlestagsid == 207
318 | articlestagsname == Exercise
318 | articlestagsid == 672
318 | articlestagsname == HTR2A gene
318 | articlestagsid == 309
318 | articlestagsname == Serotonin
318 | articlespermissionsfavorite == False
318 | Tags = 5-HT2A receptor=673,ADHD=30,Attention=56,Cannabinoids=692,Cognition=13,Exercise=207,HTR2A gene=672,Serotonin=309,
318 | articlespermissionsrate == False
317 | articlesid == 317
317 | articlescategoryid == 20
317 | articlescategoryorder == 17
317 | articlescategoryname == Attention
317 | articlescategorycolor == #C47AC0
317 | articlesslug == ADA-attention
317 | articlestitle == Does This Gene Influence Your Sleep Quality And Attention Span? (ADA)
317 | articlesmeta_description == ADA gene variants may be affecting your attention span. Read on to find out more!
317 | articlessummary == <p style="text-align:justify"><strong><em>ADA</em> variants may influence your attention span. Read on to find out the impact these variants may be having on you and what you can do to reduce it!</strong></p>
317 | articlesoverall_score_text == Your Attention Score (based on ADA gene)
317 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/ADA-Attention.jpg
317 | articlesauthorid == 13
317 | articlesauthorname == Lewis Cuthbertson
317 | articlesauthortitle == PhD
317 | articlesauthororder == 12
317 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Lewis_SelfDecode.jpg
317 | articlesauthorintro == <p><strong>Lewis completed his PhD in Molecular Microbiology at Northumbria University (UK).</strong></p>    <p>Lewis spent several years researching the biodiversity of bacterial communities in the Arctic and Antarctic, whilst also performing research for a DNA sequencing service, where he was involved in several health based microbiome studies. This gave him an insight into how the highly diverse and invisible to the naked eye portion of human health, can potentially impact an individual&rsquo;s quality of life, driving his desire to help others understand their own complex health needs through the most current scientific research.<br />  &nbsp;</p>
317 | articlesreviewer == None
317 | articlesmedical_reviewerid == 11
317 | articlesmedical_reviewername == Puya Yazdi
317 | articlesmedical_reviewertitle == MD
317 | articlespublish_date == 2020
317 | articlespublish_date == 9
317 | articlespublish_date == 8
317 | articlesavg_rating == 5.0
317 | articlestagsid == 690
317 | articlestagsname == ADA gene
317 | articlestagsid == 691
317 | articlestagsname == Adenosine
317 | articlestagsid == 56
317 | articlestagsname == Attention
317 | articlestagsid == 13
317 | articlestagsname == Cognition
317 | articlestagsid == 485
317 | articlestagsname == Sleep
317 | articlespermissionsfavorite == False
317 | Tags = ADA gene=690,Adenosine=691,Attention=56,Cognition=13,Sleep=485,
317 | articlespermissionsrate == False
314 | articlesid == 314
314 | articlescategoryid == 20
314 | articlescategoryorder == 17
314 | articlescategoryname == Attention
314 | articlescategorycolor == #C47AC0
314 | articlesslug == MTHFR-folate-attention
314 | articlestitle == The Link Between Folate Metabolism and Attention (MTHFR)
314 | articlesmeta_description == The MTHFR gene is crucial for folate metabolism. Click to learn about its link with attention disorders.
314 | articlessummary == <p style="text-align:justify"><strong>The MTHFR gene helps produce a crucial enzyme in folate metabolism. Read on to learn the link between this gene, your diet &amp; attention disorders.</strong></p>
314 | articlesoverall_score_text == Your Attention Score (Based on MTHFR Gene)
314 | articlesimage == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/background/MTHFR-Attention.jpg
314 | articlesauthorid == 9
314 | articlesauthorname == Aleksa Ristic
314 | articlesauthortitle == MS (Pharmacy)
314 | articlesauthororder == 45
314 | articlesauthorphoto == https://sd-selfdecode-assets-prod.s3.amazonaws.com/blog/author-photo/Aleksa.jpg
314 | articlesauthorintro == <p><strong>Aleksa received his MS in Pharmacy from the University of Belgrade, his master thesis focusing on protein sources in plant-based diets.</strong>&nbsp;&nbsp;</p>    <p>Aleksa is passionate about herbal pharmacy, nutrition, and functional medicine. He found a way to merge his two biggest passions&mdash;writing and health&mdash;and use them for noble purposes. His mission is to bridge the gap between science and everyday life, helping readers improve their health and feel better.</p>
314 | articlesreviewer == None
314 | articlesmedical_reviewerid == 11
314 | articlesmedical_reviewername == Puya Yazdi
314 | articlesmedical_reviewertitle == MD
314 | articlespublish_date == 2020
314 | articlespublish_date == 9
314 | articlespublish_date == 8
314 | articlesavg_rating == 5.0
314 | articlestagsid == 30
314 | articlestagsname == ADHD
314 | articlestagsid == 56
314 | articlestagsname == Attention
314 | articlestagsid == 13
314 | articlestagsname == Cognition
314 | articlestagsid == 100
314 | articlestagsname == Folate
314 | articlestagsid == 151
314 | articlestagsname == Homocysteine
314 | articlestagsid == 36
314 | articlestagsname == MTHFR Gene
314 | articlestagsid == 294
314 | articlestagsname == Vitamin B12
314 | articlespermissionsfavorite == False
314 | Tags = ADHD=30,Attention=56,Cognition=13,Folate=100,Homocysteine=151,MTHFR Gene=36,Vitamin B12=294,
314 | articlespermissionsrate == False

*** articlesList = 351=17,332=17,328=17,329=17,330=17,327=17,326=17,325=17,324=17,323=17,322=17,321=17,320=17,319=17,318=17,317=17,314=17,
