Liu S, Ren J, Zhao Y, Han G, Hong Z, Yan D, Chen J, Gu G, Wang G, Wang X, Fan C, Li J (February 2013). "Nonthyroidal illness syndrome: is it far away from Crohn's disease?". Journal of Clinical Gastroenterology. 47 (2): 153–9. doi:10.1097/MCG.0b013e318254ea8a. PMID22874844. S2CID35344744.
Rosolowska-Huszcz D, Kozlowska L, Rydzewski A (August 2005). "Influence of low protein diet on nonthyroidal illness syndrome in chronic renal failure". Endocrine. 27 (3): 283–8. doi:10.1385/ENDO:27:3:283. PMID16230785. S2CID25630198.
Han G, Ren J, Liu S, Gu G, Ren H, Yan D, Chen J, Wang G, Zhou B, Wu X, Yuan Y, Li J (September 2013). "Nonthyroidal illness syndrome in enterocutaneous fistulas". American Journal of Surgery. 206 (3): 386–92. doi:10.1016/j.amjsurg.2012.12.011. PMID23809674.
Krysiak R, Szkróbka W, Okopień B (October 2018). "The effect of vitamin D and selenomethionine on thyroid antibody titers, hypothalamic-pituitary-thyroid axis activity and thyroid function tests in men with Hashimoto's thyroiditis: a pilot study". Pharmacological Reports. 71 (2): 243–7. doi:10.1016/j.pharep.2018.10.012. PMID30818086. S2CID73481267.
Krysiak R, Kowalcze K, Okopień B (December 2018). "Selenomethionine potentiates the impact of vitamin D on thyroid autoimmunity in euthyroid women with Hashimoto's thyroiditis and low vitamin D status". Pharmacological Reports. 71 (2): 367–73. doi:10.1016/j.pharep.2018.12.006. PMID30844687. S2CID73486105.
Krysiak R, Kowalcze K, Okopień B (20 May 2019). "The Effect of Selenomethionine on Thyroid Autoimmunity in Euthyroid Men With Hashimoto Thyroiditis and Testosterone Deficiency". Journal of Clinical Pharmacology. 59 (11): 1477–1484. doi:10.1002/jcph.1447. PMID31106856. S2CID159040151.
Dietrich JW, Ackermann A, Kasippillai A, Kanthasamy Y, Tharmalingam T, Urban A, Vasileva S, Schildhauer TA, Klein HH, Stachon A, Hering S (19 September 2019). "Adaptive Veränderungen des Schilddrüsenstoffwechsels als Risikoindikatoren bei Traumata". Trauma und Berufskrankheit. 21 (4): 260–267. doi:10.1007/s10039-019-00438-z. S2CID202673793.
Larisch R, Midgley J, Dietrich JW, Hoermann R (23 January 2024). "Effect of Radioiodine Treatment on Quality of Life in Patients with Subclinical Hyperthyroidism: A Prospective Controlled Study". Nuklearmedizin. Nuclear Medicine. 63 (3): 176–187. doi:10.1055/a-2240-8087. PMID38262472. S2CID267198748.
Wang Zixiao WZ, Yang Sijue YS, Guan Haixia GH, Wang Wei WW (2023). "甲状腺功能正常人群中甲状腺激素敏感性与肥胖表型的关系". 中华内分泌代谢杂志. 39 (5): 426–429. doi:10.3760/cma.j.cn311282-20221012-00579.
Yang L, Sun X, Tao H, Zhao Y (February 2023). "The association between thyroid homeostasis parameters and obesity in subjects with euthyroidism". Journal of Physiology and Pharmacology. 74 (1). doi:10.26402/jpp.2023.1.07. PMID37245234.
Wan S, Yang J, Gao X, Zhang L, Wang X (22 July 2020). "Nonthyroidal Illness Syndrome in Patients With Short-Bowel Syndrome". Journal of Parenteral and Enteral Nutrition. 45 (5): 973–981. doi:10.1002/jpen.1967. PMID32697347. S2CID220698496.
Liu C, Hua L, Liu K, Xin Z (16 February 2023). "Impaired sensitivity to thyroid hormone correlates to osteoporosis and fractures in euthyroid individuals". Journal of Endocrinological Investigation. 46 (10): 2017–2029. doi:10.1007/s40618-023-02035-1. PMID36795243. S2CID256899701.
Li W, He Q, Zhang H, Shu S, Wang L, Wu Y, Yuan Z, Zhou J (20 January 2023). "Thyroid-stimulating hormone within the normal reference range has a U-shaped association with the severity of coronary artery disease in nondiabetic patients but is diluted in diabetic patients". Journal of Investigative Medicine. 71 (4): 350–360. doi:10.1177/10815589221149187. PMID36680358. S2CID256055662.
Tan Y, Gao L, Yin Q, Sun Z, Man X, Du Y, Chen Y (April 2021). "Thyroid hormone levels and structural parameters of thyroid homeostasis are correlated with motor subtype and disease severity in euthyroid patients with Parkinson's disease". The International Journal of Neuroscience. 131 (4): 346–356. doi:10.1080/00207454.2020.1744595. PMID32186220. S2CID212752563.
Verelst FR, Beyens M, Vandenbroucke E, Forceville K, Th B Twickler M (15 April 2022). "A decrease in peripheral thyroid hormone conversion efficiency in patients treated with immune checkpoint inhibitors and L-T3 as a possible alternative therapeutic escape option". European Journal of Clinical Investigation. 52 (7): e13790. doi:10.1111/eci.13790. PMID35428986. S2CID248203797.
Yang S, Sun J, Wang S, E L, Zhang S, Jiang X (9 August 2023). "Association of exposure to polycyclic aromatic hydrocarbons with thyroid hormones in adolescents and adults, and the influence of the iodine status". Environmental Science: Processes & Impacts. 25 (9): 1449–1463. doi:10.1039/d3em00135k. PMID37555279. S2CID259916981.
Kim MJ, Kim S, Choi S, Lee I, Moon MK, Choi K, Park YJ, Cho YH, Kwon YM, Yoo J, Cheon GJ, Park J (December 2020). "Association of exposure to polycyclic aromatic hydrocarbons and heavy metals with thyroid hormones in general adult population and potential mechanisms". Science of the Total Environment. 762: 144227. doi:10.1016/j.scitotenv.2020.144227. PMID33373756. S2CID229722026.
Huang PC, Chen HC, Leung SH, Lin YJ, Huang HB, Chang WT, Huang HI, Chang JW (1 December 2023). "Associations between paraben exposure, thyroid capacity, homeostasis and pituitary thyrotropic function in the general Taiwanese: Taiwan Environmental Survey for Toxicants (TEST) 2013". Environmental Science and Pollution Research. 31 (1): 1288–1303. doi:10.1007/s11356-023-31277-y. PMID38038926. S2CID265514578.
Yu X, Liu Y, Wang M, Jia P, Yang S, Sun F, Jin Y, Wang X, Guo Z, Zhao G, Gao B (18 November 2024). "Association between per- and polyfluoroalkyl substance exposures and thyroid homeostasis parameters". The Journal of Clinical Endocrinology and Metabolism. doi:10.1210/clinem/dgae798. PMID39556482.
Ge X, He J, Lin S, Bao Y, Zheng Y, Cheng H, Cai H, Feng X, Yang W, Hu S, Wang L, Liao Q, Wang F, Liu C, Chen X, Zou Y, Yang X (16 September 2023). "Associations of metal mixtures with thyroid function and potential interactions with iodine status: results from a cross-sectional study in MEWHC". Environmental Science and Pollution Research International. 30 (48): 105665–105674. Bibcode:2023ESPR...30j5665G. doi:10.1007/s11356-023-29682-4. PMID37715904. S2CID262013667.
Ge X, He J, Lin S, Bao Y, Zheng Y, Cheng H, Cai H, Feng X, Yang W, Hu S, Wang L, Liao Q, Wang F, Liu C, Chen X, Zou Y, Yang X (16 September 2023). "Associations of metal mixtures with thyroid function and potential interactions with iodine status: results from a cross-sectional study in MEWHC". Environmental Science and Pollution Research International. 30 (48): 105665–105674. Bibcode:2023ESPR...30j5665G. doi:10.1007/s11356-023-29682-4. PMID37715904. S2CID262013667.
Liu S, Ren J, Zhao Y, Han G, Hong Z, Yan D, Chen J, Gu G, Wang G, Wang X, Fan C, Li J (February 2013). "Nonthyroidal illness syndrome: is it far away from Crohn's disease?". Journal of Clinical Gastroenterology. 47 (2): 153–9. doi:10.1097/MCG.0b013e318254ea8a. PMID22874844. S2CID35344744.
Rosolowska-Huszcz D, Kozlowska L, Rydzewski A (August 2005). "Influence of low protein diet on nonthyroidal illness syndrome in chronic renal failure". Endocrine. 27 (3): 283–8. doi:10.1385/ENDO:27:3:283. PMID16230785. S2CID25630198.
Han G, Ren J, Liu S, Gu G, Ren H, Yan D, Chen J, Wang G, Zhou B, Wu X, Yuan Y, Li J (September 2013). "Nonthyroidal illness syndrome in enterocutaneous fistulas". American Journal of Surgery. 206 (3): 386–92. doi:10.1016/j.amjsurg.2012.12.011. PMID23809674.
Krysiak R, Szkróbka W, Okopień B (October 2018). "The effect of vitamin D and selenomethionine on thyroid antibody titers, hypothalamic-pituitary-thyroid axis activity and thyroid function tests in men with Hashimoto's thyroiditis: a pilot study". Pharmacological Reports. 71 (2): 243–7. doi:10.1016/j.pharep.2018.10.012. PMID30818086. S2CID73481267.
Krysiak R, Kowalcze K, Okopień B (December 2018). "Selenomethionine potentiates the impact of vitamin D on thyroid autoimmunity in euthyroid women with Hashimoto's thyroiditis and low vitamin D status". Pharmacological Reports. 71 (2): 367–73. doi:10.1016/j.pharep.2018.12.006. PMID30844687. S2CID73486105.
Krysiak R, Kowalcze K, Okopień B (20 May 2019). "The Effect of Selenomethionine on Thyroid Autoimmunity in Euthyroid Men With Hashimoto Thyroiditis and Testosterone Deficiency". Journal of Clinical Pharmacology. 59 (11): 1477–1484. doi:10.1002/jcph.1447. PMID31106856. S2CID159040151.
Larisch R, Midgley J, Dietrich JW, Hoermann R (23 January 2024). "Effect of Radioiodine Treatment on Quality of Life in Patients with Subclinical Hyperthyroidism: A Prospective Controlled Study". Nuklearmedizin. Nuclear Medicine. 63 (3): 176–187. doi:10.1055/a-2240-8087. PMID38262472. S2CID267198748.
Yang L, Sun X, Tao H, Zhao Y (February 2023). "The association between thyroid homeostasis parameters and obesity in subjects with euthyroidism". Journal of Physiology and Pharmacology. 74 (1). doi:10.26402/jpp.2023.1.07. PMID37245234.
Wan S, Yang J, Gao X, Zhang L, Wang X (22 July 2020). "Nonthyroidal Illness Syndrome in Patients With Short-Bowel Syndrome". Journal of Parenteral and Enteral Nutrition. 45 (5): 973–981. doi:10.1002/jpen.1967. PMID32697347. S2CID220698496.
Liu C, Hua L, Liu K, Xin Z (16 February 2023). "Impaired sensitivity to thyroid hormone correlates to osteoporosis and fractures in euthyroid individuals". Journal of Endocrinological Investigation. 46 (10): 2017–2029. doi:10.1007/s40618-023-02035-1. PMID36795243. S2CID256899701.
Li W, He Q, Zhang H, Shu S, Wang L, Wu Y, Yuan Z, Zhou J (20 January 2023). "Thyroid-stimulating hormone within the normal reference range has a U-shaped association with the severity of coronary artery disease in nondiabetic patients but is diluted in diabetic patients". Journal of Investigative Medicine. 71 (4): 350–360. doi:10.1177/10815589221149187. PMID36680358. S2CID256055662.
Tan Y, Gao L, Yin Q, Sun Z, Man X, Du Y, Chen Y (April 2021). "Thyroid hormone levels and structural parameters of thyroid homeostasis are correlated with motor subtype and disease severity in euthyroid patients with Parkinson's disease". The International Journal of Neuroscience. 131 (4): 346–356. doi:10.1080/00207454.2020.1744595. PMID32186220. S2CID212752563.
Verelst FR, Beyens M, Vandenbroucke E, Forceville K, Th B Twickler M (15 April 2022). "A decrease in peripheral thyroid hormone conversion efficiency in patients treated with immune checkpoint inhibitors and L-T3 as a possible alternative therapeutic escape option". European Journal of Clinical Investigation. 52 (7): e13790. doi:10.1111/eci.13790. PMID35428986. S2CID248203797.
Yang S, Sun J, Wang S, E L, Zhang S, Jiang X (9 August 2023). "Association of exposure to polycyclic aromatic hydrocarbons with thyroid hormones in adolescents and adults, and the influence of the iodine status". Environmental Science: Processes & Impacts. 25 (9): 1449–1463. doi:10.1039/d3em00135k. PMID37555279. S2CID259916981.
Kim MJ, Kim S, Choi S, Lee I, Moon MK, Choi K, Park YJ, Cho YH, Kwon YM, Yoo J, Cheon GJ, Park J (December 2020). "Association of exposure to polycyclic aromatic hydrocarbons and heavy metals with thyroid hormones in general adult population and potential mechanisms". Science of the Total Environment. 762: 144227. doi:10.1016/j.scitotenv.2020.144227. PMID33373756. S2CID229722026.
Huang PC, Chen HC, Leung SH, Lin YJ, Huang HB, Chang WT, Huang HI, Chang JW (1 December 2023). "Associations between paraben exposure, thyroid capacity, homeostasis and pituitary thyrotropic function in the general Taiwanese: Taiwan Environmental Survey for Toxicants (TEST) 2013". Environmental Science and Pollution Research. 31 (1): 1288–1303. doi:10.1007/s11356-023-31277-y. PMID38038926. S2CID265514578.
Yu X, Liu Y, Wang M, Jia P, Yang S, Sun F, Jin Y, Wang X, Guo Z, Zhao G, Gao B (18 November 2024). "Association between per- and polyfluoroalkyl substance exposures and thyroid homeostasis parameters". The Journal of Clinical Endocrinology and Metabolism. doi:10.1210/clinem/dgae798. PMID39556482.
Ge X, He J, Lin S, Bao Y, Zheng Y, Cheng H, Cai H, Feng X, Yang W, Hu S, Wang L, Liao Q, Wang F, Liu C, Chen X, Zou Y, Yang X (16 September 2023). "Associations of metal mixtures with thyroid function and potential interactions with iodine status: results from a cross-sectional study in MEWHC". Environmental Science and Pollution Research International. 30 (48): 105665–105674. Bibcode:2023ESPR...30j5665G. doi:10.1007/s11356-023-29682-4. PMID37715904. S2CID262013667.
Liu S, Ren J, Zhao Y, Han G, Hong Z, Yan D, Chen J, Gu G, Wang G, Wang X, Fan C, Li J (February 2013). "Nonthyroidal illness syndrome: is it far away from Crohn's disease?". Journal of Clinical Gastroenterology. 47 (2): 153–9. doi:10.1097/MCG.0b013e318254ea8a. PMID22874844. S2CID35344744.
Krysiak R, Szkróbka W, Okopień B (October 2018). "The effect of vitamin D and selenomethionine on thyroid antibody titers, hypothalamic-pituitary-thyroid axis activity and thyroid function tests in men with Hashimoto's thyroiditis: a pilot study". Pharmacological Reports. 71 (2): 243–7. doi:10.1016/j.pharep.2018.10.012. PMID30818086. S2CID73481267.
Krysiak R, Kowalcze K, Okopień B (December 2018). "Selenomethionine potentiates the impact of vitamin D on thyroid autoimmunity in euthyroid women with Hashimoto's thyroiditis and low vitamin D status". Pharmacological Reports. 71 (2): 367–73. doi:10.1016/j.pharep.2018.12.006. PMID30844687. S2CID73486105.
Krysiak R, Kowalcze K, Okopień B (20 May 2019). "The Effect of Selenomethionine on Thyroid Autoimmunity in Euthyroid Men With Hashimoto Thyroiditis and Testosterone Deficiency". Journal of Clinical Pharmacology. 59 (11): 1477–1484. doi:10.1002/jcph.1447. PMID31106856. S2CID159040151.
Dietrich JW, Ackermann A, Kasippillai A, Kanthasamy Y, Tharmalingam T, Urban A, Vasileva S, Schildhauer TA, Klein HH, Stachon A, Hering S (19 September 2019). "Adaptive Veränderungen des Schilddrüsenstoffwechsels als Risikoindikatoren bei Traumata". Trauma und Berufskrankheit. 21 (4): 260–267. doi:10.1007/s10039-019-00438-z. S2CID202673793.
Larisch R, Midgley J, Dietrich JW, Hoermann R (23 January 2024). "Effect of Radioiodine Treatment on Quality of Life in Patients with Subclinical Hyperthyroidism: A Prospective Controlled Study". Nuklearmedizin. Nuclear Medicine. 63 (3): 176–187. doi:10.1055/a-2240-8087. PMID38262472. S2CID267198748.
Wan S, Yang J, Gao X, Zhang L, Wang X (22 July 2020). "Nonthyroidal Illness Syndrome in Patients With Short-Bowel Syndrome". Journal of Parenteral and Enteral Nutrition. 45 (5): 973–981. doi:10.1002/jpen.1967. PMID32697347. S2CID220698496.
Liu C, Hua L, Liu K, Xin Z (16 February 2023). "Impaired sensitivity to thyroid hormone correlates to osteoporosis and fractures in euthyroid individuals". Journal of Endocrinological Investigation. 46 (10): 2017–2029. doi:10.1007/s40618-023-02035-1. PMID36795243. S2CID256899701.
Li W, He Q, Zhang H, Shu S, Wang L, Wu Y, Yuan Z, Zhou J (20 January 2023). "Thyroid-stimulating hormone within the normal reference range has a U-shaped association with the severity of coronary artery disease in nondiabetic patients but is diluted in diabetic patients". Journal of Investigative Medicine. 71 (4): 350–360. doi:10.1177/10815589221149187. PMID36680358. S2CID256055662.
Tan Y, Gao L, Yin Q, Sun Z, Man X, Du Y, Chen Y (April 2021). "Thyroid hormone levels and structural parameters of thyroid homeostasis are correlated with motor subtype and disease severity in euthyroid patients with Parkinson's disease". The International Journal of Neuroscience. 131 (4): 346–356. doi:10.1080/00207454.2020.1744595. PMID32186220. S2CID212752563.
Verelst FR, Beyens M, Vandenbroucke E, Forceville K, Th B Twickler M (15 April 2022). "A decrease in peripheral thyroid hormone conversion efficiency in patients treated with immune checkpoint inhibitors and L-T3 as a possible alternative therapeutic escape option". European Journal of Clinical Investigation. 52 (7): e13790. doi:10.1111/eci.13790. PMID35428986. S2CID248203797.
Yang S, Sun J, Wang S, E L, Zhang S, Jiang X (9 August 2023). "Association of exposure to polycyclic aromatic hydrocarbons with thyroid hormones in adolescents and adults, and the influence of the iodine status". Environmental Science: Processes & Impacts. 25 (9): 1449–1463. doi:10.1039/d3em00135k. PMID37555279. S2CID259916981.
Kim MJ, Kim S, Choi S, Lee I, Moon MK, Choi K, Park YJ, Cho YH, Kwon YM, Yoo J, Cheon GJ, Park J (December 2020). "Association of exposure to polycyclic aromatic hydrocarbons and heavy metals with thyroid hormones in general adult population and potential mechanisms". Science of the Total Environment. 762: 144227. doi:10.1016/j.scitotenv.2020.144227. PMID33373756. S2CID229722026.
Huang PC, Chen HC, Leung SH, Lin YJ, Huang HB, Chang WT, Huang HI, Chang JW (1 December 2023). "Associations between paraben exposure, thyroid capacity, homeostasis and pituitary thyrotropic function in the general Taiwanese: Taiwan Environmental Survey for Toxicants (TEST) 2013". Environmental Science and Pollution Research. 31 (1): 1288–1303. doi:10.1007/s11356-023-31277-y. PMID38038926. S2CID265514578.
Ge X, He J, Lin S, Bao Y, Zheng Y, Cheng H, Cai H, Feng X, Yang W, Hu S, Wang L, Liao Q, Wang F, Liu C, Chen X, Zou Y, Yang X (16 September 2023). "Associations of metal mixtures with thyroid function and potential interactions with iodine status: results from a cross-sectional study in MEWHC". Environmental Science and Pollution Research International. 30 (48): 105665–105674. Bibcode:2023ESPR...30j5665G. doi:10.1007/s11356-023-29682-4. PMID37715904. S2CID262013667.