“Serum testosterone in women as measured by an automated immunoassay and a RIA”. Clinical Chemistry50 (3): 678; author reply 678–9. (Mar 2004). doi:10.1373/clinchem.2003.027565. PMID14981046.
“Mean plasma concentration, metabolic clearance and basal plasma production rates of testosterone in normal young men and women using a constant infusion procedure: effect of time of day and plasma concentration on the metabolic clearance rate of testosterone”. The Journal of Clinical Endocrinology & Metabolism27 (5): 686–94. (May 1967). doi:10.1210/jcem-27-5-686. PMID6025472.
“Plasma production rates of testosterone in normal adult men and women and in patients with the syndrome of feminizing testes”. The Journal of Clinical Endocrinology & Metabolism25 (11): 1441–50. (Nov 1965). doi:10.1210/jcem-25-11-1441. PMID5843701.
“Androgen and psychosexual development: core gender identity, sexual orientation and recalled childhood gender role behavior in women and men with congenital adrenal hyperplasia (CAH)”. Journal of Sex Research41 (1): 75–81. (February 2004). doi:10.1080/00224490409552215. PMID15216426.
“Evidence of testicular activity in early infancy”. The Journal of Clinical Endocrinology & Metabolism37 (1): 148–51. (Jul 1973). doi:10.1210/jcem-37-1-148. PMID4715291.
“The neonatal testosterone surge: a comparative study”. Archives Internationales de Physiologie, de Biochimie et de Biophysique100 (2): 127–31. (1992). doi:10.3109/13813459209035274. PMID1379488.
“Neonatal stimulation of 5-HT(2) receptors reduces androgen receptor expression in the rat anteroventral periventricular nucleus and sexually dimorphic preoptic area”. The European Journal of Neuroscience27 (9): 2473–80. (May 2008). doi:10.1111/j.1460-9568.2008.06216.x. PMID18445234.
“Shifting the paradigm of testosterone and prostate cancer: the saturation model and the limits of androgen-dependent growth”. European Urology55 (2): 310–20. (Feb 2009). doi:10.1016/j.eururo.2008.09.024. PMID18838208.
“Testosterone and cardiovascular risk in men: a systematic review and meta-analysis of randomized placebo-controlled trials”. Mayo Clinic Proceedings82 (1): 29–39. (Jan 2007). doi:10.4065/82.1.29. PMID17285783.
“Studies on the relationship between plasma testosterone levels and human sexual activity”. The Journal of Endocrinology52 (1): 51–8. (Jan 1972). doi:10.1677/joe.0.0520051. PMID5061159.
“Comparing the relative amount of testosterone required to restore sexual arousal, motivation, and performance in male rats”. Hormones and Behavior59 (5): 666–73. (May 2011). doi:10.1016/j.yhbeh.2010.09.009. PMID20920505.
“Sexually stimulated testosterone release in male mice (Mus musculus): roles of genotype and sexual arousal”. Hormones and Behavior50 (3): 424–31. (Sep 2006). doi:10.1016/j.yhbeh.2006.05.004. PMID16828762.
“Sex and context: hormones and primate sexual motivation”. Hormones and Behavior40 (2): 339–57. (Sep 2001). doi:10.1006/hbeh.2001.1696. PMID11534996.
“Role of testosterone secretion and penile reflexes in sexual behavior and sperm competition in male rats: a theoretical contribution”. Physiology & Behavior31 (6): 823–27. (Dec 1983). doi:10.1016/0031-9384(83)90279-2. PMID6665072.
“Orgasmic frequency and plasma testosterone levels in normal human males”. Archives of Sexual Behavior5 (2): 125–32. (Mar 1976). doi:10.1007/BF01541869. PMID1275688.
“Behavioral and hormonal responses of men to brief interactions with women”. Evolution and Human Behavior24 (6): 365–75. (2003). doi:10.1016/S1090-5138(03)00053-9.
“Psychosexual stimulation and plasma testosterone in man”. Archives of Sexual Behavior3 (6): 577–84. (Nov 1974). doi:10.1007/BF01541140. PMID4429441.
“Endocrine, psychological and genital response to sexual arousal in men”. Psychoneuroendocrinology12 (2): 149–58. (1987). doi:10.1016/0306-4530(87)90045-X. PMID3602262.
“Adaptations to Ovulation: Implications for Sexual and Social Behavior”. Current Directions in Psychological Science14 (6): 312–16. (2005). doi:10.1111/j.0963-7214.2005.00388.x.
“Role of androgens in female genital sexual arousal: receptor expression, structure, and function”. Fertility and Sterility77 Suppl 4: S11–8. (Apr 2002). doi:10.1016/s0015-0282(02)02978-3. PMID12007897.
“Time course of effects of testosterone administration on sexual arousal in women”. Archives of General Psychiatry57 (2): 149–53; discussion 155–6. (Feb 2000). doi:10.1001/archpsyc.57.2.149. PMID10665617.
“Testosterone therapy in women: a review”. International Journal of Impotence Research17 (5): 399–408. (2005). doi:10.1038/sj.ijir.3901334. PMID15889125.
“Relationship status and testosterone in North American heterosexual and non-heterosexual men and women: cross-sectional and longitudinal data”. Psychoneuroendocrinology31 (6): 715–23. (Jul 2006). doi:10.1016/j.psyneuen.2006.01.008. hdl:2027.42/83924. PMID16621328.
“Testosterone and Men's Marriages”. Social Forces72 (2): 463–77. (1993). doi:10.1093/sf/72.2.463.
“Marriage, Divorce, and Male Testosterone”. Social Forces77 (1): 315–30. (1998). doi:10.1093/sf/77.1.315.
“Social variables predict between-subject but not day-to-day variation in the testosterone of US men”. Psychoneuroendocrinology29 (9): 1153–62. (Oct 2004). doi:10.1016/j.psyneuen.2004.01.008. PMID15219639.
“Testosterone levels in women and men who are single, in long-distance relationships, or same-city relationships”. Hormones and Behavior51 (2): 286–91. (Feb 2007). doi:10.1016/j.yhbeh.2006.11.005. PMID17196592.
“Male Life History, Reproductive Effort, and the Evolution of the Genus Homo”. Current Anthropology53 (S6): S424–S435. (December 2012). doi:10.1086/667538.
“When mothers need others: The impact of hominin life history evolution on cooperative breeding”. Journal of Human Evolution84: 16–24. (July 2015). doi:10.1016/j.jhevol.2015.01.009. PMID25843884.
“Applying socioendocrinology to evolutionary models: fatherhood and physiology”. Evolutionary Anthropology23 (4): 146–60. (2014-07-08). doi:10.1002/evan.21412. PMID25116846.
“Finger length ratio (2D:4D) correlates with physical aggression in men but not in women”. Biological Psychology68 (3): 215–22. (Mar 2005). doi:10.1016/j.biopsycho.2004.05.001. PMID15620791.
“Digit length ratios predict reactive aggression in women, but not in men”. Hormones and Behavior46 (5): 558–64. (Dec 2004). doi:10.1016/j.yhbeh.2004.06.004. PMID15555497.
“Digit ratio (2D:4D), aggression, and dominance in the Hadza and the Datoga of Tanzania”. American Journal of Human Biology27 (5): 620–27. (2015-10-01). doi:10.1002/ajhb.22718. PMID25824265.
“Second to fourth digit ratio confirms aggressive tendencies in patients with boxers fractures”. Injury44 (11): 1636–39. (Nov 2013). doi:10.1016/j.injury.2013.07.018. PMID23972912.
“Guns, testosterone, and aggression: an experimental test of a mediational hypothesis”. Psychological Science17 (7): 568–71. (Jul 2006). doi:10.1111/j.1467-9280.2006.01745.x. PMID16866740.
“Testosterone, 5 alpha-dihydrotestosterone and cortisol in men with and without alcohol-related aggression”. Journal of Studies on Alcohol63 (5): 518–26. (Sep 2002). doi:10.15288/jsa.2002.63.518. PMID12380846.
“Estrogen or testosterone increases self-reported aggressive behaviors in hypogonadal adolescents”. The Journal of Clinical Endocrinology & Metabolism82 (8): 2433–38. (1997). doi:10.1210/jcem.82.8.4165. PMID9253313.
“Novel mechanisms for neuroendocrine regulation of aggression”. Frontiers in Neuroendocrinology29 (4): 476–89. (Oct 2008). doi:10.1016/j.yfrne.2007.12.003. PMID18280561.
“Acute and chronic effects of an aromatase inhibitor on territorial aggression in breeding and nonbreeding male song sparrows”. Journal of Comparative Physiology A186 (7–8): 759–69. (2000). doi:10.1007/s003590000129. PMID11016791.
“Marked loss of myelinated nerve fibers in the human brain with age”. The Journal of Comparative Neurology462 (2): 144–52. (Jul 2003). doi:10.1002/cne.10714. PMID12794739.
“The effects of supraphysiologic doses of testosterone on muscle size and strength in normal men”. The New England Journal of Medicine335 (1): 1–7. (Jul 1996). doi:10.1056/NEJM199607043350101. PMID8637535.
“Low free testosterone is an independent risk factor for Alzheimer's disease”. Experimental Gerontology39 (11–12): 1633–39. (2004). doi:10.1016/j.exger.2004.06.019. PMID15582279.
“Free testosterone and risk for Alzheimer disease in older men”. Neurology62 (2): 188–93. (Jan 2004). doi:10.1212/WNL.62.2.188. PMID14745052.
“A curvilinear relationship between testosterone and spatial cognition in humans: possible influence of hand preference”. Psychoneuroendocrinology21 (3): 323–37. (Apr 1996). doi:10.1016/0306-4530(95)00051-8. PMID8817730.
“The effect of testosterone on thyroid autoimmunity in euthyroid men with Hashimoto's thyroiditis and low testosterone levels”. Journal of Clinical Pharmacy and Therapeutics44 (5): 742–749. (October 2019). doi:10.1111/jcpt.12987. PMID31183891.
“Complexities of androgen action”. Journal of the American Academy of Dermatology45 (3 Suppl): S87–94. (Sep 2001). doi:10.1067/mjd.2001.117429. PMID11511858.
“Inhibition of androgen receptor binding by natural and synthetic steroids in cultured human genital skin fibroblasts”. Klinische Wochenschrift64 (16): 732–37. (Aug 1986). doi:10.1007/BF01734339. PMID3762019.
“Developments in the control of testicular function”. Baillière's Clinical Endocrinology and Metabolism6 (2): 451–83. (Apr 1992). doi:10.1016/S0950-351X(05)80158-2. PMID1377467.
“Testosterone physiology in resistance exercise and training: the up-stream regulatory elements”. Sports Medicine40 (12): 1037–53. (2010). doi:10.2165/11536910-000000000-00000. PMID21058750.
“Androgen receptors and testosterone in men—effects of protein ingestion, resistance exercise and fiber type”. The Journal of Steroid Biochemistry and Molecular Biology110 (1–2): 130–37. (May 2008). doi:10.1016/j.jsbmb.2008.03.030. PMID18455389.
“Testosterone and endurance exercise: development of the "exercise-hypogonadal male condition"”. Acta Physiologica Hungarica92 (2): 121–37. (2005). doi:10.1556/APhysiol.92.2005.2.3. PMID16268050.
“Regulation and perturbation of testicular functions by vitamin A”. Reproduction124 (2): 173–80. (Aug 2002). doi:10.1530/rep.0.1240173. PMID12141930.
“Effect of vitamin D supplementation on testosterone levels in men”. Hormone and Metabolic Research = Hormon- und Stoffwechselforschung = Hormones et Métabolisme43 (3): 223–25. (Mar 2011). doi:10.1055/s-0030-1269854. PMID21154195.
“Serum testosterone and urinary excretion of steroid hormone metabolites after administration of a high-dose zinc supplement”. European Journal of Clinical Nutrition63 (1): 65–70. (Jan 2009). doi:10.1038/sj.ejcn.1602899. PMID17882141.
“The impact of body mass index on semen parameters and reproductive hormones in human males: a systematic review with meta-analysis”. Human Reproduction Update16 (3): 293–311. (2010). doi:10.1093/humupd/dmp047. PMID19889752.
“The effects of testosterone on sleep and sleep-disordered breathing in men: its bidirectional interaction with erectile function”. Sleep Medicine Reviews12 (5): 365–79. (Oct 2008). doi:10.1016/j.smrv.2007.12.003. PMID18519168.
“Effect of spearmint (Mentha spicata Labiatae) teas on androgen levels in women with hirsutism”. Phytotherapy Research21 (5): 444–47. (May 2007). doi:10.1002/ptr.2074. PMID17310494.
“Spearmint induced hypothalamic oxidative stress and testicular anti-androgenicity in male rats - altered levels of gene expression, enzymes and hormones”. Food and Chemical Toxicology46 (12): 3563–70. (Dec 2008). doi:10.1016/j.fct.2008.08.027. PMID18804513.
“Spearmint herbal tea has significant anti-androgen effects in polycystic ovarian syndrome. A randomized controlled trial”. Phytotherapy Research24 (2): 186–88. (Feb 2010). doi:10.1002/ptr.2900. PMID19585478.
“History of the endocrine effects of licorice”. Experimental and Clinical Endocrinology & Diabetes110 (6): 257–61. (Sep 2002). doi:10.1055/s-2002-34587. PMID12373628.
“Non-sex hormone-binding globulin-bound testosterone as a marker for hyperandrogenism”. The Journal of Clinical Endocrinology & Metabolism61 (5): 873–6. (November 1985). doi:10.1210/jcem-61-5-873. PMID4044776.
“Transport of steroid hormones: binding of 21 endogenous steroids to both testosterone-binding globulin and corticosteroid-binding globulin in human plasma”. J. Clin. Endocrinol. Metab.53 (1): 58–68. (July 1981). doi:10.1210/jcem-53-1-58. PMID7195404.
“Role of 5 alpha-reductase in health and disease”. Baillière's Clinical Endocrinology and Metabolism8 (2): 405–31. (Apr 1994). doi:10.1016/S0950-351X(05)80259-9. PMID8092979.
“The essential role of the aromatase/p450arom”. Seminars in Reproductive Medicine20 (3): 277–84. (Aug 2002). doi:10.1055/s-2002-35374. PMID12428207.
“Different patterns of metabolism determine the relative anabolic activity of 19-norandrogens”. J. Steroid Biochem. Mol. Biol.53 (1–6): 253–7. (1995). doi:10.1016/0960-0760(95)00056-6. PMID7626464.
“Utilization of commercial laboratory results in management of hyperandrogenism in women”. Endocr Pract4 (1): 1–10. (1998). doi:10.4158/EP.4.1.1. PMID15251757.
“Über krystallinisches mannliches Hormon aus Hoden (Testosteron) wirksamer als aus harn oder aus Cholesterin bereitetes Androsteron [On crystalline male hormone from testicles (testosterone) effective as from urine or from cholesterol]” (ドイツ語). Hoppe-Seyler's Z Physiol Chem233 (5–6): 281–83. (May 1935). doi:10.1515/bchm2.1935.233.5-6.281.
“Umwandlung des Dehydroandrosterons in Androstendiol und Testosterone; ein Weg zur Darstellung des Testosterons aus Cholestrin [About Testosterone. Conversion of Dehydro-androsterons into androstendiol and testosterone; a way for the structure assignment of testosterone from cholesterol]” (ドイツ語). Hoppe-Seyler's Z Physiol Chem237 (2): 89–97. (1935). doi:10.1515/bchm2.1935.237.1-3.89.
“Uber die Umwandlung des Dehydroandrosterons in Androstenol-(17)-one-(3) (Testosterone); um Weg zur Darstellung des Testosterons auf Cholesterin (Vorlauf Mitteilung). [The conversion of dehydroandrosterone into androstenol-(17)-one-3 (testosterone); a method for the production of testosterone from cholesterol (preliminary communication)]” (ドイツ語). Chemische Berichte68 (9): 1859–62. (1935). doi:10.1002/cber.19350680937.
“Uber die kristallinische Herstellung des Testikelhormons, Testosteron (Androsten-3-ol-17-ol) [The crystalline production of the testicle hormone, testosterone (Androsten-3-ol-17-ol)]” (ドイツ語). Helvetica Chimica Acta18: 1264–75. (1935). doi:10.1002/hlca.193501801176.
“A comparative study of the metabolic effects of testosterone propionate in normal men and women and in eunuchoidism”. Endocrinology26 (1): 26–45. (February 1940). doi:10.1210/Endo-26-1-26.
“Ecdysteroids: the overlooked sex steroids of insects? Males: the black box”. Insect Science13 (5): 325–338. (October 2006). doi:10.1111/j.1744-7917.2006.00101.x.
“Estrogens in insects”. Journal Cellular and Molecular Life Sciences40 (9): 942–44. (September 1984). doi:10.1007/BF01946450.
drugs.com
“Testosterone”. Drugs.com. American Society of Health-System Pharmacists (December 4, 2015). August 20, 2016時点のオリジナルよりアーカイブ。3 September 2016閲覧。
“Relationship status and testosterone in North American heterosexual and non-heterosexual men and women: cross-sectional and longitudinal data”. Psychoneuroendocrinology31 (6): 715–23. (Jul 2006). doi:10.1016/j.psyneuen.2006.01.008. hdl:2027.42/83924. PMID16621328.
“Serum testosterone in women as measured by an automated immunoassay and a RIA”. Clinical Chemistry50 (3): 678; author reply 678–9. (Mar 2004). doi:10.1373/clinchem.2003.027565. PMID14981046.
“Mean plasma concentration, metabolic clearance and basal plasma production rates of testosterone in normal young men and women using a constant infusion procedure: effect of time of day and plasma concentration on the metabolic clearance rate of testosterone”. The Journal of Clinical Endocrinology & Metabolism27 (5): 686–94. (May 1967). doi:10.1210/jcem-27-5-686. PMID6025472.
“Plasma production rates of testosterone in normal adult men and women and in patients with the syndrome of feminizing testes”. The Journal of Clinical Endocrinology & Metabolism25 (11): 1441–50. (Nov 1965). doi:10.1210/jcem-25-11-1441. PMID5843701.
“Sexual differentiation of the human brain in relation to gender identity and sexual orientation”. Functional Neurology24 (1): 17–28. (2009). PMID19403051.
“Androgen and psychosexual development: core gender identity, sexual orientation and recalled childhood gender role behavior in women and men with congenital adrenal hyperplasia (CAH)”. Journal of Sex Research41 (1): 75–81. (February 2004). doi:10.1080/00224490409552215. PMID15216426.
“Evidence of testicular activity in early infancy”. The Journal of Clinical Endocrinology & Metabolism37 (1): 148–51. (Jul 1973). doi:10.1210/jcem-37-1-148. PMID4715291.
“The neonatal testosterone surge: a comparative study”. Archives Internationales de Physiologie, de Biochimie et de Biophysique100 (2): 127–31. (1992). doi:10.3109/13813459209035274. PMID1379488.
“Neonatal stimulation of 5-HT(2) receptors reduces androgen receptor expression in the rat anteroventral periventricular nucleus and sexually dimorphic preoptic area”. The European Journal of Neuroscience27 (9): 2473–80. (May 2008). doi:10.1111/j.1460-9568.2008.06216.x. PMID18445234.
“Shifting the paradigm of testosterone and prostate cancer: the saturation model and the limits of androgen-dependent growth”. European Urology55 (2): 310–20. (Feb 2009). doi:10.1016/j.eururo.2008.09.024. PMID18838208.
“Testosterone and cardiovascular risk in men: a systematic review and meta-analysis of randomized placebo-controlled trials”. Mayo Clinic Proceedings82 (1): 29–39. (Jan 2007). doi:10.4065/82.1.29. PMID17285783.
“Studies on the relationship between plasma testosterone levels and human sexual activity”. The Journal of Endocrinology52 (1): 51–8. (Jan 1972). doi:10.1677/joe.0.0520051. PMID5061159.
“Comparing the relative amount of testosterone required to restore sexual arousal, motivation, and performance in male rats”. Hormones and Behavior59 (5): 666–73. (May 2011). doi:10.1016/j.yhbeh.2010.09.009. PMID20920505.
“Sexually stimulated testosterone release in male mice (Mus musculus): roles of genotype and sexual arousal”. Hormones and Behavior50 (3): 424–31. (Sep 2006). doi:10.1016/j.yhbeh.2006.05.004. PMID16828762.
“Sex and context: hormones and primate sexual motivation”. Hormones and Behavior40 (2): 339–57. (Sep 2001). doi:10.1006/hbeh.2001.1696. PMID11534996.
“Role of testosterone secretion and penile reflexes in sexual behavior and sperm competition in male rats: a theoretical contribution”. Physiology & Behavior31 (6): 823–27. (Dec 1983). doi:10.1016/0031-9384(83)90279-2. PMID6665072.
“Orgasmic frequency and plasma testosterone levels in normal human males”. Archives of Sexual Behavior5 (2): 125–32. (Mar 1976). doi:10.1007/BF01541869. PMID1275688.
“Psychosexual stimulation and plasma testosterone in man”. Archives of Sexual Behavior3 (6): 577–84. (Nov 1974). doi:10.1007/BF01541140. PMID4429441.
“Endocrine, psychological and genital response to sexual arousal in men”. Psychoneuroendocrinology12 (2): 149–58. (1987). doi:10.1016/0306-4530(87)90045-X. PMID3602262.
“Role of androgens in female genital sexual arousal: receptor expression, structure, and function”. Fertility and Sterility77 Suppl 4: S11–8. (Apr 2002). doi:10.1016/s0015-0282(02)02978-3. PMID12007897.
“Time course of effects of testosterone administration on sexual arousal in women”. Archives of General Psychiatry57 (2): 149–53; discussion 155–6. (Feb 2000). doi:10.1001/archpsyc.57.2.149. PMID10665617.
“Testosterone therapy in women: a review”. International Journal of Impotence Research17 (5): 399–408. (2005). doi:10.1038/sj.ijir.3901334. PMID15889125.
“Relationship status and testosterone in North American heterosexual and non-heterosexual men and women: cross-sectional and longitudinal data”. Psychoneuroendocrinology31 (6): 715–23. (Jul 2006). doi:10.1016/j.psyneuen.2006.01.008. hdl:2027.42/83924. PMID16621328.
“Social variables predict between-subject but not day-to-day variation in the testosterone of US men”. Psychoneuroendocrinology29 (9): 1153–62. (Oct 2004). doi:10.1016/j.psyneuen.2004.01.008. PMID15219639.
“Testosterone levels in women and men who are single, in long-distance relationships, or same-city relationships”. Hormones and Behavior51 (2): 286–91. (Feb 2007). doi:10.1016/j.yhbeh.2006.11.005. PMID17196592.
“When mothers need others: The impact of hominin life history evolution on cooperative breeding”. Journal of Human Evolution84: 16–24. (July 2015). doi:10.1016/j.jhevol.2015.01.009. PMID25843884.
“Applying socioendocrinology to evolutionary models: fatherhood and physiology”. Evolutionary Anthropology23 (4): 146–60. (2014-07-08). doi:10.1002/evan.21412. PMID25116846.
“Finger length ratio (2D:4D) correlates with physical aggression in men but not in women”. Biological Psychology68 (3): 215–22. (Mar 2005). doi:10.1016/j.biopsycho.2004.05.001. PMID15620791.
“Digit length ratios predict reactive aggression in women, but not in men”. Hormones and Behavior46 (5): 558–64. (Dec 2004). doi:10.1016/j.yhbeh.2004.06.004. PMID15555497.
“Digit ratio (2D:4D), aggression, and dominance in the Hadza and the Datoga of Tanzania”. American Journal of Human Biology27 (5): 620–27. (2015-10-01). doi:10.1002/ajhb.22718. PMID25824265.
“Second to fourth digit ratio confirms aggressive tendencies in patients with boxers fractures”. Injury44 (11): 1636–39. (Nov 2013). doi:10.1016/j.injury.2013.07.018. PMID23972912.
“Guns, testosterone, and aggression: an experimental test of a mediational hypothesis”. Psychological Science17 (7): 568–71. (Jul 2006). doi:10.1111/j.1467-9280.2006.01745.x. PMID16866740.
“Testosterone, 5 alpha-dihydrotestosterone and cortisol in men with and without alcohol-related aggression”. Journal of Studies on Alcohol63 (5): 518–26. (Sep 2002). doi:10.15288/jsa.2002.63.518. PMID12380846.
“Estrogen or testosterone increases self-reported aggressive behaviors in hypogonadal adolescents”. The Journal of Clinical Endocrinology & Metabolism82 (8): 2433–38. (1997). doi:10.1210/jcem.82.8.4165. PMID9253313.
“Novel mechanisms for neuroendocrine regulation of aggression”. Frontiers in Neuroendocrinology29 (4): 476–89. (Oct 2008). doi:10.1016/j.yfrne.2007.12.003. PMID18280561.
“Acute and chronic effects of an aromatase inhibitor on territorial aggression in breeding and nonbreeding male song sparrows”. Journal of Comparative Physiology A186 (7–8): 759–69. (2000). doi:10.1007/s003590000129. PMID11016791.
“Marked loss of myelinated nerve fibers in the human brain with age”. The Journal of Comparative Neurology462 (2): 144–52. (Jul 2003). doi:10.1002/cne.10714. PMID12794739.
“The effects of supraphysiologic doses of testosterone on muscle size and strength in normal men”. The New England Journal of Medicine335 (1): 1–7. (Jul 1996). doi:10.1056/NEJM199607043350101. PMID8637535.
“Low free testosterone is an independent risk factor for Alzheimer's disease”. Experimental Gerontology39 (11–12): 1633–39. (2004). doi:10.1016/j.exger.2004.06.019. PMID15582279.
“Free testosterone and risk for Alzheimer disease in older men”. Neurology62 (2): 188–93. (Jan 2004). doi:10.1212/WNL.62.2.188. PMID14745052.
“A curvilinear relationship between testosterone and spatial cognition in humans: possible influence of hand preference”. Psychoneuroendocrinology21 (3): 323–37. (Apr 1996). doi:10.1016/0306-4530(95)00051-8. PMID8817730.
“The effect of testosterone on thyroid autoimmunity in euthyroid men with Hashimoto's thyroiditis and low testosterone levels”. Journal of Clinical Pharmacy and Therapeutics44 (5): 742–749. (October 2019). doi:10.1111/jcpt.12987. PMID31183891.
“Complexities of androgen action”. Journal of the American Academy of Dermatology45 (3 Suppl): S87–94. (Sep 2001). doi:10.1067/mjd.2001.117429. PMID11511858.
“Inhibition of androgen receptor binding by natural and synthetic steroids in cultured human genital skin fibroblasts”. Klinische Wochenschrift64 (16): 732–37. (Aug 1986). doi:10.1007/BF01734339. PMID3762019.
“Developments in the control of testicular function”. Baillière's Clinical Endocrinology and Metabolism6 (2): 451–83. (Apr 1992). doi:10.1016/S0950-351X(05)80158-2. PMID1377467.
“Testosterone physiology in resistance exercise and training: the up-stream regulatory elements”. Sports Medicine40 (12): 1037–53. (2010). doi:10.2165/11536910-000000000-00000. PMID21058750.
“Androgen receptors and testosterone in men—effects of protein ingestion, resistance exercise and fiber type”. The Journal of Steroid Biochemistry and Molecular Biology110 (1–2): 130–37. (May 2008). doi:10.1016/j.jsbmb.2008.03.030. PMID18455389.
“Testosterone and endurance exercise: development of the "exercise-hypogonadal male condition"”. Acta Physiologica Hungarica92 (2): 121–37. (2005). doi:10.1556/APhysiol.92.2005.2.3. PMID16268050.
“Regulation and perturbation of testicular functions by vitamin A”. Reproduction124 (2): 173–80. (Aug 2002). doi:10.1530/rep.0.1240173. PMID12141930.
“Effect of vitamin D supplementation on testosterone levels in men”. Hormone and Metabolic Research = Hormon- und Stoffwechselforschung = Hormones et Métabolisme43 (3): 223–25. (Mar 2011). doi:10.1055/s-0030-1269854. PMID21154195.
“Serum testosterone and urinary excretion of steroid hormone metabolites after administration of a high-dose zinc supplement”. European Journal of Clinical Nutrition63 (1): 65–70. (Jan 2009). doi:10.1038/sj.ejcn.1602899. PMID17882141.
“The impact of body mass index on semen parameters and reproductive hormones in human males: a systematic review with meta-analysis”. Human Reproduction Update16 (3): 293–311. (2010). doi:10.1093/humupd/dmp047. PMID19889752.
“The effects of testosterone on sleep and sleep-disordered breathing in men: its bidirectional interaction with erectile function”. Sleep Medicine Reviews12 (5): 365–79. (Oct 2008). doi:10.1016/j.smrv.2007.12.003. PMID18519168.
“Effect of spearmint (Mentha spicata Labiatae) teas on androgen levels in women with hirsutism”. Phytotherapy Research21 (5): 444–47. (May 2007). doi:10.1002/ptr.2074. PMID17310494.
“Spearmint induced hypothalamic oxidative stress and testicular anti-androgenicity in male rats - altered levels of gene expression, enzymes and hormones”. Food and Chemical Toxicology46 (12): 3563–70. (Dec 2008). doi:10.1016/j.fct.2008.08.027. PMID18804513.
“Spearmint herbal tea has significant anti-androgen effects in polycystic ovarian syndrome. A randomized controlled trial”. Phytotherapy Research24 (2): 186–88. (Feb 2010). doi:10.1002/ptr.2900. PMID19585478.
“History of the endocrine effects of licorice”. Experimental and Clinical Endocrinology & Diabetes110 (6): 257–61. (Sep 2002). doi:10.1055/s-2002-34587. PMID12373628.
“Non-sex hormone-binding globulin-bound testosterone as a marker for hyperandrogenism”. The Journal of Clinical Endocrinology & Metabolism61 (5): 873–6. (November 1985). doi:10.1210/jcem-61-5-873. PMID4044776.
“Transport of steroid hormones: binding of 21 endogenous steroids to both testosterone-binding globulin and corticosteroid-binding globulin in human plasma”. J. Clin. Endocrinol. Metab.53 (1): 58–68. (July 1981). doi:10.1210/jcem-53-1-58. PMID7195404.
“Role of 5 alpha-reductase in health and disease”. Baillière's Clinical Endocrinology and Metabolism8 (2): 405–31. (Apr 1994). doi:10.1016/S0950-351X(05)80259-9. PMID8092979.
“The essential role of the aromatase/p450arom”. Seminars in Reproductive Medicine20 (3): 277–84. (Aug 2002). doi:10.1055/s-2002-35374. PMID12428207.
“Different patterns of metabolism determine the relative anabolic activity of 19-norandrogens”. J. Steroid Biochem. Mol. Biol.53 (1–6): 253–7. (1995). doi:10.1016/0960-0760(95)00056-6. PMID7626464.
“Utilization of commercial laboratory results in management of hyperandrogenism in women”. Endocr Pract4 (1): 1–10. (1998). doi:10.4158/EP.4.1.1. PMID15251757.
Institute of Medicine (US) Committee on Assessing the Need for Clinical Trials of Testosterone Replacement Therapy, Liverman CT, Blazer DG (2004). "Introduction". Testosterone and Aging: Clinical Research Directions (Report) (英語). National Academies Press (US).