Brain or Behavioral Sex. Brain and Behavioral Sex Differentiation Gonadal Steroid Hormones Brain Structure Sexual Behavior Genetics Experience.

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Presentation transcript:

Brain or Behavioral Sex

Brain and Behavioral Sex Differentiation Gonadal Steroid Hormones Brain Structure Sexual Behavior Genetics Experience

Brain Sexual Differentiation Rat female » Give testosterone shortly after birth – fail to copulate or cycle like female as adult Sexually dimorphic nucleus Human male and female differences in behaviors » aggression » childhood play » 3D visual rotation

Descent of the Testis into the Scrotum

Testicular Descent Fusion of the tunica albuginea and peritoneum to form the visceral tunica vaginalis

Front View Spermatic Artery Fusion of Peritoneum and Gubernaculum Gubernaculum Inguinal Ring Peritoneum Testis

Visceral Growth Peritoneum Spermatic Artery Gubernaculum (rapid growth) Gubernaculum (rapid growth) Inguinal Ring Peritoneum Testis Visceral Tunica Vaginalis Parietal Tunica Vaginalis Rapid growth of gubernaculum Testis is pulled down to the inguinal ring.

Gubernaculum regresses Testis pulled into scrotum

Continued regression of Gubernaculum Testis pulled deeper into Scrotum Vaginal Process attaches to Scrotum Space between Visceral and Parietal T.V. is continuous with Peritoneum

Failure or Problems With Testicular Descent Cryptorchid - highly heritable » Unilateral or bilateral – Germ cells fail to multiply and then die, sertoli cells only in seminferous tubules » High percentage develop testicular cancer » Surgical correction possible but does not reduce cancer risk

Normal Dog Seminiferous Tubule

Cryptorchid Dog Seminiferous Tubule Sertoli Cells

Failure or Problems With Testicular Descent Inguinal Hernia Cryptorchid - highly heritable –Unilateral or bilateral Germ cells fail to multiply and then die, sertoli cells only in seminferous tubules –High percentage develop testicular cancer –Surgical correction possible but does not reduce cancer risk

Inguinal Hernia Loop of Intestine

Abnormalities in Development

The Freemartin in Cattle Female born twin to a bull Placenta membranes of the 2 fetuses fuse Common blood supply » At time of testis formation » Before ovarian formation Both fetuses share a common hormone milieu » testosterone » anti-mullerian hormone Animals are chimeric (WBC from other twin) » TDF (SRY) expressed in both individuals

Normal

Freemartin

Normal Vs. Freemartin

Freemartin AMH from bull - blocks Mullerian ducts » Posterior vagina, no anterior vagina Testosterone from bull » clitoral enlargment » Brain changes like that of male Ovaries do not grow but are chimeric » Ovotestis – SRY and therefore AMH and Testosterone – Further changes and adult male behavior Use as estrus detector Abnormalities exist as a continuum

Testicular Feminization in an XY Individual No androgen receptor Testis No testosterone response so no Wolffian duct development AMH present so mullerian ducts regress External genitalia is female due to lack of androgen

Testicular Feminization

5  Reductase Deficiency in an XY Individual Guevedoces (penis at 12) Testis AMH present so Mullerian ducts regress Wolffian ducts psuedovagina and female external genitalia at puberty may differentiate into more of a phenotypic male

Guevedoces Development Normal tissue dependent upon testosterone is shown in black.