Erectile dysfunction

Erectile dysfunction

repro

repro

Development of the reproductive system
Anatomy and physiology of the male reproductive system
Anatomy of the male reproductive organs of the pelvis
Anatomy of the male urogenital triangle
Precocious and delayed puberty: Clinical
Delayed puberty
Testicular cancer
Testicular tumors: Pathology review
Menstrual cycle
Gardnerella vaginalis (Bacterial vaginosis)
Pelvic inflammatory disease
Vaginal and vulvar disorders: Pathology review
Human papillomavirus
Breast cancer
Fibrocystic breast changes
Intraductal papilloma
Mastitis
Paget disease of the breast
Cervix and vagina histology
Fallopian tube and uterus histology
Mammary gland histology
Ovary histology
Penis histology
Prostate gland histology
Testis, ductus deferens, and seminal vesicle histology
Amenorrhea
Intrauterine growth restriction
Polyhydramnios
Oligohydramnios
Potter sequence
Urethritis
Ectopic pregnancy
Miscarriage
Gestational trophoblastic disease
Ovarian germ cell tumors
Ovarian cyst
Polycystic ovary syndrome
Ovarian sex-cord stromal tumors
Ovarian torsion
Premature ovarian failure
Ovarian surface epithelial tumors
Chorioamnionitis
Female sexual interest and arousal disorder
Orgasmic dysfunction
Genito-pelvic pain and penetration disorder
Cervical cancer
Endometrial cancer
Endometriosis
Uterine fibroid
Endometritis
Endometrial hyperplasia
Choriocarcinoma
Precocious puberty
5-alpha-reductase deficiency
Kallmann syndrome
Turner syndrome
Klinefelter syndrome
Androgen insensitivity syndrome
Penile cancer
Priapism
Hypospadias and epispadias
Benign prostatic hyperplasia
Prostatitis
Prostate cancer
Erectile dysfunction
Male hypoactive sexual desire disorder
Cryptorchidism
Inguinal hernia
Varicocele
Testicular torsion
Orchitis
Epididymitis
Amenorrhea: Pathology review
Benign breast conditions: Pathology review
Breast cancer: Pathology review
Cervical cancer: Pathology review
Complications during pregnancy: Pathology review
Congenital TORCH infections: Pathology review
Disorders of sex chromosomes: Pathology review
Disorders of sexual development and sex hormones: Pathology review
HIV and AIDS: Pathology review
Ovarian cysts and tumors: Pathology review
Penile conditions: Pathology review
Prostate disorders and cancer: Pathology review
Sexually transmitted infections: Vaginitis and cervicitis: Pathology review
Sexually transmitted infections: Warts and ulcers: Pathology review
Testicular and scrotal conditions: Pathology review
Uterine disorders: Pathology review
Androgens and antiandrogens
Aromatase inhibitors
Estrogens and antiestrogens
Progestins and antiprogestins
Uterine stimulants and relaxants
Adrenergic antagonists: Alpha blockers
PDE5 inhibitors
Estrogen and progesterone
Anatomy and physiology of the female reproductive system
Menopause
Puberty and Tanner staging
Breastfeeding
Oxytocin and prolactin
Testosterone
Pregnancy
Stages of labor
Hypertensive disorders of pregnancy: Clinical
Perinatal infections: Clinical
Antepartum hemorrhage: Clinical
Abnormal uterine bleeding: Clinical
Ovarian cysts, cancer, and other adnexal masses: Clinical
Placenta previa
Preeclampsia & eclampsia
Preterm labor
Postpartum hemorrhage
Postpartum hemorrhage: Clinical
Breast abscess: Clinical sciences
Mastitis: Clinical sciences
Anatomy of the breast
Hyperprolactinemia

Transcript

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In erectile dysfunction, an individual is unable to develop or maintain an erection during sex.

This disorder is also called impotence and like other sexual dysfunction, this condition becomes more common with age.

Sex can be important within relationships, so erectile dysfunction often carries with it emotional and psychological stigma.

In both males and females,, sexual activity involves a sequence of events called the sexual response cycle.

This cycle has four phases, excitement, plateau, orgasm, and resolution.

During the excitement phase, muscle tension, heart rate, and blood flow to the genitals increases.

In males, this is called an erection.

When these reach the maximum level, it’s called the plateau phase.

Next, the accumulated sexual tension gets released during orgasm, causing ejaculation in males.

Immediately after orgasm comes the resolution phase, where the body slowly returns to its original, un-excited state.

Alright, let’s take a closer look at the penis which is made of three long cylindrical bodies: the corpus spongiosum that surrounds the penile urethra, and the two corpora cavernosa made of erectile tissue.

The corpora cavernosa are wrapped in a fibrous coat called the tunica albuginea, and each corpus cavernosum is made up of blood-filled spaces called the cavernosal spaces.

These areas are lined with endothelial cells surrounded by smooth muscle.

Running down the centre of each corpus cavernosum is a large artery called the deep artery which gives off smaller arteries that supply the cavernosal spaces.

Next, blood get drained from these spaces by small emissary veins, which drain into the deep dorsal vein.

This vein then carries the blood back into the systemic circulation.

Now, the penis receives both somatic and autonomic innervation through the cavernous nerves, which innervate both the corpus spongiosum, and the corpora cavernosa.

You can remember the functions of these fibers with the mnemonic “point and shoot.”

“Point” is erection and it’s caused by “P,” or parasympathetic fibers.

“Shoot” is ejaculation and the “S” is for sympathetic.

Now, an erection can happen in two ways, either by physical stimulation of the penis or genitals, called reflex erection, or by becoming emotionally stimulated by a thought, called psychogenic erection.

In both cases, the parasympathetic nerve fibers in the cavernosal spaces release acetylcholine from their nerve endings.

The acetylcholine bind to muscarinic receptors on endothelial cells, which activates the enzyme nitric oxide synthase.

Nitric oxide synthase converts the amino acid arginine into citrulline and nitric oxide.

The nitric oxide diffuses into the nearby smooth muscle cells, and activates guanylate cyclase, which converts GTP molecules to cGMP.

This leads to a fall in intracellular calcium levels causing the smooth muscles to relax, and allowing the cavernosal spaces to expand and fill with blood.

The corpora cavernosa grow in size, and compress the veins, making it harder for blood to leave.

With more blood coming in but very little blood leaving, the penis can maintain an erection.

Erectile dysfunction leads to an inability to develop and maintain a full erection.

This can happen because of psychological factors like stress, performance anxiety, and depression.

Organic causes can be divided depending on which step in erection is impaired.

Key Takeaways

Erectile dysfunction (ED) is the inability to get and maintain an erection firm enough for sexual intercourse. It is a common problem, affecting main people. There are many possible causes of ED, including diabetes, heart disease, obesity, high blood pressure, and low testosterone levels.

Sources

  1. "Robbins Basic Pathology" Elsevier (2017)
  2. "Harrison's Principles of Internal Medicine, Twentieth Edition (Vol.1 & Vol.2)" McGraw-Hill Education / Medical (2018)
  3. "Pathophysiology of Disease: An Introduction to Clinical Medicine 8E" McGraw-Hill Education / Medical (2018)
  4. "CURRENT Medical Diagnosis and Treatment 2020" McGraw-Hill Education / Medical (2019)
  5. "Physiology of Penile Erection and Pathophysiology of Erectile Dysfunction" Urologic Clinics of North America (2005)
  6. "Mechanism of diabetic neuropathy: Where are we now and where to go?" Journal of Diabetes Investigation (2010)
  7. "Priapism associated with pregabalin" Urology Annals (2014)