Pregnancy

Last updated: May 16, 2023

Pregnancy

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Cardiovascular system anatomy and physiology
Normal heart sounds
Abnormal heart sounds
Blood pressure, blood flow, and resistance
Measuring cardiac output (Fick principle)
Pressures in the cardiovascular system
Baroreceptors
Chemoreceptors
Renin-angiotensin-aldosterone system
Cardiac contractility
Cardiac conduction system
Myocardial infarction
Angina pectoris
Aortic dissection
Aneurysms
Tricuspid valve disease
Mitral valve disease
Pulmonary valve disease
Aortic valve disease
Hypertrophic cardiomyopathy
Skin anatomy and physiology
Wound healing
Hair, skin and nails
Atopic dermatitis
Psoriasis
Lichen planus
Albinism
Burns
Actinic keratosis
Skin cancer
Endocrine system anatomy and physiology
Thyroid hormones
Cortisol
Synthesis of adrenocortical hormones
Calcitonin
Parathyroid hormone
Vitamin D
Cushing syndrome
Diabetes mellitus
Hyperparathyroidism
Hypoparathyroidism
Hypothyroidism
Hyperthyroidism
Toxic multinodular goiter
Graves disease
Thyroid cancer
Pheochromocytoma
Neuroblastoma
Gastrointestinal system anatomy and physiology
Pancreatic secretion
Liver anatomy and physiology
Bile secretion and enterohepatic circulation
Carbohydrates and sugars
Proteins
Fats and lipids
Prebiotics and probiotics
Vitamins and minerals
Barrett esophagus
Mallory-Weiss syndrome
Gastroesophageal reflux disease (GERD)
Boerhaave syndrome
Peptic ulcer
Gastritis
Colorectal polyps
Ulcerative colitis
Gallstones
Cirrhosis
Non-alcoholic fatty liver disease
Alcohol-associated liver disease
Hemochromatosis
Viral hepatitis
Portal hypertension
Hirschsprung disease
Pyloric stenosis
Oral cancer
Benign liver tumors
Blood components
Coagulation (secondary hemostasis)
Clot retraction and fibrinolysis
Platelet plug formation (primary hemostasis)
Role of Vitamin K in coagulation
Iron deficiency anemia
Alpha-thalassemia
Beta-thalassemia
Anemia of chronic disease
Aplastic anemia
Autoimmune hemolytic anemia
Sickle cell disease (NORD)
Von Willebrand disease
Hemophilia
Acute leukemia
Chronic leukemia
Hodgkin lymphoma
Non-Hodgkin lymphoma
Polycythemia vera (NORD)
Essential thrombocythemia (NORD)
Skeletal system anatomy and physiology
Cartilage structure and growth
Bone remodeling and repair
Fibrous, cartilage, and synovial joints
Rheumatoid arthritis
Gout
Systemic lupus erythematosus
Raynaud phenomenon
Amyloidosis
Scleroderma
Fibromyalgia
Osteoarthritis
Paget disease of bone
Osteoporosis
Legg-Calve-Perthes disease
Osteomalacia and rickets
Osgood-Schlatter disease (traction apophysitis)
Septic arthritis
Osteomyelitis
Lordosis, kyphosis, and scoliosis
Rotator cuff tear
Meniscus tear
Sprained ankle
Compartment syndrome
Bone tumors
Developmental dysplasia of the hip
Nervous system anatomy and physiology
Anatomy and physiology of the eye
Anatomy and physiology of the ear
Neuron action potential
Sympathetic nervous system
Parasympathetic nervous system
Adrenergic receptors
Cholinergic receptors
Cerebellum
Optic pathways and visual fields
Cranial nerves
Brachial plexus
Seizures and epilepsy
Migraine
Tension headache
Cluster headache
Alzheimer disease
Frontotemporal dementia
Vascular dementia
Dementia with Lewy bodies
Multiple sclerosis
Muscular dystrophy
Bell palsy
Concussion and traumatic brain injury
Cauda equina syndrome
Neurogenic bladder
Parkinson disease
Sciatica
Carpal tunnel syndrome
Eustachian tube dysfunction
Glaucoma
Major depressive disorder
Major depressive disorder with seasonal pattern
Suicide
Bipolar and related disorders
Generalized anxiety disorder
Post-traumatic stress disorder
Schizophrenia
Alcohol use disorder
Tobacco use disorder
Cannabis use disorder
Opioid use disorder
Cocaine use disorder
Cluster A personality disorders
Cluster B personality disorders
Cluster C personality disorders
Autism spectrum disorder
Attention deficit hyperactivity disorder
Learning disability
Delirium
Renal system anatomy and physiology
Movement of water between body compartments
Renal clearance
Osmoregulation
Antidiuretic hormone
Regulation of renal blood flow
Glomerular filtration
Proximal convoluted tubule
Loop of Henle
Potassium homeostasis
Phosphate, calcium and magnesium homeostasis
Sodium homeostasis
The role of the kidney in acid-base balance
Diabetic nephropathy
Lower urinary tract infection
Acute pyelonephritis
Chronic pyelonephritis
Kidney stones
Urinary incontinence
Hydronephrosis
Polycystic kidney disease
Estrogen and progesterone
Menstrual cycle
Menopause
Oxytocin and prolactin
Pregnancy
Anatomy and physiology of the female reproductive system
Anatomy and physiology of the male reproductive system
Testosterone
Development of the reproductive system
Puberty and Tanner staging
Ovarian cyst
Endometriosis
Uterine fibroid
Endometritis
Amenorrhea
Benign prostatic hyperplasia
Pelvic inflammatory disease
Cervical cancer
Endometrial cancer
Breast cancer
Respiratory system anatomy and physiology
Respiratory syncytial virus
Pneumonia
Asthma
Chronic bronchitis
Emphysema
Nasal polyps
Sinusitis
Bacterial epiglottitis
Allergic rhinitis
Upper respiratory tract infection
Laryngitis
Retropharyngeal and peritonsillar abscesses
Pulmonary hypertension
Lung cancer
Mesothelioma
Sleep apnea
Restrictive lung diseases
Vitiligo

Transcript

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Pregnancy is an amazing process that affects almost every body system.

Throughout the pregnancy, estrogen and progesterone levels steadily rise, and it leads to a number of anatomic and physiologic changes that occur throughout the body.

Everything starts with ovulation, so let’s call that day 0.

On that day, in the ovary, an ovarian follicle – which is an egg or oocyte plus its surrounding tissues– matures and ovulation occurs which is when the egg gets ejected while the surrounding structure becomes the corpus luteum and quickly starts making estrogen and progesterone.

Normally, the egg gets fertilized by a sperm within 12-24 hours to form a zygote, so let’s say that fertilization happens a day later on day 1.

Almost right away, cells start to divide over and over, until there’s a ball of cells called the blastocyst on day 4.

The blastocyst typically floats around inside the uterus for another day before it finds a specific spot to implant on day 5.

Around this time, the corpus luteum makes a lot more progesterone relative to estrogen, and the low estrogen to progesterone ratio is necessary for implantation.

At this early stage, there are two parts to the blastocyst - an inner set of cells that go on to become the fetus, and an outer set of cells called the trophoblast that burrow into the endometrium on day 6 and eventually develop into the fetal part of the placenta.

That trophoblast cells start to produce a hormone called human chorionic gonadotropin or HCG around day 8, and this is important for two reasons.

One - it’s the hormone that lets the corpus luteum know that there has been a successful implantation into the endometrium, and that it should continue to make estrogen and progesterone.

And it’s the continued presence of estrogen and progesterone that suppresses other ovarian follicles from maturing.

Two - HCG is the hormone that most pregnancy tests are able to detect, causing the little sign to form which can happen as early as day 9.

Without HCG levels shooting up on day 8, the corpus luteum would start to shrivel up by day 10, and estrogen and progesterone levels would fall.

This would cause the lining of the endometrium to slough off or fall away from the endometrial wall resulting in a period or menses.

A pregnancy lasts 40 weeks, roughly 9 months, but that is from the last menstrual period, which is usually about 2 weeks before “day 0” of ovulation.

So if you’re counting from “day 0” a pregnancy is only about 38 weeks.

The reason for adding in the extra two weeks is that women usually know the date when their last menstrual period began, but have no way of knowing when they ovulated.

So during the first trimester, which is between week 1 through 13, hormones are being generated by the corpus luteum - mainly estrogen and progesterone.

By around week 9, HCG levels peak, and then begin to fall off which is a signal for the corpus luteum to finally start shriveling up.

Luckily, just as the corpus luteum is shriveling up, the placenta takes over, and specialized trophoblast cells called syncytiotrophoblast cells, make progesterone and estriol which is the most abundant type of estrogen.

The placenta also makes a bit of HCG, as well as another hormone called human placental lactogen or hPL which counters the effect of maternal insulin to help ensure that there’s plenty of glucose available in the blood for the fetus.

Many of the changes in pregnancy are directly related to the growth of the uterus.

The uterus is normally a pelvic organ, but during pregnancy it grows into the abdomen, rising to the level of the umbilicus by 20 weeks gestation and to the xiphoid process by 36 weeks.

The fundal height - which is the distance from the symphysis pubis to the top of the uterus aka the fundus is a good estimate of gestational age; for example, here at 36 weeks you might expect it to be about 36 cm, but at 20 weeks it’d be closer to 20 cm.

To accommodate the needs of mom, an enlarging uterus, and a growing fetus - as well as having some reserve for the blood loss that happens during delivery, the cardiovascular system has to expand.

Pregnancy is called a high volume state because the circulating blood volume increases by 30-50%, which means that an average woman will go from having 5 liters of blood to about 7.5 liters of blood by the third trimester.

The number of red blood cells increases a bit, but there’s a much larger increase in the plasma volume - the portion of blood that doesn’t have red blood cells.

So the hematocrit, or percentage of blood made of red blood cells, actually goes down. This is called “physiological anemia of pregnancy”.

To push this extra blood around, the heart rate goes up by about 20 beats per minute, so this increases the cardiac output.

In response to the increased workload there is a mild hypertrophy of the heart, which does go away after pregnancy.

The high volume state also explains why there’s sometimes a third heart sound or physiologic S3, as well as a split S1 which is where the mitral valve closes slightly faster than the tricuspid valve.

Finally, the blood pressure actually falls a tiny bit, even though more blood’s getting pushed through them, since progesterone causes them to dilate.

Finally, as the uterus enlarges, it pushes up on the diaphragm, nudging the heart slightly upward and shifting the heart’s point of maximum intensity - the spot where it taps against the chest wall - a little bit to the left.

The uterus also presses against the pelvic veins, causing blood to back up, leading to varicose veins as well as swelling in the lower legs and ankles.

When lying down, the uterus presses on the inferior vena cava reducing blood flow back to the right atrium and causing hypotension.

A side-lying position or placing a pillow under the hip can help avoid that.

Key Takeaways

Pregnancy, or gestation, is the period during which one or more offspring develop inside a woman. If an ovum is fertilized by a sperm, the fertilized ovum begins to divide and becomes a fetus. The period of development of a fetus is called pregnancy, and in humans, it lasts 40 weeks. During pregnancy, both estrogen and progesterone hormones rise, which causes several changes in nearly every organ system - there's an increase in blood volume, increased urinary output, shallow breathing, mood changes, nausea and changes in taste, darkening of the skin, breast changes, and the loosening of the ligaments. All of which help prepare for the delivery of a healthy baby.

Sources

  1. "Medical Physiology" Elsevier (2016)
  2. "Physiology" Elsevier (2017)
  3. "Human Anatomy & Physiology" Pearson (2018)
  4. "Principles of Anatomy and Physiology" Wiley (2014)
  5. "Multiple-micronutrient supplementation for women during pregnancy" Cochrane Database of Systematic Reviews (2019)
  6. "Constipation, haemorrhoids, and heartburn in pregnancy" BMJ Clin Evid (2010)
  7. "Inducing Tolerance to Pregnancy" New England Journal of Medicine (2012)
  8. "Accuracy of single progesterone test to predict early pregnancy outcome in women with pain or bleeding: meta-analysis of cohort studies" BMJ (2012)
  9. "ACOG Committee Opinion No. 343: psychosocial risk factors: perinatal screening and intervention" Obstet Gynecol (2006)