Dr. Jim Davis

Pulse of Physiology

Pulse of Physiology is a podcast that makes human physiology clear and approachable. Hosted by Dr. Jim Davis, each episode explores essential concepts like membrane potentials, transport mechanisms, and system-wide functions such as the nervous system. With an emphasis on foundational understanding and practical connections, the podcast simplifies complex topics, helping students and curious listeners alike grasp how the body maintains homeostasis and functions efficiently. Whether studying for exams or seeking to learn, Pulse of Physiology is your guide to the science of life.

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Autor

Dr. Jim Davis

Kategoria

Education

Strona podcastu

podcasters.spotify.com

Ostatni odcinek

23 kwi 2025

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Odcinki

Episode 82 - Reproductive system - Parturtion and lactation 23.04.2025

Explains the stages of labor and the hormonal regulation of childbirth and breastfeeding . Discusses the role of oxytocin and prostaglandins in labor, and prolactin and oxytocin in milk production and ejection.

Episode 81 - Reproductive system - Fertilization and pregnancy 23.04.2025

Follows the journey from sperm-egg fusion through blastocyst formation and implantation . Highlights the role of hCG , the formation of the placenta , and key hormones like progesterone, estrogen, and hCG in sustaining pregnancy.

Episode 80 - Reproductive system - Uterine cycle 21.04.2025

Covers the menstrual, proliferative, and secretory phases of the uterine cycle. Describes how estrogen and progesterone prepare the endometrium for implantation and how their withdrawal leads to menstruation when pregnancy does not occur.

Episode 79 - Reproductive system - Ovarian cycle 21.04.2025

Explores the development and maturation of ovarian follicles through the follicular and luteal phases . Emphasizes the roles of FSH, LH, estrogen, progesterone, and inhibin , and explains how hormonal feedback regulates ovulation and corpus luteum function.

Episode 78 - Reproductive system - Spermatogenesis 18.04.2025

Details the process of sperm development , distinguishing between spermatogenesis and spermiogenesis . Explains the roles of Sertoli and Leydig cells and describes how FSH, LH, testosterone, and inhibin regulate sperm production through hormonal feedback loops.

Episode 77 - Reproductive system - Overview of the reproductive system 18.04.2025

Provides an introduction to the male and female reproductive systems , outlines homologous structures , and summarizes the functions of key reproductive hormones, including GnRH, FSH, LH, testosterone, estrogen, progesterone, and inhibin .

Episode 76 - Digestive system - Hormonal and neural regulation of digestion 16.04.2025

Focuses on how the enteric nervous system (ENS), autonomic input, and digestive hormones like gastrin, secretin, and CCK regulate motility and secretion during the cephalic, gastric, and intestinal phases of digestion.

Episode 75 - Digestive system - Physiology of digestion 16.04.2025

Breaks down the chemical digestion of carbohydrates, proteins, and fats. Introduces digestive enzymes and their sources , the role of hydrochloric acid , and how bile salts aid fat digestion . Wraps up with the role of the gut microbiome in digestion and health.

Episode 74 - Digestive system - Motility 14.04.2025

Explores how food moves through the GI tract using peristalsis, segmentation, mixing waves, and mass movement . Discusses how factors like chyme composition and volume influence gastric emptying, and how neural and hormonal signals regulate motility.

Episode 73 - Digestive system - Structures and functions 14.04.2025

Covers the six major functions of the digestive system— ingestion, propulsion, mechanical digestion, chemical digestion, absorption, and defecation . Differentiates between GI tract structures and accessory organs , and explains how food is broken down and moved through the digestive system.

Episode 72 - Acid-base balance - Disorders of acid-base balance 11.04.2025

Apply your knowledge to diagnose and interpret acid-base imbalances using arterial blood gas (ABG) values . Differentiate between respiratory and metabolic acidosis or alkalosis , and determine whether compensation has occurred.

Episode 71 - Acid-base balance - Compensation 11.04.2025

Understand how the respiratory and urinary systems compensate for acid-base disturbances . Learn how the body responds to respiratory or metabolic acidosis and alkalosis , and the time course of each compensatory mechanism.

Episode 70 - Acid-base balance - Introduction 09.04.2025

Learn the basics of pH regulation , including the roles of acids, bases, and buffers . Get introduced to the bicarbonate, phosphate, and protein buffer systems , and why maintaining a stable pH is essential for enzyme and cell function.

Episode 69 - Fluid balance - Homeostasis of blood volume and pressure 09.04.2025

Discover how the cardiovascular, endocrine, and urinary systems respond to dehydration or hemorrhage to restore blood volume and pressure. Compare how the body responds to osmolar vs. isotonic disturbances .

Episode 68 - Fluid balance - Potassium and calcium homeostasis 09.04.2025

Explore how aldosterone regulates potassium levels and how parathyroid hormone (PTH) maintains calcium balance. Learn the causes and effects of hyperkalemia, hypokalemia, hypercalcemia, and hypocalcemia , and why they matter for muscle and nerve function.

Episode 67 - Fluid balance - Regulation of body osmolarity 07.04.2025

Understand how the body regulates osmolarity through osmoreceptors, ADH release, and thirst mechanisms . Explore how water gain and loss affect osmolarity and how the body restores balance during dehydration or fluid overload.

Episode 66 - Fluid balance - Body fluid compartments 07.04.2025

Break down how total body water is distributed between the intracellular fluid (ICF) and extracellular fluid (ECF) compartments. Learn about solute concentrations , fluid movement , and the importance of maintaining fluid balance for homeostasis.

Episode 65 - Urinary system - Extrinsic control of GFR 07.04.2025

Explore how the sympathetic nervous system, RAAS, ADH, and natriuretic peptides regulate GFR in response to systemic blood pressure and volume changes , ensuring whole-body fluid and pressure homeostasis.

Episode 64 - Urinary system - Intrinsic control of GFR 02.04.2025

Understand how the kidneys regulate their own filtration rate using the myogenic mechanism and tubuloglomerular feedback , maintaining stable GFR despite changes in blood pressure.

Episode 63 - Urinary system - GFR 02.04.2025

Learn how GFR is calculated using Starling forces , how arteriole diameter affects filtration, and why GFR is a key measure of kidney function and fluid balance .

Episode 62 - Urinary system - Nephron Structure and Osmolarity Changes 31.03.2025

Discover how different parts of the nephron contribute to urine formation and how osmolarity changes throughout. Learn how countercurrent mechanisms create and preserve the medullary concentration gradient .

Episode 61 - Urinary system - Functions and processes 31.03.2025

Review the major functions of the urinary system , including waste excretion, fluid and electrolyte balance, and blood pressure regulation . Understand the differences between plasma, filtrate, and urine , and the processes of filtration, reabsorption, secretion, and excretion .

Episode 60 - Cardiovascular system - Starling forces 31.03.2025

Explore how hydrostatic and oncotic pressures regulate capillary exchange . Learn how net filtration pressure (NFP) drives fluid in or out of capillaries and how the lymphatic system prevents edema by returning excess fluid to circulation.

Episode 59 - Cardiovascular system - Autoregulation 28.03.2025

Understand how local control mechanisms adjust blood flow to match tissue demand . Explore metabolic and myogenic responses, precapillary sphincters, and the balance between vasodilation and vasoconstriction in maintaining perfusion .

Episode 58 - Respiratory system - Control of breathing 28.03.2025

Learn how central and peripheral chemoreceptors regulate breathing in response to CO₂, O₂, and pH levels . Understand how hyperventilation affects breath-holding time and why neural input anticipates respiratory changes during exercise .

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