The Canine Estrous Cycle: Physiology, Timing and Clinical Management — GlobalVetCo

The Canine Estrous Cycle: Physiology, Timing and Clinical Management

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Narration for: The Canine Estrous Cycle: Physiology, Timing and Clinical Management
~38 min read · Clinically structured · Updated for practice & exams

From proestrus through anestrus — vaginal cytology interpretation, progesterone timing for optimal breeding, the endocrinology of each stage, and clinical recognition of pyometra, cystic endometrial hyperplasia, and other reproductive pathology.

Key takeaways
  • The canine estrous cycle has four distinct stages — proestrus, oestrus, dioestrus (metoestrus), and anestrus — each with characteristic behaviour, cytology, and endocrinology.
  • Vaginal cytology is a simple, inexpensive tool for staging the cycle: >80% cornified superficial cells with a clear background = oestrus. The return of parabasal cells and neutrophils marks the onset of dioestrus.
  • Progesterone assay is the gold standard for timing ovulation: progesterone rises from < 2 ng/mL (baseline) to 4–8 ng/mL at the LH surge, and ovulation occurs approximately 48 hours later when progesterone reaches 5–10 ng/mL.
  • Optimal breeding occurs 2–4 days after the LH surge, corresponding to progesterone levels of 15–25 ng/mL — this is when oocytes have completed maturation and are fertilisable.
  • Pyometra and cystic endometrial hyperplasia are the two most common acquired uterine pathologies in intact bitches — both are driven by prolonged progesterone exposure and result from repeated estrous cycles without pregnancy.
Red flags / do not miss
  • An intact bitch presenting with PU/PD, lethargy, and purulent vulvar discharge 4–8 weeks after oestrus has pyometra until proven otherwise — this is a surgical emergency. Stabilise and perform OVH within 24 hours.
  • A closed pyometra (no vaginal discharge, but a distended, fluid-filled uterus on ultrasound) is MORE dangerous than an open pyometra because toxins and bacteria are retained. These patients are often systemically ill and may present in septic shock.
  • Vaginal bleeding in an intact bitch that lasts > 21 days is abnormal — consider ovarian neoplasia (granulosa cell tumour), uterine pathology, or coagulopathy.
  • Oestrogen-induced bone marrow suppression is a rare but life-threatening complication of prolonged oestrogen exposure — it can occur in bitches with granulosa cell tumours or exogenous oestrogen administration. Pancytopenia with aplastic anaemia is the hallmark.
  • Progesterone supplementation during pregnancy is contraindicated unless a documented progesterone deficiency (< 2 ng/mL after day 25 of gestation) is present — unnecessary supplementation masculinises female foetuses and can cause clitoral hypertrophy.

1. Introduction: The Unique Canine Reproductive Cycle

The domestic bitch has a reproductive cycle unlike any other domestic species. She is a monoestrous, spontaneous ovulator with a cycle interval of 5–12 months (average 7 months). Unlike most mammals, canine oocytes are ovulated as immature primary oocytes that require 48–60 hours in the oviduct to complete meiosis before they can be fertilised. This unusual reproductive biology means that the fertile window in bitches is both long (4–7 days) and predictably timed — but only if you know which endocrine signals to measure.

This guide provides a complete, stage-by-stage description of the canine estrous cycle with a clinical focus: vaginal cytology interpretation, progesterone timing for optimal breeding, the endocrinology of each phase, and the recognition and management of common reproductive pathology.

2. The Four Stages of the Canine Estrous Cycle

Stage Duration Behaviour Vaginal Cytology Key Hormones Ovarian Histology
Proestrus 5–10 days (average 9 days) Attractive to males but will not allow mating. Vulvar swelling, serosanguineous vaginal discharge (from diapedesis of RBCs through endometrial capillaries). Predominantly parabasal and intermediate cells early → shift to superficial cells as oestrogen rises. RBCs and neutrophils present in the background. Oestradiol rising (from developing follicles). Progesterone basal (< 1 ng/mL). Developing tertiary (Graafian) follicles. No corpora lutea.
Oestrus 5–12 days (average 9 days) Accepts the male for mating. Vulvar swelling may decrease slightly. Discharge becomes more serous (less bloody). Flagging (tail deviation) when perineum is stimulated. >80% cornified, anucleate superficial cells. Clear background — neutrophils and RBCs are absent or sparse. Cells appear in clumps/sheets. Oestradiol peaks then falls rapidly after the LH surge. Progesterone rises: 2–4 ng/mL at LH surge → 4–8 ng/mL at ovulation → 15–25 ng/mL at peak fertility. Ovulation (48 hours after LH surge). Formation of corpora haemorrhagica, then corpora lutea.
Dioestrus (Metoestrus) 55–65 days (regardless of pregnancy) Refuses the male. Behaviour returns to normal. No discharge (unless pathology — pyometra). Abrupt return of parabasal and intermediate cells, neutrophils, and cellular debris. < 20% superficial cells. 'Dirty' background. Progesterone elevated (15–80 ng/mL) — sustained by corpora lutea. Progesterone declines gradually after day 20–30, returning to basal levels by day 60–65. Prolactin rises in late dioestrus (pseudopregnancy or true pregnancy). Fully functional corpora lutea. If pregnancy: conceptus signals (embryonic) prevent luteolysis. If non-pregnant: spontaneous luteolysis occurs.
Anestrus 1–6 months (average 4 months) No sexual behaviour. No vulvar swelling or discharge. No interest from males. Predominantly parabasal and small intermediate cells. Few or no superficial cells. No neutrophils (unless inflammation). Clean background. Oestradiol and progesterone both basal. FSH pulsatility gradually increases, recruiting follicles for the next cycle. Ovaries quiescent. Small primary and secondary follicles. No corpora lutea.

3. Vaginal Cytology: A Practical Guide

Vaginal cytology is the most accessible tool for staging the estrous cycle. It requires a microscope, Diff-Quik or Wright–Giemsa stain, and a cotton-tipped swab. It costs pennies per sample and provides results in minutes.

3.1 Technique

  1. Moisten a cotton-tipped swab with sterile saline (a dry swab causes artefactual cell rupture).
  2. Insert the swab through the vulvar lips and direct it dorsocranially to avoid the clitoral fossa. Advance 4–8 cm (depending on patient size) into the vagina.
  3. Gently roll (do NOT smear) the swab across a clean glass slide — rolling preserves cell morphology.
  4. Air-dry, fix with methanol (1 minute), and stain with Diff-Quik or Wright–Giemsa.
  5. Examine under 100× (oil immersion) and 400× magnification.

3.2 Cell Types and Their Significance

Cell Type Size Appearance Clinical Significance
Parabasal cell Small (10–15 μm) Round to oval, high nuclear-to-cytoplasmic ratio, basophilic cytoplasm, large round nucleus Predominant in anestrus and early proestrus. Indicates low oestrogen.
Intermediate cell Medium (15–25 μm) Oval to polygonal, moderate N:C ratio, basophilic cytoplasm, round nucleus with fine chromatin Predominant in mid-to-late proestrus and early dioestrus.
Superficial cell Large (30–60 μm) Polygonal (flat), low N:C ratio, angular borders, eosinophilic or basophilic cytoplasm, small pyknotic or absent nucleus Predominant in oestrus. >80% superficial cells with a clear background = oestrus.
Anucleate squame (cornified cell) Large (30–60 μm) Identical to superficial cell but no nucleus visible. The most mature cell type. Indicates peak oestrogen. Abundant in mid-to-late oestrus.
Neutrophil 10–12 μm Segmented nucleus, clear or lightly granular cytoplasm Present in proestrus (physiological diapedesis). Absent in oestrus (oestrogen inhibits neutrophil migration). Reappears in early dioestrus. In anestrus, neutrophils suggest vaginitis or uterine pathology.
Red blood cell 6–8 μm Anucleate, eosinophilic, biconcave Present in proestrus (erythrodiapedesis). Absent or sparse in oestrus and dioestrus.
Foam cell (lipid-laden parabasalar) Variable Parabasal cell with abundant, foamy, vacuolated cytoplasm A normal finding in dioestrus and anestrus. Not clinically significant.

4. Progesterone Timing for Optimal Breeding

The single most valuable endocrine test for reproductive management in the bitch is the serum progesterone assay. It allows precise identification of the LH surge, prediction of ovulation, and determination of the optimal breeding window.

Progesterone (ng/mL) Cycle Event Timing for Breeding Notes
< 1.0 Anestrus or proestrus (before LH surge) Not yet in fertile period Recheck in 2–3 days if vulvar swelling and cytology suggest approaching oestrus.
1.0–2.0 LH surge imminent (within 24 hours) Not yet fertile The LH surge occurs as progesterone rises above 2 ng/mL. This is the reference point for all subsequent timing.
2.0–4.0 LH surge (day 0) Not yet fertile — ovulation is 48 hours away, and oocytes require an additional 48–60 hours for maturation This is the most clinically useful value — it tells you that the LH surge has occurred and allows you to predict the entire fertile window.
4.0–8.0 Ovulation occurs (~48 hours after LH surge) Natural mating: can begin. Frozen-thawed AI: still too early (oocytes are immature). Oocytes are ovulated as primary oocytes and require 48–60 hours post-ovulation to complete meiosis.
8.0–15.0 Oocyte maturation in progress Natural mating: optimal. Fresh/chilled AI: optimal. Frozen-thawed AI: approaching optimal. Oocytes are completing meiosis in the oviduct.
15.0–25.0 Peak fertility — oocytes mature and fertilisable ALL breeding methods: OPTIMAL. Natural mating: optimal. Fresh/chilled AI: optimal. Frozen-thawed AI: optimal. This is the window you are aiming for. Oocytes remain viable for 48–96 hours after maturation.
> 25.0 (and rising) Post-fertile — oocytes ageing/ degenerating Fertility declining. Natural mating: may still be successful. AI: reduced success. Progesterone continues to rise throughout dioestrus, reaching 15–80 ng/mL. The fertility window closes as oocytes degenerate.

4.1 Breeding Timing Protocol

  1. Begin progesterone testing when the bitch shows behavioural signs of proestrus (vulvar swelling, serosanguineous discharge) AND vaginal cytology shows > 50% superficial cells.
  2. Test every 2–3 days until progesterone rises above 2 ng/mL (LH surge confirmed).
  3. Once LH surge is identified (progesterone 2–4 ng/mL):
    • Natural mating: Mate on Days 2, 4, and 6 after the LH surge (every-other-day mating).
    • Fresh or chilled semen AI: Inseminate on Days 4 and 6 after the LH surge.
    • Frozen-thawed semen AI: Inseminate on Day 5 or 6 after the LH surge (single insemination is sufficient if timed precisely to peak fertility — progesterone 18–25 ng/mL).
  4. Confirm ovulation timing with a second progesterone measurement 48 hours after the first: progesterone should have risen to 8–15 ng/mL.
Progesterone tip
In-house progesterone assays (semi-quantitative ELISA or fluorescent immunoassay) provide results in 20–60 minutes and are sufficiently accurate for clinical breeding management. If sending samples to an external laboratory, allow for courier time — progesterone is stable in serum for 48 hours refrigerated.

5. Pregnancy Diagnosis and Monitoring

5.1 Timeline of Pregnancy Diagnosis Methods

  • Day 20–25: Ultrasound — the earliest reliable method. Foetal vesicles (gestational sacs) are visible as anechoic structures with a hyperechoic wall. Foetal heartbeat visible by Day 23–25.
  • Day 28–35: Abdominal palpation — 'bumps' corresponding to individual foetal vesicles can be palpated. Most reliable between Days 28–32. Less reliable in large, obese, or tense bitches.
  • Day 25–30: Relaxin assay — the hormone relaxin is produced by the placenta and is detectable in blood from Day 22–28. A positive relaxin test confirms pregnancy (but does not confirm viability).
  • Day 42–45: Radiography — foetal skeletons are mineralised and visible. Radiography after Day 45 provides the most accurate foetal count.

6. Reproductive Pathology: Pyometra and Cystic Endometrial Hyperplasia

6.1 Pyometra

Pyometra is suppurative inflammation of the uterus secondary to cystic endometrial hyperplasia, occurring during dioestrus under the influence of progesterone. It is the most common acquired uterine disease in intact bitches, affecting approximately 25% of intact bitches by 10 years of age.

Parameter Open Pyometra Closed Pyometra
Cervical status Cervix open — purulent drainage visible at the vulva Cervix closed — no external discharge
Clinical presentation Purulent, often blood-tinged vulvar discharge. PU/PD, lethargy, anorexia. May be systemically well if diagnosed early. Marked abdominal distension. Severe systemic illness: depression, PU/PD, vomiting, diarrhoea. May present in septic shock.
Diagnosis Clinical signs + ultrasound (thickened, fluid-filled uterus). Purulent discharge cytology: degenerate neutrophils with intracellular bacteria. Abdominal distension + systemic illness. Ultrasound: massively distended, fluid-filled uterus with thickened walls. The uterus may be 5–10 cm in diameter.
Laboratory Neutrophilic leucocytosis with left shift (variable). Elevated BUN/creatinine if renal involvement. ALP may be elevated. Marked leucocytosis or leucopenia (severe sepsis). Azotaemia. Electrolyte abnormalities. Elevated lactate.
Treatment OVH is the definitive treatment. Stabilise with IV fluids and antibiotics before surgery. Broad-spectrum IV antibiotics (ampicillin + enrofloxacin, or cefazolin + metronidazole). MEDICAL EMERGENCY. Stabilise aggressively: IV fluids, broad-spectrum IV antibiotics. OVH within 24 hours of presentation. Pre-operative stabilisation is critical — these patients are poor anaesthetic candidates.
Prognosis Excellent with timely OVH. Guarded to poor if septic shock is present. Mortality 5–10% even with aggressive therapy.

6.2 Cystic Endometrial Hyperplasia (CEH)

CEH is a progressive, irreversible, progesterone-driven condition in which the endometrial glands become hyperplastic and cystic. It is a precursor lesion for pyometra — the hyperplastic, fluid-filled endometrium is a perfect culture medium for ascending bacteria from the vagina. CEH develops with each estrous cycle and is present to some degree in most intact bitches over 5 years of age. The only definitive prevention is OVH.

  • Diagnosis: Ultrasound — thickened, irregular endometrium with cystic (anechoic) spaces within the uterine wall. The uterine lumen may contain a small amount of anechoic fluid (hydrometra or mucometra) that precedes infection.
  • Clinical significance: CEH without infection may cause mild, intermittent mucoid vulvar discharge during dioestrus. It reduces fertility by impairing embryonic implantation. It predisposes to pyometra with each subsequent cycle.
  • Management: If the bitch is not intended for breeding, OVH is curative and preventative. For breeding bitches, aglepristone (a progesterone receptor antagonist) has been used to treat CEH and early pyometra in countries where it is available — however, OVH remains the definitive long-term solution.

7. Other Reproductive Disorders

7.1 Ovarian Remnant Syndrome

Oestrus behaviour in a previously spayed bitch indicates that functional ovarian tissue remains in the abdomen (incomplete OVH). Diagnosis: vaginal cytology showing cornified cells during behavioural oestrus + progesterone > 2 ng/mL during the following 2–3 weeks (luteal phase). Treatment: surgical exploration and removal of the remnant ovarian tissue — this can be technically challenging due to adhesions.

7.2 Granulosa Cell Tumour

An ovarian tumour — most commonly a granulosa cell tumour — that secretes oestrogen, causing persistent oestrus (prolonged vulvar swelling, discharge, attractiveness to males for weeks to months). Oestrogen-induced bone marrow suppression (pancytopenia, aplastic anaemia) is a life-threatening complication. Diagnosis: abdominal ultrasound (ovarian mass) + elevated serum oestradiol + elevated anti-Müllerian hormone (AMH). Treatment: OVH.

7.3 Pseudopregnancy (False Pregnancy)

A normal physiological phenomenon occurring 6–12 weeks after oestrus in non-pregnant bitches, caused by the decline in progesterone and rise in prolactin during late dioestrus. Clinical signs: nesting behaviour, mammary development, lactation, mothering of inanimate objects. Most cases are self-limiting (2–3 weeks). Severe or persistent cases: cabergoline (prolactin inhibitor) 5 μg/kg PO q24h for 5–10 days, or metergoline 0.1 mg/kg PO q12h for 8–10 days.

Clinical pearls
  • The fertile window in the bitch is unusually long compared to other species — approximately 4–7 days — because canine oocytes are ovulated as primary oocytes that require 48–60 hours to complete meiosis before they are fertilisable.
  • A single progesterone measurement > 2 ng/mL confirms that the LH surge has occurred (or is occurring — if measured serially, the first value > 2 ng/mL marks the surge). This is the single most useful piece of information for timing breeding.
  • Vaginal cytology cannot distinguish a normal dioestrus from a dioestrus with pyometra — both show neutrophils and parabasal cells. Cytology is for staging the cycle, not diagnosing uterine pathology.
  • The anestrus period is essential for endometrial repair — bitches bred on every cycle (back-to-back breeding) have a higher incidence of cystic endometrial hyperplasia and reduced fertility.
  • Cystic endometrial hyperplasia (CEH) is a progressive, irreversible condition — with each estrous cycle, the endometrial glands become more hyperplastic and cystic. It is a precursor lesion for pyometra.

Frequently asked questions

How do I know when to start progesterone testing?
Begin testing when the bitch shows behavioural signs of proestrus (vulvar swelling, serosanguineous discharge) AND vaginal cytology shows > 50% superficial cells. Testing too early wastes money; testing too late may miss the LH surge. When in doubt, perform a vaginal cytology — if > 80% superficial cells, you are already in oestrus and must test immediately to determine if the LH surge has occurred.
How many times should a healthy bitch be mated during oestrus?
For natural mating, every-other-day mating starting on Day 2 after the LH surge, for a total of 2–3 matings, is optimal. This covers the entire fertile window without exhausting the male. Breeding on consecutive days does not improve pregnancy rates and may reduce semen quality.
What is the earliest I can diagnose pregnancy?
Ultrasound at Day 20–22 post-LH surge can visualise gestational sacs. Foetal heartbeat is visible by Day 23–25. The relaxin blood test is positive by Day 25–28. If a client is anxious, offer ultrasound at Day 25 — this confirms pregnancy and viability (heartbeat) in a single visit.
Can I use a single progesterone value to time breeding?
A single value > 2 ng/mL confirms that the LH surge has occurred or is occurring. However, without knowing whether this is the first day above 2 ng/mL (the surge day) or the third day (approaching ovulation), the precision of your breeding timing is reduced. Serial testing (every 2–3 days) provides the most accurate timeline. A single value of 4–8 ng/mL is consistent with ovulation (48 hours post-LH surge); a value of 15–25 ng/mL is the optimal breeding window.
Why does pyometra occur specifically during dioestrus?
Progesterone — produced by the corpora lutea throughout dioestrus — stimulates endometrial gland hyperplasia and secretion (creating a rich culture medium), reduces myometrial contractility (preventing expulsion of bacteria), and promotes cervical closure. These three effects together create the perfect environment for ascending bacterial infection from the vagina to establish pyometra. This is why pyometra always occurs 4–8 weeks after oestrus.
How can I differentiate pyometra from a normal dioestrus on vaginal cytology?
You cannot — both pyometra and normal early dioestrus show a mixed cell population with parabasal cells, intermediate cells, and neutrophils. Vaginal cytology stages the cycle but does NOT diagnose uterine pathology. The diagnosis of pyometra is made on clinical signs (purulent discharge, PU/PD, lethargy), laboratory findings (leucocytosis, azotaemia), and ultrasound (thickened, fluid-filled uterus).
What is the risk of pyometra if I leave my bitch intact?
Approximately 25% of intact bitches will develop pyometra by 10 years of age. The risk increases with each estrous cycle and with age. Breeds with a higher reported incidence include the Rough Collie, Rottweiler, Cavalier King Charles Spaniel, Golden Retriever, and Bernese Mountain Dog. OVH is the only definitive prevention.
Can I terminate an unwanted pregnancy in a bitch?
Yes — with veterinary supervision. Options include: (1) Aglepristone (Alizin) 10 mg/kg SC on two occasions 24 hours apart — effective up to Day 45 of gestation. (2) Prostaglandin F2α (dinoprost, cloprostenol) — induces luteolysis and uterine contraction, effective up to Day 35. Prostaglandins cause significant side effects (vomiting, diarrhoea, panting, restlessness) and require hospitalisation. (3) Dexamethasone — suppresses foetal ACTH, inducing foetal resorption or abortion. All methods carry medical risk and should only be performed after confirming pregnancy and discussing alternatives with the owner.

Self-check quiz

Test yourself. Answers are below each question — cover them first if you are studying.

Q1. A bitch has vaginal cytology showing > 85% cornified superficial cells, a clear background, and no neutrophils. Serum progesterone is 3.5 ng/mL. What stage of the estrous cycle is she in, and what does the progesterone level indicate?
  1. Proestrus — LH surge has not occurred yet
  2. Oestrus — LH surge has occurred and ovulation is approaching in ~48 hours
  3. Oestrus — ovulation has already occurred and she is in peak fertility
  4. Early dioestrus — she is past the fertile window
  5. Anestrus — the cytology is artefactual
Show answer

Answer: Oestrus — LH surge has occurred and ovulation is approaching in ~48 hours

The cytology ( >80% superficial cells, clear background, no neutrophils) is classic for oestrus. A progesterone of 3.5 ng/mL is slightly above the LH-surge threshold (2 ng/mL), indicating that the LH surge occurred 24–48 hours ago. Ovulation is expected in approximately 48 hours. She is in oestrus but not yet at peak fertility — oocytes will not be fertilisable for another ~96 hours.

Q2. A 6-year-old intact Golden Retriever presents with a 3-day history of lethargy, PU/PD, and purulent vulvar discharge. She was last in oestrus 6 weeks ago. On ultrasound, the uterus is 3 cm in diameter and filled with anechoic-to-echogenic fluid. What is the most appropriate management?
  1. Start oral antibiotics and recheck in 1 week
  2. Medical management with aglepristone and antibiotics
  3. Stabilise with IV fluids and IV antibiotics, then perform OVH within 24 hours
  4. Flush the uterus transcervically with sterile saline
  5. Start prostaglandin therapy to evacuate the uterus
Show answer

Answer: Stabilise with IV fluids and IV antibiotics, then perform OVH within 24 hours

This is an open pyometra — the most common presentation. OVH is the definitive treatment because it removes the infected uterus and prevents recurrence. Medical management (aglepristone, prostaglandins) is an option ONLY for valuable breeding bitches with uncomplicated open pyometra who are systemically well — and even then, OVH is recommended over medical management long-term. Surgery should be performed within 24 hours of presentation after stabilisation.

Q3. A breeder brings a bitch for progesterone testing to time a frozen-semen AI. The first progesterone is 7.2 ng/mL. When should the AI be performed?
  1. Immediately — she is in peak fertility
  2. In 24 hours
  3. In 48–72 hours when progesterone reaches 18–25 ng/mL
  4. In 5 days — frozen semen requires later insemination
  5. She has already passed the fertile window — AI will not be successful
Show answer

Answer: In 48–72 hours when progesterone reaches 18–25 ng/mL

A progesterone of 7.2 ng/mL is consistent with ovulation (48 hours post-LH surge). Oocytes require an additional 48–60 hours to complete meiosis before they are fertilisable. Peak fertility for frozen-thawed AI is at progesterone 18–25 ng/mL, which will be reached in approximately 48–72 hours. Recheck progesterone in 48 hours and inseminate when it reaches the 18–25 ng/mL range.

Q4. Which of the following is a normal cytological finding in DIOESTRUS and helps distinguish it from oestrus?
  1. > 90% cornified superficial cells with a clear background
  2. Predominantly parabasal cells with no superficial cells
  3. The abrupt return of parabasal cells, intermediate cells, and neutrophils with a 'dirty' background
  4. Large numbers of anucleate squames and a complete absence of neutrophils
  5. Predominantly red blood cells with occasional epithelial cells
Show answer

Answer: The abrupt return of parabasal cells, intermediate cells, and neutrophils with a 'dirty' background

The transition from oestrus to dioestrus on vaginal cytology is dramatic: the > 80% superficial cell population of oestrus is replaced within 24–48 hours by a mixed population of parabasal cells, intermediate cells, and abundant neutrophils against a background of cellular debris. This abrupt shift marks the end of the fertile window and is triggered by the post-ovulatory fall in oestrogen and rise in progesterone.

Q5. What is the single most important hormone to measure for precisely timing breeding in the bitch?
  1. Oestradiol — it peaks just before ovulation
  2. Luteinising hormone (LH) — it triggers ovulation
  3. Progesterone — its rise predicts and confirms the LH surge, ovulation, and the fertile window
  4. Relaxin — it confirms pregnancy and thus confirms ovulation has occurred
  5. Prolactin — it rises at the onset of oestrus and triggers oocyte maturation
Show answer

Answer: Progesterone — its rise predicts and confirms the LH surge, ovulation, and the fertile window

Progesterone is the most clinically useful reproductive hormone in the bitch because (1) it begins to rise before the LH surge (allowing prediction), (2) its rise to > 2 ng/mL marks the LH surge, (3) it continues to rise predictably through ovulation and oocyte maturation, and (4) it defines the optimal breeding window (15–25 ng/mL). LH assays exist but are not routinely available. Oestradiol peaks and falls before the LH surge and is not useful for timing breeding.

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Educational disclaimer: This article is for veterinary students and licensed professionals. It is not a substitute for case-specific clinical judgment, local formulary rules, or current drug labels. Always verify doses, legality, and species contraindications before treating.
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