Dog Surgery Recovery


Help your dog heal comfortably after surgery


Build a recovery plan with a trained clinician?

Written by: Alon Landa
Medically reviewed by: Kristy Williams, CVT, CCFT (Specialties: Pet rehabilitation, pain management, photobiomodulation)

Reviewed: [May 2026]
Updated: [May 2026]

How long does dog surgery recovery take?

Dog surgery recovery depends on the type of surgery, the procedure performed, your dog’s age, your pet’s condition, and how closely you follow your veterinarian’s instructions. Soft tissue procedures often take 10 to 14 days for early healing, while orthopedic surgery can take 8 to 12 weeks or longer. Most surgical incisions start healing visibly within 7 to 14 days, but full recovery from more complex surgeries can take 4 to 8 weeks or several months.

If your dog recently had surgery and you want to know whether red light therapy may support healing:

Gideon

The first 24 hours after dog surgery

The first night home can feel weird for both you and your dog.

Anesthesia can leave dogs tired, shaky, groggy, or disoriented for up to 24 hours after dog surgery. Mild lethargy is common. Your furry friend may sleep more than usual, move slowly, or seem a little unsure of their body.

Keep your dog calm. Set up a quiet, warm recovery area away from other pets, kids, stairs, and household noise. A crate, pen, or small room works well.

During this time, focus on the basics:

  • Give medications prescribed by your veterinary team
  • Offer water in small amounts
  • Feed a small meal if your dog is interested as your vet recommends
  • Help your dog outside for bathroom breaks on a short leash
  • Watch the surgical site
  • Prevent licking
  • Keep activity low

Do not expect normal energy right away. The digestive system may also be slow after anesthesia and pain medications. Some dogs do not have normal bowel movements for a day or two.

Eating and drinking after surgery

After surgery, many dogs have a lower appetite for 12 to 48 hours. That can happen because of anesthesia, pain medications, stress, or nausea.

After surgery, many dogs have a lower appetite for 12 to 48 hours. That can happen because of anesthesia, pain medications, stress, or nausea.

Offer smaller, more frequent meals at first. If your dog is reluctant to eat regular food, your veterinarian may suggest a bland diet such as chicken and rice because it is easier to digest. Always follow your vets recommendations in feeding, some abdominal surgeries may require very strict restrictions.

Call your veterinarian if your dog does not eat anything for more than 48 hours after surgery. Lack of appetite can be a sign of pain, infection, nausea, or another complication.

Water matters too. Make sure your dog can reach food and water without climbing, slipping, or moving around too much.

Pain management after dog surgery

Pain management after dog surgery

Pain management is one of the most important parts of dog surgery recovery. Veterinarians often create a plan that uses more than one tool, which may include NSAIDs, opioids, and other medications or therapies.

Give pain medications exactly as prescribed. Follow the dose, timing, and full post operative instructions from your veterinary team.

Do not give human medications unless your veterinarian specifically tells you to. Human medications can be dangerous for dogs, including common options like ibuprofen, acetaminophen, and aspirin.

Signs of pain in dogs can include:

  • Whining
  • Panting
  • Restlessness
  • Reluctance to move
  • Hiding
  • Changes in behavior
  • Not wanting to eat
  • Trouble settling
  • Guarding the surgical site

If pain worsens, contact your veterinarian immediately. Your dog does not need to tough it out.

Activity restrictions after surgery

Activity restrictions protect the incision site and the tissue healing underneath it.

For most dogs, activity should stay very limited for the first 10 to 14 days after surgery. That means no running, jumping, stairs, rough play, furniture, or off-leash activity unless your veterinarian says otherwise.

Short leash bathroom breaks are usually fine. Keep them boring. No sniff tours around the neighborhood.

During the recovery period, excessive activity can put tension on the incision site. That tension can delay healing, open the incision, or cause a seroma, which is a fluid-filled swelling under the skin.

For orthopedic procedures, abdominal procedures, and more complex surgeries, the activity restrictions may last much longer. Orthopedic surgery may require weeks of careful confinement, controlled walking, follow up appointments, and physical therapy.

Your dog may feel better before the body is healing properly. That is the danger zone. Stay consistent.

How to set up a safe recovery area

Your dog’s recovery space after surgery should make rest easy.

Your dog’s recovery space should make rest easy.

Choose a quiet room, crate, or gated area. Add soft bedding, but keep it low enough that your dog does not need to climb. Use rugs or yoga mats if the floor is slippery.

Keep these nearby:

  • Water
  • Food
  • Medications prescribed by your veterinarian
  • A leash for bathroom breaks
  • The Elizabethan collar
  • Clean bedding
  • Post operative instructions
  • Your veterinary care contact information

Keep other pets away. Even gentle petting from a person is usually safer than excited nudges from another dog.

Your job is to reduce physical strain while still giving emotional support. Surgery can be stressful for dogs. The recovery process can feel confusing, uncomfortable, and lonely.

Be patient. Sit nearby. Use a calm voice. Offer gentle petting if your dog wants it.

Incision care after dog surgery

The incision site needs daily attention. Check your pet’s incision at least twice a day for signs of healing progress or complications.

A small amount of redness, swelling, and bruising can be normal. Mild irritation can also happen, especially if the incision rubs against bedding or your dog tries to lick it.

Warning signs include:

  • Excessive swelling
  • Redness that spreads
  • Discharge
  • Foul odor
  • Opening of the incision
  • Bleeding
  • Discoloration
  • Heat
  • Increased pain around the surgical site

Signs of infection at the incision site can include redness, swelling, discharge, or a foul odor. Contact your veterinarian if you notice these symptoms.

Keep the incision area dry. Avoid bathing your pet until your veterinary team clears it. Do not apply topical ointments, creams, sprays, or bandages unless prescribed.

Skin sutures or staples typically stay in place for 10 to 14 days. Some dog’s stitches dissolve on their own, while others need removal at a follow up appointment.

Why the E-collar matters

The Elizabethan collar, often called an e-collar, helps prevent licking and chewing. It can feel annoying. Use it anyway.

Make sure the e-collar is on properly and your dog cannot get around it to the incision.

Licking can delay healing, introduce bacteria, and cause infection. Some pets can damage an incision in minutes.

If your dog cannot tolerate a cone, ask your veterinary team about other options, such as a recovery suit, inflatable donut, bite-not collar or properly placed cover. The goal is simple: keep the surgical site protected.

When to call your veterinarian immediately

Recognizing signs of complications can protect your dog’s recovery.

Contact your veterinarian if you notice:

  • Persistent vomiting
  • Inability to urinate
  • Excessive lethargy
  • Unusual swelling at the incision site
  • Discharge or foul odor
  • Pale gums
  • Trouble breathing
  • Severe pain
  • Refusal to eat for more than 48 hours
  • Incision opening
  • Bleeding that does not stop
  • Sudden change in your dog’s energy

Seek emergency care if your dog is straining to urinate, vocalizing, or showing signs of distress while trying to urinate. That can signal a medical emergency that needs immediate veterinary care.

If your dog seems excessively lethargic, has pale gums, collapses, or appears very weak, seek emergency care.

When in doubt, call. Veterinary advice is better than guessing.

Mental stimulation during recovery

Dogs get bored during recovery. Very bored.

The trick is to give mental stimulation without increasing your pet’s physical activity. Puzzle toys, food-dispensing toys, lick mats, and scent games can help your dog stay engaged without overexerting themselves.

Keep it low movement.

Good options include:

  • Frozen lick mats
  • Snuffle mats used in place
  • Treats hidden in a towel
  • Food puzzles that do not require standing
  • Gentle scent games in the recovery space
  • Calm training cues like touch or chin rest
  • preparing normal meals in stuffable puzzle toys, can freeze for a further challange

Mental stimulation helps your dog feel less frustrated while still protecting the healing process.

Physical therapy after surgery

Physical therapy depends on the type of surgery. Some dogs need no formal rehab. Others, especially after orthopedic surgery, may need a careful plan to rebuild strength, improve movement, and prevent future issues.

A veterinary team may recommend:

  • Passive range of motion
  • Controlled leash walks
  • Weight shifting
  • Assisted standing
  • Gentle strengthening
  • Later, more advanced exercises

Do not start exercises without veterinary guidance. The right movement can help your dog recover. The wrong movement can delay healing.

For orthopedic procedures, physical therapy may be a major part of your pet’s recovery.

How red light therapy supports dog surgery recovery

How red light therapy supports dog surgery recovery

Photobiomodulation (PBM), also called red light therapy, low-level laser therapy, LED therapy, cold laser, and near-infrared therapy, refers to the same therapeutic category using light energy to influence cellular biology.

Red light therapy can support dog surgery recovery by helping reduce inflammation, manage pain, improve local circulation, and support tissue repair around the surgical site. It can be especially helpful when your dog is resting, healing, and waiting to safely return to normal movement.

Learn more about the science here: Science of Red Light Therapy.

Why Luma is helpful after dog surgery

The MedcoVet Luma gives pet owners a way to support healing at home between veterinary visits.

Luma uses red and near-infrared light to support cellular repair, reduce inflammation, and improve comfort. It is non invasive, drug free, and designed for home use with clinician guidance.

That matters because most of your dog’s recovery happens at home.

Luma can support:

  • Comfort near the surgical site
  • Reduced inflammation
  • Tissue repair
  • Pain management support
  • Healing progress
  • Recovery after orthopedic surgery
  • Recovery after soft tissue procedures
  • Better comfort during the recovery period

Luma does not replace your veterinarian’s instructions, pain medications, incision care, follow up visits, or emergency care when needed. It supports the body’s healing process as part of a proper care plan.

Read more here: Red Light Therapy for Post-Surgical Healing in Pets.

For a broader guide, visit Red Light Therapy for Dogs.

Want to know if Luma is right for your dog after spay surgery?

Hunter

MedcoVet’s clinical view on surgery recovery

MedcoVet focuses on photobiomodulation protocols for dogs across surgery recovery, pain, arthritis, and mobility support. Our clinical approach considers the type of surgery, tissue depth, recovery period, pain level, inflammation, and safe use at home.

Dog surgery recovery works best with a clear plan: veterinary care, prescribed medications, activity restrictions, incision monitoring, emotional support, and careful return to movement.

Red light therapy fits into that plan by supporting the body’s natural repair process.

Questions pet owners ask after dog surgery

Most dogs are tired, shaky, or groggy for up to 24 hours after anesthesia. Mild lethargy can continue for a few days, but your dog should gradually improve.

Offer a small meal the first night home. Appetite may be reduced for 12 to 48 hours. If your dog refuses all food for more than 48 hours, contact your veterinarian. Always follow your vets recommendations for feeding after surgery.

No, avoid bathing until your veterinarian clears it. The incision area needs to stay clean and dry.

Use the Elizabethan collar or another vet-approved barrier. Licking can delay healing and cause infection.

A healing incision may have mild redness, mild swelling, or light bruising. Call your veterinarian if you see discharge, foul odor, spreading redness, excessive swelling, bleeding, or opening.

Minor procedures may need about a week to 10 days, while soft tissue procedures often need 10 to 14 days. Orthopedic surgery and more complex surgeries may take weeks or months.

No. Give prescribed medications exactly as directed. Red light therapy can support comfort and healing, but medication changes should come from your veterinarian.

Clinical summary

Mechanism:
Dog surgery recovery depends on incision healing, inflammation control, pain management, tissue repair, and activity restriction. Red light therapy supports cellular activity, local circulation, and inflammatory balance during healing.

Evidence level:
Post operative instructions, incision care, pain medications, activity restriction, and follow up visits are standard parts of veterinary care. Photobiomodulation has moderate support for pain control, inflammation reduction, and wound healing.

When it works best:
Red light therapy works best during early and mid-stage recovery when pain, swelling, inflammation, and tissue repair are active concerns. It may be especially useful after orthopedic surgery, abdominal procedures, and complex surgeries with longer recovery periods.

When not to use:
Do not use red light therapy over an untreated infection, open incision without veterinary approval, or known malignant tumor unless directed by a veterinarian. Seek veterinary care for warning signs or sudden decline.

Help your dog heal with clear support

Dog surgery recovery can feel stressful. A clear plan helps both you and your dog.

Follow your veterinarian’s instructions. Give pain medications on schedule. Keep the incision protected. Limit activity. Watch your dog closely.

And when you want extra support for healing at home:

Want a clinician to help you think through your pet’s recovery?

Lucy

Evidence Citations

  • Home-use Photobiomodulation for Pain Management and Recovery after Lower Third Molar Extraction: A Pilot Split-Mouth Study

    By Altayeb

    • 2025

    • Journal: J Lasers Med Sci

    Abstract: “The PBM group showed significantly reduced pain (Day 3: P=0.001), swelling (Day 7: P=0.001), and trismus (Day 4: P=0.037), with sustained improvements through Day 7. Analgesic use was significantly lower in the PBM group (Day 4: P=0.001), demonstrating PBM’s analgesic and anti-inflammatory effects.”

    One Sentence Outcome:”The PBM group showed significantly reduced pain (Day 3: P=0.001), swelling (Day 7: P=0.001), and trismus (Day 4: P=0.037), with sustained improvements through Day 7. Analgesic use was significantly lower in the PBM group (Day 4: P=0.001), demonstrating…

    Study Parameters:Sessions: daily for 7 days; Notes: At-home device

    Device Parameters: Wavelength: 630+ 660+ 850+ 940

    Evidence Level:Randomized controlled trial

    Study Type: Human Non-randomized study, split-mouth 12 participants ⌛ 7 days

    Outcome Direction: Positive

  • Effect of the topical Klox fluorescence biomodulation system on the healing of canine surgical wounds

    By Salvaggio et al.

    • 2020

    • Journal: Vet Surg

    Abstract: “Half of the length of each surgical wound was treated with Phovia, and the remaining 50% was treated with saline solution on the first day after surgery and every 3 days until day 13.” “Phovia therapy improved re-epithelialization, decreased dermal inflammation, and improved matrix formation in uncomplicated cutaneous incisional wounds by regulating the expression of key biological mediators.”

    One Sentence Outcome:”Half of the length of each surgical wound was treated with Phovia, and the remaining 50% was treated with saline solution on the first day after surgery and every 3 days until day 13.”

    Study Parameters:Fluorescence PBM

    Device Parameters:

    Evidence Level:Controlled veterinary clinical study

    Study Type: Dog (n = 10)

    Outcome Direction: Positive

  • Effects of low-level laser therapy on the healing of surgically closed incisions and surgically created open wounds in dogs.

    By Gammel et al.

    • 2018

    • Journal: Vet Surg

    Abstract: “LLLT did not appear to influence the healing of surgically created incisions and small wounds with the methodology reported here.”

    One Sentence Outcome:”LLLT did not appear to influence the healing of surgically created incisions and small wounds with the methodology reported here.”

    Study Parameters:Punch excision wound

    Device Parameters: wavelength: 980; radiant exposure: 5; sessions: 5

    Evidence Level:Controlled veterinary clinical study

    Study Type: Dog

    Outcome Direction: Null/negative

  • Comparative photobiomodulatory effects of 660 nm, 810 nm, and 940 nm diode lasers on platelet-rich fibrin: an ex vivo study on structural remodeling and VEGF/PDGF-BB release for enhanced periodontal healing

    By Kohir

    • 2025

    • Journal: Lasers Med Sci

    Abstract: “Twenty PRF samples from healthy volunteers were divided into non-irradiated controls and subgroups irradiated at specific wavelengths. Structural changes were analyzed via scanning electron microscopy (SEM), while VEGF and PDGF-BB concentrations were quantified using enzyme-linked immunosorbent assay (ELISA). SEM revealed that 940 nm irradiation induced the most pronounced structural alterations, with 80% irregular fibrin fiber arrangement under low magnification, compared to smoother fibers in controls. Conversely, 660 nm irradiation significantly increased growth factor release, with PDGF-BB levels rising to 52.89 ± 6.70 pg/mL (p < 0.001 vs. controls: 40.17 ± 2.75) and VEGF to 52.30 ± 27.54 pg/mL (p = 0.021 vs. controls: 41.83 ± 16.52). Statistical analysis (one-way ANOVA, paired t-tests) confirmed wavelength-dependent effects, with 660 nm and 810 nm showing comparable efficacy (p = 0.999), while 940 nm underperformed in growth factor release."

    One Sentence Outcome:”Twenty PRF samples from healthy volunteers were divided into non-irradiated controls and subgroups irradiated at specific wavelengths. Structural changes were analyzed via scanning electron microscopy (SEM), while VEGF and PDGF-BB concentrations were…

    Study Parameters:

    Device Parameters: Wavelength: 660 810 940

    Evidence Level:Preclinical / animal study

    Study Type: Ex vivo (human platelet rich fibrin)

    Outcome Direction: Positive

  • A radiographic and histological study to compare red (650 nm) versus near infrared (810 nm) diode lasers photobiomodulation for alveolar socket preservation

    By Othman

    • 2024

    • Journal: Sci Rep

    Abstract: “Radiographically, infrared (810 nm) Diode effect on alveolar bone surface area has significantly exceeded the red laser, while histologically, red (650 nm) Diode has demonstrated statistical significance regarding all parameters; newly formed bone surface area percentage, unmineralized bone area percentage and finally Osteocalcin bone marker reaction surface area percentage and optical density. Under the specified conditions and laser parameters, photobiomodulation using the 810 nm Diode got the upper hand radiographically, yet histologically, the red 650 nm Diode managed to dominate all histological parameters when both employed as an adjunct to alveolar socket preservation procedures.”

    One Sentence Outcome:”Radiographically, infrared (810 nm) Diode effect on alveolar bone surface area has significantly exceeded the red laser, while histologically, red (650 nm) Diode has demonstrated statistical significance regarding all parameters; newly formed bone surface…

    Study Parameters:Area: 0.28 cm2 spot area; Time: 180 (3p); Sessions: 6 / 15 days; Notes: Wavelength comparison

    Device Parameters: Wavelength: 650 810; Power: 100; Irradiance: 0.35; Fluence: 63

    Evidence Level:Randomized controlled trial

    Study Type: Human ⚔ Comparison study, randomized, double-blind 20 participants ⌛ 15-day treatment / 3-month study

    Outcome Direction: Positive

  • Effects of Near Infrared Light on Surgical Wound Healing: A Systematic Review and Meta-Analysis

    By Liu

    • 2026

    • Journal: Int Wound J

    Abstract:

    One Sentence Outcome:

    Study Parameters:

    Device Parameters: Wavelength: “Fifty-six trials (N = 4920) were included for systematic review and 35 trials contributed 69 outcomes to meta-analysis. NIR significantly improved wound healing (0.78, [0.46-1.09], p < 0.01) and reduced postoperative pain (0.71, [0.24-1.17], p < 0.01), but heterogeneity was high and effects varied across studies. Optimal outcomes were associated with short NIR wavelengths (700-850 nm), 4-10 sessions and non-contact application. Effects on swelling, scarring and inflammatory markers were inconsistent. Overall, certainty of evidence was very low. This first systematic review and meta-analysis indicates that NIR therapy demonstrates promise for enhancing postoperative healing and reducing pain, though effects vary by protocols."

    Evidence Level:Systematic review / Meta-analysis

    Study Type: Meta-analysis

    Outcome Direction: Unclear / review

  • Low-level laser acupuncture reduces postoperative pain and morphine consumption in older patients with total knee arthroplasty: A randomized placebo-controlled trial

    By Huang

    • 2022

    • Journal: J Integr Med

    Abstract: “Low-level LA gradually reduced older patients’ postoperative pain intensity and morphine consumption within the first 72 h after their TKA for osteoarthritis. Low-level LA may have benefits as an adjuvant pain management technique for clinical care.” Comment: The parameters were insufficiently reported. According to a Google search, it seems the TI-816-3E2 device has a beam area of less than 1 cm2.

    One Sentence Outcome:”Low-level LA gradually reduced older patients’ postoperative pain intensity and morphine consumption within the first 72 h after their TKA for osteoarthritis. Low-level LA may have benefits as an adjuvant pain management technique for clinical care.” …

    Study Parameters:Time: 60 (6p); Notes: Laser acupuncture

    Device Parameters: Wavelength: 808; Power: 300; Energy: 18 (6p)

    Evidence Level:Randomized controlled trial

    Study Type: Human Randomized trial, sham-controlled 82 participants

    Outcome Direction: Positive

  • High-intensity light therapy for post-interventional complications and pain after minimally invasive spinal procedures: a case series

    By Babcock

    • 2026

    • Journal: Lasers Med Sci

    Abstract: “In the HILT group, pain levels and tissue oxygenation were assessed before and after each of two HILT sessions. The postoperative complications for each group were compared at each of the two follow-up visits. Tissue oxygenation levels were significantly higher after each HILT application at each visit, and pain was significantly reduced after each HILT application compared to before treatment. There was no significant difference observed in the postoperative complications between the control group and the HILT group. These results suggest that the use of HILT in the minimally invasive spinal intervention postoperative setting improves patient outcomes.”

    One Sentence Outcome:”In the HILT group, pain levels and tissue oxygenation were assessed before and after each of two HILT sessions. The postoperative complications for each group were compared at each of the two follow-up visits. Tissue oxygenation levels were significantly…

    Study Parameters:

    Device Parameters:

    Evidence Level:Clinical study

    Study Type: Human Case series (two cohorts: 16 LLLT and 16 controls) 32 patients

    Outcome Direction: Mixed

  • The effect of photobiomodulation therapy on guided tissue regeneration in a canine model

    By Fekrazad

    • 2025

    • Journal: J Dent

    Abstract: “The control group (C) had the highest mean junctional epithelium length (1.40 mm), but differences among groups were not statistically significant (P > 0.05). Connective tissue attachment was significantly greater in C (1.33 mm) compared to M (1.04 mm) and LM (0.96 mm) (P < 0.05). Cementum regeneration was significantly higher in LM (2.13 mm) compared to C (1.10 mm) (P < 0.05), though no significant difference was found between LM and M (P > 0.05). The mean percentage of new bone formation was significantly higher in LM (40.33 %) compared to M (35.83 %) and C (18.66 %) (P = 0.05, P < 0.05)." "The adjunctive application of PBMT enhanced cementum and bone regeneration in periodontal defects without any observed adverse effects. While the findings support the potential benefit of PBMT as a regenerative adjunct to GTR, further studies with larger sample sizes and longer follow-up periods are warranted to confirm these results and explore long-term outcome"

    One Sentence Outcome:”The control group (C) had the highest mean junctional epithelium length (1.40 mm), but differences among groups were not statistically significant (P > 0.05). Connective tissue attachment was significantly greater in C (1.33 mm) compared to M (1.04 mm)…

    Study Parameters:

    Device Parameters:

    Evidence Level:Preclinical / animal study

    Study Type: Dog

    Outcome Direction: Negative / null

  • Histopathology Findings of Low-Level Laser Therapy Effectiveness on Achilles Tendon Repair in Rabbit Model

    By Tabrizi

    • 2025

    • Journal: Vet Med Sci

    Abstract: “The study’s histopathological and immunohistochemical analysis revealed that LLLT at 650 and 750 nm significantly improved tendon healing compared to the control group (p < 0.05). The treated groups exhibited better organized tendon fibres with reduced discontinuity, collagen fibre waviness, and inflammatory response (p < 0.05). Both laser wavelengths showed similar results with no significant differences between them (p > 0.05), but both were notably better than the control group in reducing inflammation, enhancing fibre structure, and lowering levels of collagen type I (Col-I); collagen type III (Col-III); transformer growth factor beta (TGF-β); galectin-3 (galectin-3); VGF nerve growth factor inducible; vascular endothelial growth factor (VEGF), indicating a more effective healing process with LLLT.” “Due to our findings, LLLT at 650 and 750 nm effectively reduced inflammation, improved structural integrity, and enhanced the organization of collagen fibres for Achilles tendon repair in rabbits.”

    One Sentence Outcome:”The study’s histopathological and immunohistochemical analysis revealed that LLLT at 650 and 750 nm significantly improved tendon healing compared to the control group (p < 0.05). The treated groups exhibited better organized tendon fibres with reduced...

    Study Parameters:Notes: Wavelength comparison

    Device Parameters: Wavelength: 650 750

    Evidence Level:Preclinical / animal study

    Study Type: Rabbit

    Outcome Direction: Mixed

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About the Author
Alon Landa is the CEO and co-founder of MedcoVet, a leader in at-home red light therapy for pets. With over 20 years of experience in medical technology and firsthand involvement in developing the Luma, Alon combines deep technical knowledge with a passion for improving pet health. He regularly collaborates with veterinarians and pet parents to advance photobiomodulation (PBM) care at home.
 📍 Based in Boston, MA
📖Read more from Alon here

Kristy Williams Medical Reviewer Headshot

About the Medical Reviewer
Clinical Focus: Surgery, anesthesia, canine fitness, injury prevention, agility
Kristy Williams brings over 30 years of experience to the veterinary field. Her career began in the 1990s, working as a civilian for the Army Veterinary Corps at RAF Feltwell in England, where she first discovered her passion for animal care and supporting their families. Upon returning to the United States, Kristy pursued her education and graduated in 2005 as a certified veterinary technician after passing the national exam. She has since gained extensive experience in both general practice and emergency/referral practices.
Read More about Kristy here.

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