Aotearoa, New Zealand is well-known for its large sheep population; in fact, there are around five times more sheep in NZ than people!1,2

This 5:1 population ratio sadly reflects how widely the animal agriculture industry exploits sheep. They are farmed not only for their wool, milk, and skin but also for meat and other products.

Sadly, the big-business of farming creates a demand for animal experiments as the industry aims to:

  • maximise the dollar output per animal;
  • innovate its’ way out of climate obligations, as well as
  • innovate its way into creating new consumer markets and product trends.

You can learn more about the connection between animal testing and the business of animal agriculture here.

Sheep are so commonly used for science in NZ that they were among the top four most used animals for research, testing, and teaching purposes from 1989 to 2020.

While a lot of sheep are used for research relating to animal agriculture, they are also used for other areas of research; some might surprise you!

For example, Sheep in NZ have been used for:‍
  • The production of biological agents such as antibodies to counteract bacteria, viruses, and foreign substances in the blood.
  • Orthopaedic research to model surgery of human pelvis muscles and how those muscles repair.
  • Sourcing tissue used for wound healing in human medicine (e.g., sheep stomach has been used to treat wounds and for reconstructive surgery in humans).
  • Research relating to animal agriculture, including studies aimed at:
    • trying to clone sheep to increase how quickly they will breed,
    • reduce the amount of methane emissions sheep produce, and
    • maximise the profitability of sheep farming by increasing productivity and reducing the number of sheep who get sick or die (i.e., research into fertility, longevity, leather, wool and meat quality, the risks of hypothermia after shearing, infections, parasites, and diseases such as facial eczema).
  • Medical research, including trying to model humans in research relating to:
    • injuries  - head trauma, bone grafting, vocal fold injury and muscle tears;
    • lifestyle impacts on health  - exercise, undernourishment, and dietary supplements;  
    • diseases - Batten disease (which kills off brain cells), hypertension, heart failure, MPS IIIC (which deteriorates the brain and spinal cord),  osteoporosis, Huntington’s disease (which breaks down the nerve cells in the brain), pregnancy complications (C-sections, pre-term, and twin-birth complications) and trialing drugs and medical devices (like brain implants).
  • Basic biological research, including research into ageing and the dynamics of blood circulation within the body.

Places that use sheep for science in NZ include private companies, universities, polytechnics and Crown Research Institutes. Crown Research institutes and our universities and polytechnics are owned and funded by our government. 

Sheep used for science in NZ are sourced from farms and other public and commercial sources, and many are born during projects.

Discover real-life examples of how sheep have been used in NZ below!

Studying selenium metabolism

Cats and dogs were fed diets with different selenium supplementation for three weeks in individual metabolic chambers. A liver biopsy was taken under anaesthesia.

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Monitoring wild cats via GPS collar

Wild cats were caught and fitted with GPS collars. After an average of 9.75 days, there were recaptured to retrieve the collars.

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Testing new toxin against stoats and wild pets

Dogs, cats and stoats were fed different versions of toxic bait. Symptoms and time of death were monitored. Four dogs and two cats survived, but their fate is not stated.

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Testing the efficacy and shelf-life of a toxin

Captive wild cats were used to compare the efficacy of different toxin formulations and the effect of more extended bait storage. Cats were fed the toxin bait or pipette-fed toxin directly as control. Symptom onset and time of death were monitored.

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Investigating how worms spread between lambs and calves

Lambs and calves were infected with worm eggs to see if parasites from cattle can infect sheep.

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Testing a fertility treatment

Cows with fertility problems were treated with hormones for ten days or left untreated. All were then artificially inseminated.

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Testing a supplement for more calcium intake

Pregnant cows were fed with or without a specific feed additive. After birth, all were fed the same diet. Blood samples were taken in the weeks around birth.

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Checking endometritis rates in dairy herds

Some cows in several dairy herds were selected, and their vaginal discharge was measured and sampled. They were then impregnated as per standard agricultural practice.

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Comparing weight gain with different diets

Newborn calves were raised on various milk, pasture, and pellets combinations. They were slaughtered at two years old, and their “quality” was measured.

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Testing pain meds for disbudding

The horn buds of young calves who were slightly sedated were burned off with a hot iron. Half of them received pain meds beforehand, and blood samples were taken before and after. After 24 hours, the second group received pain meds, too.

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Studying Ikeda infection and treatment

Regular blood samples were taken from cows on three different farms. Only some were treated against the parasite. Milk production and fertility were recorded.

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Studying diarrhea infection

New mother cows had blood samples taken. If the sample was negative for a diarrhoea virus, they were sampled again after a while.

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Studying genes for body size

Udders of dairy cows were slightly cut with a scalpel, and a tissue sample was taken with a biopsy needle.

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Testing toxicity of a potential new fertiliser

Pigs were fed toxic bait and monitored until they died.

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Studying stress around birth

Blood samples were taken from cows with a high or low risk of health concerns after birth.

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Studying genetics of a missing tail

Cloned foetuses were implanted into female cattle to research taillessness. Some of them were killed during pregnancy to examine the foetuses. One tailless animal was killed at age 4, and one of the cloned calves died after birth.

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Studying Ikeda (parasite) infection

Blood samples were taken from dairy cows and their calves directly after birth before separating them. After four months, the calves were sampled again.

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Studying Osteoporosis in cows

Young female cattle who had given birth for the first time were sent to slaughter. Half of them had broken bones for between 2 and 10 days. Blood samples were taken before slaughter, and bones were collected after.

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Testing a tuberculosis vaccine

Male calves were infected with bacteria. Two groups were vaccinated before or after the infection, and the third group was left untreated. All were killed and dissected 13 weeks later.

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Testing feeding plans for better immunity after calving

Pregnant cows were fed either a bit too much or a bit too little. Blood samples were taken before, at, and after calving. Researchers also took liver samples with a 20-cm biopsy needle and vaginal samples with a small brush and a scoop at these dates, except for the date of birth.

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Analysing Greyhound race injury statistics

Historical data on Greyhound races between 2014 and 2019 were analysed. Injuries and deaths were investigated.

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Using bones of euthanised shelter dog

Cadavers of dogs killed at an animal shelter were donated. Holes were drilled into leg bones and fitted with screws.

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Investigating farm dogs for four years

Working farms dogs were examined regularly for four years. Health problems and fate were recorded.

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Transplanting faeces as diarrhoea treatment

A dog with diarrhoea was treated with laxatives and warm water before a faeces sample from a healthy dog was inserted into his colon. Samples were taken before and after.

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Testing the eyes of working dogs

Eye examinations were performed on working sheep dogs. Medication for pupil dilation was given, and faeces samples were taken from most dogs.

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Analysing dog movements

Colony dogs were prepared with reflective markers and an activity collar. Their movements on a treadmill at various speeds were recorded.

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Testing the effect of diet on farm dog performance

Working dogs were fed a diet very high or very low in carbohydrates. Their blood glucose and activity were monitored three times over four days each.

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Testing a parasite treatment

After a pilot study with just one dog, six more were given an experimental parasitic treatment. Regular blood samples were taken through a catheter.

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Teaching dogs to smell out catfish

Five pet dogs were trained over several months to identify catfish and goldfish smell in water samples.

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Testing different combinations of pain meds

Eight dogs are treated with four different combinations of the test drugs in random order with two-week breaks in between. Two catheters are placed in leg veins (for drug injection and blood samples). For the test, dogs are fasted for 12 hours and anaesthetised. EEG is recorded with electrodes near the brain to measure response to electric shocks. Regular blood samples are taken for 8 hours.

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Studying medical data of cat and dog CT-imaging

Medical data from cats and dogs were gathered, and animals that had been euthanised for other reasons were examined.

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Teaching dogs to smell out koi carps (2019)

Three pet dogs were trained over several months to identify koi carb smell in water samples.

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Testing working dogs for internal parasites

Faeces and blood samples were taken from working farm dogs.

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Testing fluid management of dogs during anaesthesia

Dogs were anaesthetised. Their heart activity was measured while hey were injected with calculated amounts of fluid.

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Trying to make rat poison unattractive for dogs

Dogs were fasted overnight and then given two food bowls with different kinds of repellent on one of them.

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Surveying respiratory disease in racing Greyhounds

Laboratories sent in serum samples of dogs for analysis. Additionally, 17 racing Greyhounds were tested.

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Studying how viruses spread in fish

Fish were caught with nets and killed.

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Using fish to study the impacts of Climate Change

Fish were either bought or caught and killed so that they could be dissected.

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Overfeeding Zebrafish to learn about obesity

Normal and transgenic zebrafish were fed normally or way too much. The fish were taken out of the water for glucose tests and blood samples.

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Studying gut bacteria in fish

Nine fish were caught by underwater spearing and killed so that samples could be collected from their digestion tracts.

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Studying the sleep of sharks

Sharks were caught and kept in outside tanks. For the experiments, they weren't fed for at least 4 days, of which they spent 3 days in a measuring chamber not much bigger than the shark. Oxygen consumption and behaviour were continuously recorded for the last 24 hours.

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Infecting fish larvae as a potential model for humans

Zebrafish larvae were injected with bacteria to test how their immune system responds. This was repeated to test how well the immune system reacted and how long the effect lasts.

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Finding a “growth gene” in snappers

Snappers were caught from the wild and bred. Around eighty-thousand of their offspring were hatched and raised. At regular “grading” events, injured and deformed fish were disposed of. At just under a year old, around twenty-two-thousand were left and transported to a sea pen, where they were raised to 17.5 months old before harvesting.

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Testing how much fat you can feed fish

Fish in aquaculture were divided into groups and fed diets with different fat content. Fish were anaesthetised and faeces samples squeezed out of them.

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Testing fish for mercury contamination

Wild fish were caught, measured and frozen to be analysed.

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Measuring how stress affects fish

Fish were exposed to chronic stress for four weeks, while 57 non-stressed animals were kept as a control. Signs of stress were noted. At the end of the experiment, all were chilled to death.

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Exposing fish to herbicides

Zebrafish were kept in tanks that were contaminated with different herbicide concentrations for 10 days. They were then mated to herbicide-exposed or control fish. Both generations were tested on behavioural changes at around 4 months of age. 24 fish per treatment were killed and dissected.

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Testing supplements as protection from toxins in over 1,000 fish embryos

Embryos were harvested and kept in Petri dishes for toxicity and treatment tests. Embryos were treated with an antioxidant, a gold salt or both on the first day, and abnormal development was measured on day 5.

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Studying effects of drying rivers on mudfish

Water depth and quality were measured at 24 different sites. Several traps for fish and invertebrates were set at 8 visits, sampling and mostly killing the caught animals (including 15 individuals of the endangered Kōwaro).

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Studying bacterial spread in fish larvae

Bacteria were genetically modified and made fluorescent. Zebrafish were bred, and their larvae were infected with the bacteria. The fish were killed for analyses or used for live imaging under a microscope (and then killed, most likely).

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Investigating effects of invasive fish removal

Using fyke nets and electrofishing, fish were caught on four occasions. Fish were marked with fin clippings around one big removal event where 3 tonnes of fish were caught. In recaptures a week after each marking event, invasive fish caught were killed after the examination.

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Studying fish life cycles

Fish were sedated and their blood and ovarian tissue were sampled three times.

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Questioning vets on pain management

Veterinarians completed a questionnaire regarding pain and pain management in rabbits and guinea pigs.

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Testing nerve reactions to electric stimulation

Young guinea pigs were bled to death. Specific nerves were removed and experimented on.

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Studying short-sightedness

Guinea pigs had one eye covered for two weeks before increasing their eye pressure surgically and kill them.

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Measuring nerve reactions to gases

Guinea pigs were anaesthetised, and their windpipe and blood vessels were cannulated. They were exposed to different gases and cyanide while measuring breathing and nerve activity.

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Studying how anaesthesia affects breathing and heart

Guinea pigs were put in airtight chambers to test the effects of low oxygen. Some were surgically fitted with tubing so blood samples could be taken during the tests. In the end, all were killed.

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Studying compensation after inner ear destruction

Guinea pigs were anaesthetised, and their inner ear was destroyed with a drill. Videos were made for over two days of their balance recovery.

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Killing pregnant guinea pigs for tissue cultures

Pregnant guinea pigs were anaesthetised at specific time points of their pregnancy, including during labour, to then remove the uterus for tissue culture experiments.

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Testing how oxytocin injections cause contractions

Pregnant guinea pigs were surgically implanted with electrodes on or near the uterus. They were injected with oxytocin in specific doses and timeframes, and the effects were measured.

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Harvesting testicles for studies

Male guinea pigs were killed with CO2 to remove their testicles for experiments.

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Testing a new tuberculosis vaccine

A new tuberculosis vaccine was tested by injecting guinea pigs with the bacteria, either with or without prior vaccination. After several weeks, all were killed.

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Testing how heart calcium metabolism is different in species

Guinea pigs and rats were decapitated, and their hearts were quickly removed to study them.

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Testing influences on the rate of a dissected heart

Albino guinea pigs were anaesthetised and dissected before they were killed.

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Confirming the correlation of energy storage and stress in the inner ear fluid

Guinea pigs were anaesthetised and artificially ventilated. Ear fluid samples were taken through a hole in the skull, while exposing them to noise or lack of oxygen.

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Comparing natural and genetically altered tuberculosis strains

Guinea pigs were infected with tuberculosis strains after being injected with bacterial proteins beforehand. In the end, all guinea pigs were killed and dissected.

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Comparing effects of anaesthetics on breathing and heart rate

Guinea pigs, rabbits and rats were anaesthetised, and a tube was put into their windpipe through the neck. They were made to breathe anaesthetic gas.

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Researching scoliosis genes

Transgenic mice with a specific gene defect were mated. Pregnant mice were at several time points. The unborn babies were taken, skinned, and gutted to stain their skeletons for better pictures.

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Studying hormone influences on obesity and fertility

Transgenic mice were bred to have diabetes symptoms. Together with control mice, they were fed a normal or a high caloric diet and compared for their fertility over 150 days.

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Testing a new stroke treatment

Mice were squeezed into plastic cones, and test drugs were dripped on their nose. An artificial stroke was caused by injecting a chemical into their brain. Before and after, mice had to perform behavioural tests. All were then killed to take their brains.

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Testing another new stroke treatment

Mice were operated on several times. They were made to experience an artificial stroke, were later injected with a possible treatment, and then were injected with a marker. The mice had their memory tested before they were killed.

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Testing prostate cancer drugs

Mice were anaesthetised, and their prostate was injected with cancer cells or a control solution. A 42-day treatment course started three weeks later with different treatment drugs and control solutions. In the end, all mice were killed.

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Testing a heart attack treatment

Mice were trained to eat jelly and then subjected to an artificial heart attack. They received either a new drug or a control substance. Regular heart ultrasounds were performed before they were killed and dissected.

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Studying ovary problems caused by testosterone

Transgenic mice were implanted with a capsule containing either hormones or not. Vaginal smears were done for several weeks, and serial blood tests were performed twice. In the end, all mice were killed.

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Testing an Autism treatment on transgenic mice

Mice were genetically modified to show "autism-like" symptoms. Together with control animals, they were either fed normally or with a high-zinc diet. Invasive behavioural tests were performed. At least some, likely all, were killed.

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Comparing transgenic mice and humans

Mice were anaesthetised, and their body composition was measured several times. Their grip strength and balance were tested with lab equipment. In the end, all mice were killed.

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Testing a new stroke drug for better dexterity

Transgenic mice were anaesthetised, and an artificial stroke was caused. They then received either a test drug or a control solution. After recovery, their food was limited to test their fine motor skills every other week. After two months, they were killed.

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Testing migraine drugs

Mice were injected with potential migraine drugs and anaesthetised. Ultrasound imaging of their ears was taken. One ear was rubbed with capsaicin to record the increased blood flow and compare different drugs, doses, and time points.

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Killing rats and mice for tissue

Rats and mice were anaesthetised, and their necks were broken. Their tissue was then used for research.

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Studying Alzheimer’s and stroke symptoms

One group of transgenic mice were bred and killed at either four or 12 months of age by flushing their hearts. Another group was anaesthetised and caused to have a stroke. They were killed the same way.

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Testing Alzheimer’s treatment on mice

Transgenic and “normal” mice were injected with a special protein and a chemical to mark new brain cells that may have been produced.

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Testing a new Alzheimer’s drug

Newborn mice were killed to collect brain tissue. Adult mice were used to test drug reactions. They were anaesthetised twice; to inject the drugs and to flush their hearts and take their brains.

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Testing if anaesthesia affects the sleep–wake cycle when combined with light treatment

Mice were kept on a 12-hour light/dark cycle and then switched to total darkness. During this time, they were exposed to light once, either with or without anaesthesia. The effect on their activity cycles was monitored. In the end, all were killed.

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Harvesting colon tissue for laboratory tests

Pigs were killed and their colon tissue was used for laboratory testing.

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Testing if pigs can be fed by-products from biofuel and food processing

Pigs were fed a standard diet or a diet containing by-products from other industries. They were slaughtered to compare meat growth and quality.

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Studying starch digestion in pigs to try and model humans

Pigs were fed different diets containing durum wheat or rice. Some had regular blood samples taken through a catheter. All the animals were killed at the end.

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Validating a treatment for stomach muscle dysfunctions

Pigs were anaesthetised, their bellies were opened, and electrodes were placed on their stomach walls before and after damaging some stomach tissue with heat. All pigs were killed.

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Assessing pigs as digestion models for humans

Titanium tubes were implanted into pigs’ intestines. Digested food was collected through the tube for 9 hours.

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Testing the effect of different species’ milk on brain gene expression

Piglets were fed different kinds of milk from other species for 15 days. They were killed to dissect their brains.

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Testing transmitter implantation on wild pigs

Wild pigs were captured, and three different tracking devices were fixed to or implanted into each one. After 104 days, they were tracked down and killed.

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Investigating oxygen content in the gut

Pigs were fed diets with different or no protein sources as a control. After a week, all were killed.

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Testing a UV treatment for bacterial eye infection

Pigs’ eyes were acquired for testing a new treatment, followed by tests on live mice, most of whom were killed.

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Testing the effect of different species’ milk on protein digestion

Piglets were fed different kinds of milk from other species for 15 days. They were killed to dissect their stomachs.

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Testing the strain on a temporary surgical implant

A surgical implant was screwed to a severed pig head, and measurements were taken via laser scanning.

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Investigating intestine movements

Young pigs and NZ White rabbits were anaesthetised. A part of their intestine was pulled out far enough to record its movements and signalling.

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Harvesting rabbit and pig eyes for lab tests

The eyes of slaughtered rabbits and pigs killed for experiments were used to analyse the structure of the cornea.

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Harvesting eyes for lab tests

The eyes of pigs and rabbits killed for experiments were used to analyse the structure of the cornea.

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Testing a treatment for stomach muscle dysfunctions

Pigs were anaesthetised, their bellies were opened, and electrodes were placed on their stomach walls before and after damaging some stomach tissue with heat. All pigs were killed.

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Testing how electric stimulation affects stomach movements

Nine pigs were anaesthetised, their bellies were opened, and electrodes were placed on the stomach walls. Electric stimulation tests were performed before the pigs were killed.

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Studying food intake in an autism "model"

Pregnant rats were injected to cause autism-like symptoms in their babies. The male babies were put through behavioural tests with control animals as well as a feeding study. Some were fasted for 16 hours and killed by flushing their hearts.

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Testing the safety of a probiotic supplement

Rats were force-fed with a probiotic solution or control solution. After two weeks, they were killed for dissection.

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Studying the effects of obesity and mussel powder on bone health

Rats were kept alone and fed different diets containing normal or high amounts of fat or sugar. Some were supplemented with Greenshell mussel powder. X-rays were done, and some rats' ovaries were removed. Ultimately, all were killed by bleeding them out.

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Testing if a brain region controls memory

Some rats had their brains surgically heat-damaged. Electrodes were implanted to monitor brain activity and to stimulate the damaged parts with light. Rats then had to re-perform memory tests to see the impact before all were killed.

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Studying the communication between inner ear and brain

Rats were anaesthetised, and their inner ear was partly removed, before parts of their brains were stimulated with wire electrodes. Reactions of the rat's eyes and brain were recorded. In the end, all rats were killed.

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Testing a connection between tinnitus and brain function

Rats were anaesthetised and one ear was damaged with noise. Rats were taught that silence meant they would get electric shocks and freeze in fear. This was a test for tinnitus.

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Testing diabetic rats’ hearts

Genetically diabetic fat rats and their lean littermates were anaesthetised. Ultrasound images were made from their hearts. All were killed and dissected.

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Testing the effect of diabetes on pregnancy hormones

Rats were anaesthetised, and their brain was accessed through the mouth to measure reactions to stimulation. In the end, all rats were killed.

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Trying to study schizophrenia

Half of a group of pregnant rats were injected to affect their babies' brain development. Some pups were allowed to grow up to test their behaviour.

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Releasing a rat family into the wild to see where they go

A wild-caught rat was mated, fed a fluorescent dye, and released again with her pups. Traps, tunnels, and cameras were set up to track and eventually recapture the animals, which did not work 100%.

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Comparing digestion of sheep versus cow milk yoghurt

Rats were fed cow milk, sheep milk, cow yoghurt or sheep yoghurt for two weeks. They were gassed with CO2 before their necks were broken.

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Testing a rat poison that is unattractive for dogs

Rats were kept in small cages and fasted overnight. Then, they were given two food trays. One of them was scented with lion, tiger, or dog faeces.

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Comparing digestion of sheep versus cow milk

Rats were fed a test diet containing beef protein and received cow milk or sheep milk instead of drinking water. After 28 days, all were killed.

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Testing medication after heart attack

Rats were anaesthetised, and their hearts were exposed. A heart attack was simulated by blocking an artery. Some had dye injected into their brains, and some were injected with test drugs. All animals were killed.

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Testing a medicine against drug addiction

Mice's tails were dunked in hot water. Rats were put through cycles of drug-seeking and withdrawal using self-injection of cocaine. Other rats were injected, and their behaviour was tested (with the notorious Forces Swim Test, among others).

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Studying cell death in breast tissue

Mother rats had some of their newborns taken away, and several of her teats were sealed off after two weeks. They were killed after different waiting times to analyse the dying tissue.

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Investigating how worms spread between lambs and calves

Lambs and calves were infected with worm eggs to see if parasites from cattle can infect sheep.

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Using sheep to try and model how well humans will heal after dental surgery

Sheep had healthy teeth pulled out and the sockets treated in different ways to compare how well the body will heal after a tooth is removed when left untreated vs using a bone graft.

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Preclinical testing of a gene therapy for Batten disease

Sheep with and without a specific gene mutation were checked and scanned regularly for nine months. Affected sheep received gene therapy at different ages. Treated sheep were killed.

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Testing if blocking a cell signal can prevent foetal brain injury

Pregnant sheep were anaesthetised, and the foetuses fitted with electrodes. The umbilical cord was blocked for most of them, and half were treated with a test drug. Mothers and unborn lambs were killed three weeks later.

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Testing the combination of drugs for congestive heart failure treatment

Sheep were anaesthetised and subjected to surgery. Electrodes were used to pace their hearts faster while testing the effect of different drugs.

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Testing the best way to deliver gene therapy drugs

Sheep were anaesthetised. Their heads were drilled into, and their brains injected with test drugs. They were killed after three weeks.

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Testing the potency of pneumonia vaccines for sheep

Lambs were vaccinated twice and regular blood samples were taken for 34 weeks, to test different pneumonia vaccines for sheep.

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Testing the effects and wash-out of painkillers

Lambs were treated with different painkillers or no painkillers at all before tail docking and castration. Their behaviour was monitored.

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Developing “hyperimmune” milk

Sheep were injected with Covid-19 vaccines to see if they produced milk that could be marketed to consumers as providing immunity against certain diseases.

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Studying the genetics of Batten disease on chimeric lambs

Sheep foetuses were removed. After swapping cells between them, they were inserted into other ewes. Lambs born were subjected to X-rays and, at one to three years old, were bled out for dissection.

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Testing pacemaker adjustments

After causing them heart failure, sheep were surgically fitted with pacemakers and measurement devices. Those who survived the procedures were killed after six months.

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Studying methane emission and meat quality

Lambs were tested and killed to assess the relationship between methane emissions, carcass weight and meat quality. Almost 2,000 were put through emission measurements. Over 17,000 were slaughtered.

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Studying the effect of chemicals in normal and high blood pressure

Sheep were surgically fitted with a clip around an artery and compared with others without clips. Measuring devices were added before injecting different chemicals into the hearts of the conscious sheep.

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Comparing success of muscle repair surgery with or without weeks of delay

Sheep were anaesthetised and one side of a pelvis muscle was detached. After several weeks, the muscle was repaired. How well the sheep then walked was noted before all were killed.

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Comparing different designs of dental implants

Sheep were anaesthetised. One leg bone was exposed and fitted with several implants. After 12 weeks, all were killed.

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Trying to model human brain injuries

To study changes in different areas of the brain after brain injuries. Sheep were used to study the effects of traumatic brain injuries in humans.

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Testing efficiency of strip-sowing 1080 bait

The toxin ‘1080’ was distributed as complete coverage and in a strip pattern. Effects on the wild rabbit numbers were evaluated.

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Testing new formulations of eye medication

The eyes of albino rabbits were treated with different medications. At regular intervals, several of them were killed.

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Taking blood samples over several days

Two New Zealand white rabbits were anaesthetised and restrained. Catheters were put into their ear veins to inject a solution and take regular blood samples.

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Harvesting rabbit caecum for more lab tests

Domestic dwarf rabbits were anaesthetised, their caecum was cut out, and then they were killed.

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Using rabbits as a model for human atherosclerosis

NZ White rabbits were fed pellets with or without added cholesterol for 10 weeks. They were killed with anaesthetic and taking blood from their heart until it stopped.

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Testing new drug formulations

NZ White rabbits were given a new drug formulation or ketamine. Righting reflex, paw withdrawal, and blood parameters were checked every minute.

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Infecting rabbits with a virus to have more samples of it

Samples of dead wild rabbits were taken to collect virus material. The virus was then used to infect rabbits and analyse their tissue.

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Injuring the sinus tract to test medication

NZ White rabbits were anaesthetised, and the sinus tracts in their nose were purposely injured to the bone. Two weeks after treatment, they were killed.

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Teaching animal researchers

A range of animals is used to teach researchers handling and experimental methods.

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Testing new drug formulations

Rats and rabbits were injected with a new anaesthetic, pinching their paw repeatedly to measure reflexes. Rats were giving the medication until they died.

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Testing the behaviour of a drug in rabbits’ blood

NZ White rabbits were infused with different medications, and blood samples were taken regularly for 24 hours.

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Testing a new drug delivery formulation

NZ White rabbits were injected with a radioactive solution, wrapped tightly, and recorded this way for 90min.

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Placing metal into rabbits’ jaws

NZ White rabbits were anaesthetised, and metal spheres were placed into their jaws. X-rays were taken to measure bone growth.

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Using rabbits as glaucoma surgery model

The eyes of NZ White rabbits were surgically opened and treated with different solutions. At intervals, some were killed to analyse the eye tissue.

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Monitoring vital signs of rabbits during intercourse

NZ White rabbits were anaesthetised and implanted with devices to measure vital signs. They were then monitored during intercourse.

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Harvesting rabbit caecum for lab tests

Domesticated rabbits were anaesthetised. Part of their digestive tract was removed, and then they were killed.

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