Pages

Showing posts with label Conservation. Show all posts
Showing posts with label Conservation. Show all posts

Saturday, 22 July 2023

From Birdwatching Chile to 'CONSERVATION EXPLORER PROGRAM' – Our Evolution and Expansion!

Hi everyone, thank you for joining me on this incredible journey through what I consider the most beautiful and vital area in the world – Conservation and Wildlife Management😉(for me). I am thrilled to share with you the story behind the "CONSERVATION EXPLORER PROGRAM," which has evolved significantly over the years.

Before its current name, the program was initially known as "Birdwatching Chile," a project I started with a former partner back in 2012. As tour operators, we focused on exploring nature and using it as a platform to teach people about wildlife and their natural habitats. The goal was to create a meaningful connection between humans and the environment, fostering a deep appreciation for the incredible biodiversity that exists in Chile.


However, due to various reasons and other commitments, we faced challenges, and unfortunately, the project had to be put on hold. But as they say, every ending is a new beginning. Fast forward to 2023, and I'm excited to announce that the program has been revitalized with a new name and a fresh purpose. Now, as the "CONSERVATION EXPLORER PROGRAM," we are ready to embark on this journey once again, with renewed enthusiasm and determination.
This time, the program is even more robust and comprehensive, thanks to the valuable lessons learned from our previous endeavor. We have gathered more knowledge and experience, allowing us to better educate and engage our participants in the wonders of conservation and wildlife management. But that's not all; we have also expanded our horizons and included another incredible country in our itinerary – South Africa.

South Africa, with its diverse landscapes and magnificent wildlife, presents an entirely new canvas for our conservation efforts. Through immersive experiences in South Africa's wilderness, we aim to inspire a greater sense of responsibility and understanding for the protection of wildlife and their ecosystems.

I am incredibly happy to embark on this journey once again, armed with a wide range of tools and a renewed dedication to this important cause. My ultimate hope is that my future students will find as much joy and wonder in this exploration as I do. With our new name and refreshed logo, I am confident that the "CONSERVATION EXPLORER PROGRAM" will be recognized and respected by all who share our passion for conservation and wildlife.

Thank you for being a part of this adventure, and I can't wait to share more with you as we embark on this transformative and awe-inspiring journey together. Let's work together to make a positive impact on the world we cherish!

Here are some pictures from Biowatchers Chile 
2012 - 2016
Mammal: (Myocastor coipus) and Bird:(Himantopus melanurus)

Andes Mountain Cajon del Maipo- Chile

Pinturas rupestres, Torres del Paine National Park - Chile

Viscacha (Lagidium viscacia)

Torres del Paine National Park - Chile

Puma (Puma concolor)Torres del Paine National Park - Chile


Chilean Iguana (Callopistes maculatus)

Huemul (Hippocamelus bisulcus)

Cuernos del Paine, Torres del Paine, National Park - Chile

Chilean Rose Tarantula (Grammostota rosea)

Guanaco (Lama guanicoe), Torres del Paine, National Park - Chile

Students Ecotourism, Chile

🌿🔍 Discover Our New Logo and Dive into Fascinating Conservation Topics! 🌍🦁 Whether you're an avid conservation enthusiast or just starting to explore the world of environmental protection, we've got something exciting for you. Feast your eyes on our fresh, captivating logo that symbolizes our commitment to preserving our planet's beauty. Step into our blog, where you'll find a treasure trove of thought-provoking articles on conservation. Delve into our experiences, learn from our insights, and get inspired to make a positive impact on the environment. And for an unforgettable learning adventure, book an immersive experience with us, where you'll witness conservation efforts in action. Come, join us on this incredible journey towards a sustainable future! 🌿🌳🐾









Wednesday, 24 May 2023

Battle Against Anaplasmosis, Babesiosis, and Ehrlichiosis: A Water Buffalo Recovery Story

Battle Against Anaplasmosis, Babesiosis, and Ehrlichiosis: A Water Buffalo Recovery Story

I still remember the day vividly when I got the call from a game reserve owner who had recently bought a few juvenile water buffalos. One had already died unexpectedly, and the owner was deeply concerned for the rest of the herd. This was to be my first case involving water buffalo in South Africa. As a dedicated veterinarian, I knew I had to act quickly. In this case study, I'll share with you how I managed to diagnose, treat, and prevent three common diseases in the herd, without even being physically present at the farm.

First Contact: The Mystery of the Fallen Buffalo

After the unfortunate death of one buffalo, I conducted a necropsy which revealed pathological findings consistent with anaplasmosis, babesiosis, and ehrlichiosis (heartwater). Let's take a moment to understand these diseases.

Anaplasmosis is a tick-borne disease that affects various animals, causing severe anemia and other health issues. The bacteria responsible, Anaplasma, invades the red blood cells, leading to their destruction.

Babesiosis, also transmitted by ticks, is caused by microscopic parasites that infect red blood cells. This disease can range from asymptomatic to severe, with symptoms including fever, hemolytic anemia, and hemoglobinuria.

Ehrlichiosis (Heartwater), another tick-borne disease, is caused by the bacterium Ehrlichia ruminantium, leading to severe symptoms such as fever, rapid and difficult breathing, and neurological signs including a high-stepping gait.

Given that these diseases are prevalent in the local area and that the symptoms and post-mortem findings were consistent with these diseases, I made the decision to treat the remaining buffalos for all three. Fortunately, the treatment for these diseases is similar, allowing us to cover all bases.

A Comprehensive Plan: Treating and Preventing Disease

We immediately started a treatment regimen for the entire herd, focusing on rickettsia and other protozoa, which are common causes of these diseases. The treatment was complemented with supportive care, including vitamins, nutritional support, and essential minerals to stimulate their rumen.

One week later, the owner called again, alarmed by the deteriorating health of one of the buffalos. Due to travel restrictions, I was unable to visit the farm, so we conducted the consultation remotely. The owner shared videos and photos of the ailing buffalo, and I guided him through the examination.

Embracing Telemedicine: Remote Diagnosis and Consultation

From the signs and symptoms, I concluded that the buffalo was likely suffering from either anaplasmosis, babesiosis, or ehrlichiosis (heartwater). We had to act fast, so we started the treatment plan we had previously established. This time, however, the buffalo remained weak even after the treatment. It was a tense period, but fortunately, on the fourth day, the buffalo took a turn for the better and began recovering. Soon, it was walking around and eating enthusiastically.

The Road to Recovery: Outcomes and Insights

The relief and joy on the owner's face were palpable even through our remote connection. He had suffered significant losses in the past, and the prospect of losing another animal was distressing. This experience underscored the importance of swift diagnosis and treatment, as well as the potential of remote veterinary consultations.

The success of this case is a testament to the importance of disease control and prevention. It was indeed a challenging situation, but it reaffirmed my faith in the power of veterinary medicine and the role it plays in preserving the health of animals, especially in a diverse ecosystem like a game reserve. I look forward to visiting the farm soon to take blood samples and verify my findings, ensuring there are no more flare-ups of these diseases.

See below for photos and videos of the case showing the progress of the treatment:





















Further Reading:

1. Antigens and Alternatives for Control of Anaplasma marginale Infection in Cattle

2. Tick-borne infections in human and animal population worldwide


NB. The owner of the water buffalo agreed to making this post available online for interested readers.



Saturday, 25 March 2023

The Lion’s Share: How Inbreeding Affects the Conservation and Management of South Africa’s Lions

The Lion’s Share: How Inbreeding Affects the Conservation and Management of South Africa’s Lions

Lions are among the most iconic and charismatic animals in the world. They are admired for their strength, beauty and courage, and they play a vital role in maintaining the balance of ecosystems. However, lions are also facing serious threats from habitat loss, human-wildlife conflict, poaching and disease. In South Africa, where lions are classified as vulnerable, there are various efforts to conserve and manage these majestic predators in both protected areas and private reserves. In this article, we will explore some of the challenges and opportunities for lion conservation and management in South Africa, with a special focus on the issue of inbreeding in lions.

The Perils of Inbreeding: How Genetic Diversity Affects Lion Health and Survival

Inbreeding is the mating of closely related individuals, such as siblings or cousins. Inbreeding can result in reduced genetic diversity, which can have negative consequences for the health and survival of animals. Inbreeding can cause inbreeding depression, which is a decline in fitness due to increased expression of harmful recessive genes or reduced ability to adapt to environmental changes. Inbreeding can also increase the risk of genetic diseases, such as immune disorders, infertility, deformities and cancers.

Inbreeding is a major concern for lion populations that are isolated, fragmented or small. In South Africa, many lion populations are confined to fenced reserves or parks that limit their natural dispersal and gene flow. For example, a lion population of 84 individuals in Hluhluwe-iMfolozi Park displayed severe inbreeding depression and crashed to 20 native individuals and their offspring between 2002 and 20041. A genetic study of lions across Africa revealed that South African lions have lower genetic diversity than other regions, and that some populations have unique haplotypes (groups of genes) that indicate historical isolation2.

In order to prevent or reduce the negative effects of inbreeding, lion managers need to monitor the genetic status of their populations and implement strategies to increase genetic diversity. Some of these strategies include:

Translocating lions between reserves or parks to increase gene flow and create metapopulations (networks of interconnected populations).
Introducing new lions from different sources (such as captive-bred or wild-caught) to increase genetic variation and avoid genetic bottlenecks (drastic reductions in population size).
Managing lion densities and sex ratios to ensure adequate breeding opportunities and avoid competition or aggression.
Implementing best practices for lion hunting (if allowed) to avoid selective removal of genetically valuable individuals or groups.
Conducting genetic testing and screening to identify and avoid mating of related individuals or carriers of genetic diseases.
By applying these strategies, lion managers can help maintain healthy and viable lion populations that can contribute to the conservation of this iconic species.

The Mystery of the White Lions: A Case of Inbreeding or Natural Variation?

One of the most fascinating and controversial phenomena in lion biology is the occurrence of white lions. They have leucism, a rare genetic condition that reduces their pigmentation in fur, eyes and skin. They are mostly found in the Timbavati region in South Africa, where they are sacred to the locals.

Their origin and significance are debated. Some researchers believe that they are from inbreeding among isolated lions, and that they have lower fitness and survival because of their color and disease risk. Others argue that they are a natural variation that has been around for a long time, and that they have no negative effects on their health or reproduction. Some propose that they have an advantage in some habitats or seasons, like during droughts or moonlit nights.

The scientific evidence for these hypotheses is limited and inconclusive. A genetic study of white lions from captive and wild sources showed that they have a unique mutation in a gene called SLC45A2, which affects melanin production. This mutation is recessive, so both parents need to have it for their cubs to be white. The study also showed that white lions are not more inbred than normal lions, and that they have similar genetic diversity. But the sample size was small and did not include any wild white lions from Timbavati.

The conservation status and management of white lions are also contentious. White lions are not recognized as a separate group by the IUCN, and therefore have no legal protection.

Most white lions today are in captivity, where they are bred for money or tourism. Some conservationists want to reintroduce them into their natural habitat, while others disagree as unnatural and risky. The effect of white lions on normal lions is unknown.

White lions are a mystery and a challenge for lion conservation and management. More research is needed to understand their genetic origin, history, role and needs. White lions also raise ethical and cultural questions about the value and purpose of wildlife conservation, and the respect and responsibility we have for these animals.

Some interesting facts about white lions are:

· They have leucism, not albinism, that reduces pigmentation.

· They are sacred to the Timbavati locals in South Africa.

· They have a unique mutation in SLC45A2 that causes their white color.

· They are not more inbred than normal lions, but have less genetic diversity than other regions.

· They are not legally protected by the IUCN, and most are in captivity.


The Trouble with Walking: How Inbreeding Affects Lion Mobility and Coordination

One of the most visible and disturbing signs of inbreeding in lions is the impairment of their mobility and coordination. They struggle to walk, run, jump and hunt. They may be lame, stiff, shaky, weak or paralyzed. Their posture, gait or balance may be abnormal. These symptoms affect their well-being, survival and reproduction.

The condition is caused by a genetic disorder called degenerative myelopathy (DM), which damages the spinal cord and nerves of the hind limbs. DM is due to a mutation in a gene called SOD1, which protects cells from oxidative stress. The mutation causes toxic substances to accumulate and harm the nerve cells. DM is inherited in a recessive way, so both parents need to have the mutation for their cubs to be affected.

DM is more common and severe in South Africa than in other regions. A study of 102 lions from 19 reserves found that 23% had signs of DM, and 80% had the SOD1 mutation. Lions with DM had worse body condition, reproductive success and survival than normal lions. The study said that DM is a major threat to lion conservation in South Africa, and that it is likely due to inbreeding and genetic drift in small and isolated populations.

The management of lions with DM is difficult and controversial. There is no cure or treatment for DM, and the disease worsens and cannot be reversed. Some lion managers have euthanized lions with DM to end their pain and protect their genetic health. Others have kept them alive and given them supportive care. Some have also bred them with normal lions to lower the mutation frequency.

The prevention of DM in lions requires a comprehensive and proactive approach that involves genetic testing, monitoring, breeding and translocation. Lion managers need to avoid mating carriers of the SOD1 mutation, and increase the genetic diversity and gene flow of their populations. They also need to collaborate and coordinate with each other to share information and resources, and to follow best practices for lion conservation and management.

Lions face many challenges in South Africa and beyond, but they are resilient and adaptable animals that can overcome adversity with our help. By understanding and addressing inbreeding in lions, we can help these magnificent animals thrive in their natural habitats for generations to come.

Some interesting facts about lions with DM are:

· They have difficulty walking, running, jumping and hunting due to nerve damage in their hind limbs.

· They have a mutation in a gene called SOD1 that causes their condition.

· They are more common and severe in South Africa than other regions.

· They have lower fitness, survival and reproduction than normal lions.

· They can be managed by euthanasia, supportive care or breeding with normal lions.

Conclusion

Lions are an important and charismatic species that deserve our attention and protection. In South Africa, inbreeding affects lion health and survival. Inbreeding can cause low genetic diversity, inbreeding depression and genetic diseases. These conditions can harm the appearance, behavior, fitness and reproduction of lions, and threaten their viability. To prevent or reduce inbreeding, lion managers need to monitor the genetic status of their populations and increase genetic diversity and gene flow. They also need to collaborate and coordinate with each other and with other stakeholders to share information and resources, and to follow best practices for lion conservation and management. By doing so, we can help lions roam the wilds of South Africa and beyond for generations to come.

Sources:

Lion Conservation Management | Lions - Convention on the Conservation of Migratory Species of Wild Animals. (n.d.). https://www.cms.int/lions/en/conservation/lion-conservation-management
LiMF – Lion Management Forum of South Africa. (n.d.). https://limf.co.za/
Inbreeding in Lions | ALERT. (2020, January 14). https://lionalert.org/inbreeding-in-lions/
Genetics of the African Lion - Interbreeding among lions | ALERT. (2020, January 8). https://lionalert.org/lion-genetics/
Lane, E. P., Brettschneider, H., Caldwell, P., Oosthuizen, A., Dalton, D. L., Du Plessis, L., … & Kotze, A. (2014). Degenerative myelopathy in captive lions (Panthera leo): case report and literature review. Journal of the South African Veterinary Association, 85(1), 01-07.

#vetstudentexperience #veterinary #vet #vetstudent #veterinarymedicine #veterinaria #veterinarian #vetlife #vetmed #medvet #medicinaveterinaria #veterinario

Friday, 17 March 2023

What happens if you don't treat an open wound on a zebra or other wildlife?




What happens if you don't treat an open wound on a zebra or other wildlife?

When a zebra or other wildlife sustains an open wound, it's crucial to treat it promptly to prevent infection and promote healing. Failure to treat an open wound can result in serious consequences that can ultimately threaten the animal's life.

Firstly, an open wound can provide a gateway for bacteria, viruses, and parasites to enter the animal's body, causing infections that can spread rapidly throughout the animal's system. Infections can lead to sepsis, which can be fatal if not treated promptly. Additionally, an infection can lead to systemic inflammation, which can cause organ failure and death.

Secondly, an open wound can also impair an animal's ability to move and perform essential functions such as grazing and drinking water. In cases where the wound is located on the animal's limbs, it can cause limping, which can affect the animal's mobility. If the wound is located on the animal's head or face, it can cause problems with feeding and drinking, leading to malnutrition and dehydration.

Lastly, an untreated open wound can attract predators and scavengers, which can pose a serious threat to the animal's safety. Predators such as lions, hyenas, and wild dogs are drawn to the smell of blood and can easily spot an injured animal. Additionally, scavengers such as vultures and jackals can quickly take advantage of an injured animal, causing further harm.

In conclusion, the failure to treat an open wound on a zebra or other wildlife can have severe consequences, ranging from infection and impaired mobility to attracting predators and scavengers. If you come across an injured animal, it's essential to contact a wildlife rescue organization or veterinarian immediately for prompt treatment.

Sources:

"Infection Control in Wound Management," NCBI, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2923493/
"Inflammatory Response to Wound Infections," NCBI, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3399383/
"Wildlife First Aid and Emergency Care," Humane Society, https://www.humanesociety.org/resources/wildlife-first-aid-and-emergency-care
"Wildlife Emergency Response," International Fund for Animal Welfare, https://www.ifaw.org/uk/wildlife-emergency-response
"Wildlife Rehabilitation," National Wildlife Rehabilitators Association, https://www.nwrawildlife.org/page/Rehab_FAQs











#vetstudentexperience
#wildlifeconservation #injuredwildlife #wildlifeemergency #wildlifehealth #wildliferehabilitation 

Sunday, 12 February 2023

Meeting Fur the Hyena

During the past week one of our visits was to see this beautiful Brown Hyena (Parahyaena Brunnea). In this place, conservation and education about African animals is carried out. My reason for sharing this long post is for the case of "Fur", which is name of this naughty hyena, that was born in captivity. I will tell you a bit about the species .... the brown hyena (parahyaena brunnea) is a mammalian scavenger from the family Hyaenidae and they live in southern Africa in areas like the Kalahari desert, Namibia, Botswana and Zimbabwe. According to the Red List of the IUCN (the International Union for the Conservation of Nature) in 2015, the species was almost threatened (Near Threatened) and today, according to the last reports, it is vulnerable, there are around 3500 individuals in the wild according to unofficial reports. The hyenas are animals that are very similar to dogs (suborder caniformia) but are more related to cats (suborder Feliformia). Their anatomy is evolved to break bones, dismember and reduce food into small pieces. This results in other small scavengers also being able to feed themselves. But without a doubt they can also hunt birds, wildebeest, snakes and antelopes, to name a few. They are nocturnal animals, with good vision, hearing and they generate a very characteristic sound similar to laughter. They are organized in large packs where the female is the one who leads them. Unfortunately for this species the number of individuals has been decreasing because people tend to eliminate them since they think they kill cattle when they find them feeding on the carcasses of livestock while some others believe they are pests. Undoubtedly, these animals are fundamental to the health of the ecosystem where they live, through the consumption of dead cattle, birds, etc. discarded by humans in the surroundings of villages, where basic needs such as landfills are scarce to none. Thereby these animals help in decreasing the probabilities of diseases in human population such as tuberculosis and anthrax.

And join us for the experience of a lifetime 
#VetStudentExperience #vetstudent #vetlife #veterinarian #vettech #vetnurse #veterinary #veterinarymedicine #VetstudentLife #Prevet #PrevetStudent #Hyena