Showing posts with label forest. Show all posts
Showing posts with label forest. Show all posts

Monday, November 18, 2024

For Alzheimers Sufferers Brain Inflammation Ignites a Neuron Killing Forest Fire

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For decades researchers have focused their attacks against Alzheimer’s on two proteins, amyloid beta and tau. Their buildup in the brain often serves as a defining indicator of the disease. Get rid of the amyloid and tau, and patients should do better, the thinking goes. But drug trial after drug trial has failed to improve patients’ memory, agitation and anxiety. One trial of a drug that removes amyloid even seemed to make some patients worse. The failures suggest researchers were missing something.……Continue reading….

By: Karen Weintraub

Source: Scientific American

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Critics:

Encephalitis is inflammation of the brain. The severity can be variable with symptoms including reduction or alteration in consciousness, headache, fever, confusion, a stiff neck, and vomiting. Complications may include seizures, hallucinations, trouble speaking, memory problems, and problems with hearing.

Causes of encephalitis include viruses such as herpes simplex virus and rabies virus as well as bacteria, fungi, or parasites. Other causes include autoimmune diseases and certain medications. In many cases the cause remains unknown. Risk factors include a weak immune system. Diagnosis is typically based on symptoms and supported by blood tests, medical imaging, and analysis of cerebrospinal fluid.

Certain types are preventable with vaccines. Treatment may include antiviral medications (such as acyclovir), anticonvulsants, and corticosteroids. Treatment generally takes place in hospital. Some people require artificial respiration. Once the immediate problem is under control, rehabilitation may be required. In 2015, encephalitis was estimated to have affected 4.3 million people and resulted in 150,000 deaths worldwide.

Adults with encephalitis present with acute onset of fever, headache, confusion, and sometimes seizures. Younger children or infants may present with irritability, poor appetite and fever. Neurological examinations usually reveal a drowsy or confused person. Stiff neck, due to the irritation of the meninges covering the brain, indicates that the patient has either meningitis or meningoencephalitis.

Viral encephalitis can occur either as a direct effect of an acute infection, or as one of the sequelae of a latent infection. The majority of viral cases of encephalitis have an unknown cause; however, the most common identifiable cause of viral encephalitis is from herpes simplex infection. Other causes of acute viral encephalitis are rabies virus, poliovirus, and measles virus.

Additional possible viral causes are arboviral flavivirus (St. Louis encephalitis, West Nile virus), bunyavirus (La Crosse strain), arenavirus (lymphocytic choriomeningitis virus), reovirus (Colorado tick virus), and henipavirus infections. The Powassan virus is a rare cause of encephalitis. It can be caused by a bacterial infection, such as bacterial meningitis, or may be a complication of a current infectious disease such as syphilis (secondary encephalitis).

Certain parasitic or protozoal infestations, such as toxoplasmosis, malaria, or primary amoebic meningoencephalitis, can also cause encephalitis in people with compromised immune systems. Lyme disease or Bartonella henselae may also cause encephalitis. Other bacterial pathogens, like Mycoplasma and those causing rickettsial disease, cause inflammation of the meninges and consequently encephalitis. A non-infectious cause includes acute disseminated encephalitis which is demyelinated.

Limbic encephalitis refers to inflammatory disease confined to the limbic system of the brain.The clinical presentation often includes  disorientation, disinhibition, memory loss, seizures, and behavioral anomalies. MRI imaging reveals T2 hyperintensity in the structures of the medial temporal lobes, and in some cases, other limbic structures. Some cases of limbic encephalitis are of autoimmune origin.

An ideal drug to treat brain infection should be small, moderately lipophilic at pH of 7.4, low level of plasma protein binding, volume of distribution of litre per kg, does not have strong affinity towards binding with P-glycoprotein, or other efflux pumps on the surface of blood–brain barrier. Some drugs such as isoniazid, pyrazinamide, linezolid, metronidazole, fluconazole, and some fluoroquinolones have good penetration to blood brain barrier.

Treatment (which is based on supportive care) is as follows:

  • Antiviral medications (if virus is cause)
  • Antibiotics, (if bacteria is cause)
  • Steroids are used to reduce brain swelling
  • Sedatives for restlessness
  • Acetaminophen for fever
  • Occupational and physical therapy (if brain is affected post-infection)

Pyrimethamine-based maintenance therapy is often used to treat toxoplasmic encephalitis (TE), which is caused by Toxoplasma gondii and can be life-threatening for people with weak immune systems. The use of highly active antiretroviral therapy (HAART), in conjunction with the established pyrimethamine-based maintenance therapy, decreases the chance of relapse in patients with HIV and TE from approximately 18% to 11%. 

This is a significant difference as relapse may impact the severity and prognosis of disease and result in an increase in healthcare expenditure.The effectiveness of intravenous immunoglobulin for the management of childhood encephalitis is unclear. Systematic reviews have been unable to draw firm conclusions because of a lack of randomised double-blind studies with sufficient numbers of patients and sufficient follow-up.

 There is the possibility of a benefit of intravenous immunoglobulin for some forms of childhood encephalitis on some indicators such as length of hospital stay, time to stop spasms, time to regain consciousness, and time to resolution of neuropathic symptoms and fever. Intravenous immunoglobulin for Japanese encephalitis appeared to have no benefit when compared..

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Thursday, November 7, 2024

Why Biophilia Needs To Be Part of Your Next Holiday

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Engaging with nature on vacation can not only make you feel more rested and restored, it can also enhance wellbeing when you’re back home. It’s a cool but sunny spring morning as I step over rocks and past mountain laurel bushes into a wooded Connecticut land preserve. Only the trill of titmice and robins overhead and the crunch of dead oak leaves underfoot punctuate the still air. “We’re folding into the forest,” says Regan Stacy, a forest therapist who’s guiding me. Our agenda: forest bathing.….Story continues

By: Amy Thomas

Source: BBC

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Critics:

Biophilia is an innate affinity of life or living systems. The term was first used by Erich Fromm to describe a psychological orientation of being attracted to all that is alive and vital. Wilson uses the term in a related sense when he suggests that biophilia describes “the connections that human beings subconsciously seek with the rest of life.”

He proposed the possibility that the deep affiliations humans have with other life forms and nature as a whole are rooted in our biology. Both positive and negative (including phobic) affiliations toward natural objects (species, phenomenon) as compared to artificial objects are evidence for biophilia.

Although named by Fromm, the concept of biophilia has been proposed and defined many times over. Aristotle was one of many to put forward a concept that could be summarized as “love of life”. Diving into the term philia, or friendship, Aristotle evokes the idea of reciprocity and how friendships are beneficial to both parties in more than just one way, but especially in the way of happiness.

The hypothesis has since been developed as part of theories of evolutionary psychology. Taking on an evolutionary perspective people are drawn towards life and nature can be explained in part due to our evolutionary history of residing in natural environments, only recently in our history have we shifted towards an urbanized lifestyle.

These connections to nature can still be seen in people today as people gravitate towards, identify with, and desire to connect with nature.[6] These connections are not limited to any one component part of nature, in general people show connections to a wide range of natural things including plants, animals, and environmental landscapes.

 One possible explanation is that our ancestors who had stronger connections to nature would hold an evolutionary advantage over less connected people as they would have better knowledge and therefore access to food, water, and shelter. In a broader and more general sense research has suggested that our modern urban environments are not suited for minds that evolved in natural environments.

Human preferences toward things in nature, while refined through experience and culture, are hypothetically the product of biological evolution. For example, adult mammals (especially humans) are generally attracted to baby mammal faces and find them appealing across species. The large eyes and small features of any young mammal face are far more appealing than those of the mature adults.

Similarly, the hypothesis helps explain why ordinary people care for and sometimes risk their lives to save domestic and wild animals, and keep plants and flowers in and around their homes. In the book Children and Nature: Psychological, Sociocultural, and Evolutionary Investigations edited by Peter Kahn and Stephen Kellert, the importance of animals, especially those with which a child can develop a nurturing relationship, is emphasized particularly for early and middle childhood. 

For many Indigenous cultures, the relationship between humans and nature is inseparable. Notably, these cultures view humans as an integral part of the natural world rather than separate to it.[13] Their practices, and ways of life reflect respect for the symbiotic relationship between all living beings and the environment. At the heart of many Indigenous belief systems is the concept of kinship.

This concept extends beyond human relationships and includes elements of the natural world. This perspective recognizes that nature is sacredness. It also recognises that humans, plants, animals, and the land all depend on each other for their survival. For example, the Haudenosaunee people express this through the Thanksgiving Address. In this ceremony, they honor all aspects of Creation.

Indigenous cultures possess Traditional Ecological Knowledge (TEK) about the relationships between living beings and environments. This enables them to sustainablly use their resource. For example, Aboriginal Australians’ fire practices have shaped biodiversity for millennia. In addition, the human-nature connection can be found in many Indigenous spiritual beliefs and practices. These beliefs generally viewing nature as sacred, with specific sites, species, or phenomena holding deep significance.

In Hawaii, aloha ‘aina guides responsible resource use. Notably, Indigenous cultures have always emphasized reciprocity and balance. This involves not only taking from but also giving back through sustainable practices, rituals, and ceremonies. For instance, the Anishinaabe have always made offerings before harvesting manoomin (wild rice). Despite diversity, many Indigenous cultures view humans as integral to nature rather than dominating over it. This challenges Western views prioritizing exploitation.

Incorporating these perspectives reflects different understandings of the human-nature relationship. They also show that Indigenous knowledge have been an invaluable contributions to sustainability.Because of our technological advancements and more time spent inside buildings and cars disconnects us from nature, biophilic activities and time spent in nature may be strengthening our connections as humans to nature, so people continue to have strong urges to reconnect with nature.

The concern for a lack of connection with the rest of nature outside of us, is that a stronger disregard for other plants, animals and less appealing wild areas could lead to further ecosystem degradation and species loss. Therefore, reestablishing a connection with nature has become more important in the field of conservation.

Examples would be more available green spaces in and around cities, more classes that revolve around nature and implementing smart design for greener cities that integrate ecosystems into them such as biophilic cities. These cities can also become part of wildlife corridors to help with migrational and territorial needs of other animals.

Family pay tribute to ‘unique and endearing’ man whose torso was found in nature reserve Sky News 21:34 

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