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We are but cells living in a much larger organism, however, this does not make our existence less significant – for an organism without cells is no organism at all. We define it; we make it what it is. We are responsible for its health, its functionality, and above all, its purpose. A lone cell can restore the others, or a lone cell can spread a plague.

A.J. Darkholme
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We are but cells living in a much larger organism, however, this does not make our existence less significant – for an organism without cells is no organism at all. We define it; we make it what it is. We are responsible for its health, its functionality, and above all, its purpose. A lone cell can restore the others, or a lone cell can spread a plague.

A.J. Darkholme, Rise of the Morningstar
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Pick up a pinecone and count the spiral rows of scales. You may find eight spirals winding up to the left and 13 spirals winding up to the right, or 13 left and 21 right spirals, or other pairs of numbers. The striking fact is that these pairs of numbers are adjacent numbers in the famous Fibonacci series: 1, 1, 2, 3, 5, 8, 13, 21... Here, each term is the sum of the previous two terms. The phenomenon is well known and called phyllotaxis. Many are the efforts of biologists to understand why pinecones, sunflowers, and many other plants exhibit this remarkable pattern. Organisms do the strangest things, but all these odd things need not reflect selection or historical accident. Some of the best efforts to understand phyllotaxis appeal to a form of self-organization. Paul Green, at Stanford, has argued persuasively that the Fibonacci series is just what one would expects as the simplest self-repeating pattern that can be generated by the particular growth processes in the growing tips of the tissues that form sunflowers, pinecones, and so forth. Like a snowflake and its sixfold symmetry, the pinecone and its phyllotaxis may be part of order for free

Stuart A. Kauffman, At Home in the Universe: The Search for the Laws of Self-Organization and Complexity
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We all behave like Maxwell’s demon. Organisms organize. In everyday experience lies the reason sober physicists across two centuries kept this cartoon fantasy alive. We sort the mail, build sand castles, solve jigsaw puzzles, separate wheat from chaff, rearrange chess pieces, collect stamps, alphabetize books, create symmetry, compose sonnets and sonatas, and put our rooms in order, and all this we do requires no great energy, as long as we can apply intelligence. We propagate structure (not just we humans but we who are alive). We disturb the tendency toward equilibrium. It would be absurd to attempt a thermodynamic accounting for such processes, but it is not absurd to say we are reducing entropy, piece by piece. Bit by bit. The original demon, discerning one molecules at a time, distinguishing fast from slow, and operating his little gateway, is sometimes described as “superintelligent,” but compared to a real organism it is an idiot savant. Not only do living things lessen the disorder in their environments; they are in themselves, their skeletons and their flesh, vesicles and membranes, shells and carapaces, leaves and blossoms, circulatory systems and metabolic pathways - miracles of pattern and structure. It sometimes seems as if curbing entropy is our quixotic purpose in the universe.

James Gleick, The Information: A History, a Theory, a Flood
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...it would be a very naive sort of dogmatism to assume that there exists an absolute reality of things which is the same for all living beings. Reality is not a unique and homogeneous thing; it is immensely diversified, having as many different schemes and patterns as there are different organisms. Every organism is, so to speak, a monadic being. It has a world of its own because it has an experience of its own. The phenomena that we find in the life of a certain biological species are not transferable to any other species. The experiences - and therefore the realities - of two different organisms are incommensurable with one another. In the world of a fly, says Uexkull, we find only "fly things"; in the world of a sea urchin we find only "sea urchin things.

Ernst Cassirer, An Essay on Man: An Introduction to a Philosophy of Human Culture
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I am suggesting here that organisms have a built-I capability of adapting to their environment. I am suggesting that to the extent that evolution occurs, it occurs at the level of the organism. This suggestion differs sharply from the thesis of the NDT, which holds that evolution occurs only at the level of the population. Organisms contain within themselves the information that enables them to develop a phenotype adaptive to a variety of environments. The adaptation can occur by a change in the genome through a genetic change triggered by the environment, or it can occur without any genetic change.

Lee Spetner
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We have come to understand the phenomena of life only as an assemblage of the lifeless. We take the mechanistic abstractions of our technical calculation to be ultimately concrete and "fundamentally real," while our most intimate experiences are labelled "mere appearance" and something having reality only within the closet of the isolated mind. Suppose however we were to invert this whole scheme, reverse the order in which it assigns abstract and concrete. What is central to our experience, then, need not be peripheral to nature. This sunset now, for example, caught within the network of bare winter branches, seems like a moment of benediction in which the whole of nature collaborates. Why should not these colours and these charging banners of light be as much a part of the universe as the atoms and molecules that make them up? If they were only "in my mind," then I and my mind would no longer be a part of nature. Why should the pulse of life toward beauty and value not be a part of things? Following this path, we do not vainly seek to assemble the living out of configurations of dead stuff, but we descend downwards from more complex to simpler grades of the organic. From humans to trees to rocks; from "higher grade" to "lower grade" organisms. In the universe of energy, any individual thing is a pattern of activity within the flux, and thereby an organism at some level.

William Barrett, The Illusion of Technique: A Search for Meaning in a Technological Civilization
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The more closely two organisms depend upon each other the harder it becomes to tell where one organism ends and the other begins.

Chris Matakas, #Human: Learning To Live In Modern Times
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There is a deep interconnectedness of all life on earth, from the tiniest organisms, to the largest ecosystems, and absolutely between each person.

Bryant McGill, Voice of Reason
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Sometimes, when I'm alone, I wonder if it really counts as being alone, since I am covered in millions of other living organisms.

Travis J. Dahnke, Write like no one is reading
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The principal result of my investigation is that a uniform developmental principle controls the individual elementary units of all organisms, analogous to the finding that crystals are formed by the same laws in spite of the diversity of their forms.

Theodor Schwann, Mikroskopische Untersuchungen Uber Die Ubereinstimmung in Der Struktur Und Dem Wachstum Der Tiere Und Pflanzen
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