# <!-- METAHEADER
# –––––––––––––––––––––––––––––––––––––––––––––––––– -->
"*": "https://raw.githubusercontent.com/wefindx/schema/master/intent/oo-item.yaml"
# <!-- HEADER
# –––––––––––––––––––––––––––––––––––––––––––––––––– -->
"base:title": "0oo - Artifcial Blood"
"og:title": "Artifcial Blood"
"og:description": "A large number of IDC (international disease classification) could be made irrelevant, if we could create artificial blood, because having BCIs (brain-computer interfaces), it suffices to &quot;recycle&quot; (absorb metabolytes and enrich with nutrients, and antibodies) the blood to survive, the most difficult of which is the &quot;enrich with antibodies&quot; part, as it needs a large number of organs: - bone marrow - 4-5 of 7 parts of the endocrine system (thymus, pancreas, adrenal glands, genitals, and possibly thyroid) - other things? It&#x27;s not trivial to clone our organs and assemble them to create blood supply. Due to some constraints in …"
"og:image": "https://avatars0.githubusercontent.com/u/28134655"
"og:url": "/intent/111001/"
"base:css": "/static/css/bootstrap.min.9c25540d6272.css"
"base:extra-css": "/static/css/base.57997aeac1df.css"
"base:favicon": "/static/favicon.acaa334f0136.ico"
"base:body_class": ""
"layout:logo": "/static/0oo.8d2a8bbef612.svg"
"layout:index": "/"
"layout:menu": "/menu/"
"layout:categories": "/intents/"
"layout:ideas": "/methods/"
"layout:projects": "/projects/"
"layout:users": "/users/"
"layout:about": "/about/"
"layout:help": "/help/"
"layout:bug_report": "https://github.com/wefindx/0oo"
"layout:login": "/accounts/login/"
"layout:light-off": "/darken/?darken=true"
"layout:set-multilingual": "/mulang/?mulang=true"
"layout:lang": "语言"
"layout:set-language-post-action": "/i18n/setlang/"
"layout:csrf-token": "9DwMyakYsqzaCm7OrT24BFOHyC0Opa764B2HseDBuVO45UHqTYFZez1cxEV5hqY2"
"layout:input-next": "/intent/111001/"
"layout:languages": [{"code": "ja", "is-active": "false", "name": "日本語"}, {"code": "lt", "is-active": "false", "name": "Lietuviškai"}, {"code": "zh-hans", "is-active": "true", "name": "简体中文"}, {"code": "en", "is-active": "false", "name": "English"}, {"code": "ru", "is-active": "false", "name": "Русский"}, {"code": "oo", "is-active": "false", "name": "O;o,"}]
# <!-- TOPIC
# –––––––––––––––––––––––––––––––––––––––––––––––––– -->
"item:parent:intents": [{"title": "医学", "url": "/intent/1233/"}, {"title": "健康", "url": "/intent/1234/"}, {"title": "人类", "url": "/intent/995/"}]
"item:title": "Artifcial Blood"
"item:votes": +1
"item:add-vote": "#addnote"
"item:intent": "/intent/111001/?l=cn"
"item:base-administration": false
"item:body": |
    A large number of IDC (international disease classification) could be made irrelevant, if we could create artificial blood, because having BCIs (brain-computer interfaces), it suffices to "recycle" (absorb metabolytes and enrich with nutrients, and antibodies) the blood to survive, the most difficult of which is the "enrich with antibodies" part, as it needs a large number of organs:
    
    - bone marrow
    - 4-5 of 7 parts of the endocrine system (thymus, pancreas, adrenal glands, genitals, and possibly thyroid)
    - other things?
    
    It's not trivial to clone our organs and assemble them to create blood supply. Due to some constraints in cloning (ethics and inability to clone organism without cloning head, though, Zika virus almost gets us there), this remains a problem, and we have to search for other ways.
"item:permalink": "/intent/111001/?l=cn"
"item:source-date": ""
"item:owner": "Mindey"
"item:ownerlink": "/user/147/Mindey"
"item:created": "2021-12-30T06:53:10.674891"
"item:intent:child:add": "/admin/hlog/intent/add/?parent=111001"
# <!-- LINKS
# –––––––––––––––––––––––––––––––––––––––––––––––––– -->
"item:method:items":
"item:method:add": "/admin/hlog/method/add/?parent=111001"
"item:comment:add": "/intents/addnote?parent=111001"
"item:comment:add:csrf_token": "9DwMyakYsqzaCm7OrT24BFOHyC0Opa764B2HseDBuVO45UHqTYFZez1cxEV5hqY2"
"item:comment:form": |
    <li> <textarea name="text" cols="40" rows="10" id="addnote" class="comment-textarea" required>
    </textarea></li>
    <li><label for="id_vote">投票：</label> <select name="vote" id="id_vote">
      <option value="-1">[−]</option>
      <option value="0" selected>-</option>
      <option value="1">[+]</option>
    </select></li>
    <li><label for="id_crawl">安静地：</label> <input type="checkbox" name="crawl" onchange="handleSilently(this)" id="id_crawl"></li>
    <li><label for="id_has_questions">概念：</label> <input type="checkbox" name="has_questions" id="id_has_questions"> <span class="helptext">标记评论提出新问题。</span></li>
    <li><label for="id_has_ideas">想法：</label> <input type="checkbox" name="has_ideas" id="id_has_ideas"> <span class="helptext">标记评论有潜在解决方案。</span></li>
    <li><label for="id_has_facts">事实：</label> <input type="checkbox" name="has_facts" id="id_has_facts"> <span class="helptext">标记评论有助于推理的事实。</span></li>
    <a href="/accounts/login/">请，<i><u>登录</u></i>。</a>
# <!-- COMMENTS
# –––––––––––––––––––––––––––––––––––––––––––––––––– -->
"item:comment:items":
  - "id": "r-224001"
    "mtrans": |

        似乎实际上可行的是用模型生物进行实验，例如，尝试使用青蛙的血液为蜥蜴提供动力，并看看通过选择性过滤某些蛋白质（如不需要的抗体）来防止免疫反应的可行性。

    "text": |
        What seems practically doable, is experimenting with model organisms, say, trying to use blood of a frog to power a lizard, and see how feasible it is to prevent immune reactions by selectively filtering out certain proteins, like unwanted antibodies.
    "owner": "Mindey"
    "ownerlink": "/user/147/Mindey"
    "permalink": "/intent/111001/?l=cn#r-224001"
    "created": "2021-12-30T13:47:51.406942"
    "vote": ""
"base:js": "/static/js/base.c7357c06cc89.js"
