老司機,文越撸越多、也越撸越金魚腦,必須記錄一下(<大字中有TXT檔>)
走腎又走心
我現在最愛的撸類型就是走腎又走心!!簡直世界瑰寶!!
<宿柳>
扫文小院 by奇奇宝贝:
挺不错,温柔少侠攻,正直少卿受。两人办案时认识,受中蛊生不如死,攻主动和他啪啪啪。攻几年里历尽辛苦寻来解药,受痊愈后向攻提出暗示,却阴差阳错两人错过。几年后再见,一起破坏了反派王爷的造反阴谋,两人互诉心意HE
中短 / 古 / 高H / 作者:木百
老梗也無所謂,重點就是這老梗能不能有韻味!!
以肉文之姿開篇(這種開頭我87%絕對會跳下去看),殊不知今昔情景交錯的筆法帶出緣由跟情緣,引人入勝地讓人不停歇地提著一口氣地往下看,越看越進入佳境,雖然老梗但竟莫名的帶出愛情的酸澀味來
深情大俠的風範看得我也要思春了何況是受呢
睡前撸到這篇讓我一臉滿足,若沒事還會想拿出來品一品。
.
<誘根>
簡介:
上司癡迷我的巨根,非要和它上船……結果陳年往事愛恨情仇浮出水面。
下屬攻x上司受
現代 / 中 / H / 作者:蕭九涼
微博@扫文老阿姨 :
纯情呆萌人妻下属攻x外冷浪荡女王痴情受
受是攻大学学长,一直暗恋着攻,多年后再相遇受成为了攻的上司,把处男纯情攻诱上了炕,从此一发不可收拾
受真是撩汉一把好手,勾人的妖精,称攻17cm弟弟很粗很乖,晚上要去看看它,又骚又se情,学弟攻根本抵抗不了受的手段,只好好好干努力干争取变得更乖更能干。
攻特别拎得清,在吃了几次干醋后直接跟受表白,被母亲怀疑后也干脆出了柜,之后受因为攻的父母反对离开过攻,但还是舍不得攻回到攻身边,结尾攻父母仍然没有同意,但攻受会更加坚定在一起!
攻特别好,有点迟钝但又纯情又有担当,明明是被受掰弯,在现实社会中却能大胆出柜,在父母反对时,也从未有过动摇,是非常可爱的小狼狗。痴情受却一点都不纯情,色气满满,把攻诱惑得晕头转向,偷偷吃醋也是萌。虽然前面描述受是风流情场老手的样子,但受只有攻,传言中和各种男人去开房也是嫌短后被踹下床,受还有摸骨识大diao的本事,后来攻还自己开导自己,他是摸骨中脱颖而出的,是特别的,乐死了。
肉又多又香,这个标题真的一点都不纯洁。
這攻真的hen可愛可愛屎惹,可愛到我這個受控看這篇時眼裡卻只有小可愛攻
蠢萌的很可愛、新好男人、癡情有擔當、器大活好上得了床也下得了廚房跟廳堂
開篇時學長真是癡漢到我都快到跟18肉漫裡的痴女想到一塊,一副要榨乾小可愛大屌攻的樣子(哭笑拍臉
也是越看越漸入佳境的文
上海話看得我也是笑得不要不要的,方言打成文字咋這麼有喜感
適度憋扭有意身心,但面對家人的反對這篇設定算是有新穎到,所以看完後我腦裡一直迴盪著受最後的幾句話...
「可她為什麼找你?」
「想叫我認清楚,自己是個破壞別人家庭和諧的賤人吧。」穆沅埋首悶笑,鑽在邱正揚懷裡,「我會回來,就表示這個賤人……我當定了。」
有時候看現代文最煩家庭抗爭戲碼,目前最有印象的,反應正常但又不反感的是《妄咎》 by 煙貓與酒,骨科文(親兄弟),受小時候弄丟弟弟從此生命一片灰暗枯寂,一直活在自責後悔的夢魘中,然後遇到了攻....,骨科文我本來也不看的,但這篇很吸引人,看完了也不悔,穿插安利一下
新好男人蠢萌學弟攻絕對值得撸一波
顯得學長有些失色,希望番外能有受視角去協調補足讓這篇文更加圓滿
番外作者還在寫,文檔有附作者微博。
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<尋攻>
扫文小院 by id:11774:
我看过的最顺当 最可爱的互攻文 一切都水到渠成 遇到对的人的感觉真是美妙~ 但还是分攻受的呀 受虽器大活好 但本质其实是希望被插入 当攻可能只是为了造福社会吧… 而攻让受干是为了更多的体会受性感的每一面以及丰富知识用来更好的干受 老是一本正经讲情话 受还特别吃这一套 作者把攻写得温柔又可爱 让我在颜值及格区看到了一个苏神
現代 / 中短 / 有互攻 / 炮友變真愛 / 作者:機械性進食
著實特別但又蘇爽的文
受因為有個大ㄐㄐ嚇跑所有遇過的1所以一直當不了0,就一直當1造福小零
攻理工心性,跟個機械人似的,搜索資料→分析拆解統計→得出結論,但對受的真誠結論在受面前都變成了撩人好漢
受也是跟視體面又大體的人,讓我有一點點想起段潮(《溫柔以待》)
起初的師徒關係真是有趣死了,在受還沒喜歡上前對攻也是挺好滴壓
互相喜歡上也是真誠直球,沒有什麼彎彎繞繞,顯得攻受兩位都率真得可愛
炮友的階段都是在對打炮這件事上做學術性的探討跟實踐,特別又有趣
爸爸也是莫名的可愛,其中爸爸有一句話莫名的讓人感動(?
衛封放下手裡的東西,抬頭看牆上的照片:“男的女的我都無所謂,重要的是長久,能有人一起白頭。性別對了沒有特別重大的意義,以我和你媽為例,理論上我們已經修成婚姻正果,而我最終依然孤獨一生。”
非常有趣的文,非常值得撸一把。
正劇
撸了不少文,更是棄了更多文,近期看到覺得最好看的正劇只有這篇
<我加熱了他的冷血>
赫倫重生了,回到家產還沒被剝奪、身體還很健康的時候。
他又見到了還活著的盧卡斯。
盧卡斯是一名角鬥士,所有人都以為他冷血無情。
——可只有赫倫知道,當年他自願死於一場角鬥賭局,只為替自己贏錢還債。
於是,重生後的赫倫有兩個打算:一是保住家產;二是把盧卡斯買下來!
注:古羅馬背景,感情遲鈍美貌貴族受(赫倫)&武力值爆表忠犬角鬥士攻(盧卡斯)
中長 / 古羅馬 / 作者:芥子醒
很特別的背景,古羅馬什麼的,我都要拿羅馬浴場出來想像
雖然看到很多說這篇不怎麼樣觀後感,但我著實的覺得這篇很好看壓!!
意料之外的劇情,靈肉合一的愛, 溫馨忠誠的相伴,看完有溫暖的感覺!!
隨劇情轉折,主奴感情隨之加溫,最後演變成靈魂中不可分離的一部分
唯一有讓我覺得不協調的部分是雖架構了古羅馬貴族與奴隸的社會背景,但小攻在一開始對受的表現似乎沒什麼階級感
不過這點也不是很重要,重點還是劇情引人入勝演繹意料外地轉折與推進,配上主奴間的羈絆一路相伴昇華
背景文筆亦帶點古羅馬的浩瀚華麗,適度的渲染靈魂相嵌的迷幻感,最後層層疊出一份厚實的溫情
「盧卡斯……把頭低下來一點,我想摸摸你……」他說。
盧卡斯照做了。
赫倫伸出手,去夠他的臉。從下顎摸到顴骨,又繞到他的耳後,眷戀地撫摸他的耳朵。最後沿著髮際觸碰到他的金睫藍眼。他用指肚一點點移過每一根金睫毛,感受藍眼睛的微微顫動,順著眼珠的形狀觸到他的眉毛,細細捋順了每一根。他摩挲著他光潔的額頭,感受眉骨的形狀。
赫倫的溫情,如女神權杖散發出的柔和光芒,似乎是包含了世界上一切情感;又如某種萬能的醫藥,將盧卡斯所有的苦難與傷痛都癒合了。這是原始慾望和一時快感無法彌合的東西。
「我的主人……」盧卡斯眼圈發熱,心裡居然翻滾起酸澀。他覺得哪怕就此死去,一生都了無遺憾了。
肉文
<鬱金香盛開的季節>By 銀色徽章
肉文就沒什麼好說的了,這篇有點猶豫是要歸類為肉文還是走腎又走心
因為這篇小受也是蠻可愛的,蠢萌蠢萌
但因為劇情太少,所以還是歸類為肉文
背景是荷蘭呢,可是蠻特別的。
<我的兩個體育猛男老公>By kulolo
3P純肉文,一個粗一個長,主要是覺得針對口交寫得蠻出色,特別有印象
棄文
藏獒 by 公子于歌
這篇被我放到棄文有點對不起它,因為沒有不好看
主要是因為攻受在一起後就像韓劇我永遠沒看最後兩集一樣
作者自己也說是為了宣揚康藏文化,作為一篇帶有文化介紹及宣揚目的文確實寫得挺好的,會讓人起了想了解的心呢
但也因為是這樣,攻受互相得手順利,順利的相識順利的相愛,愛情最美的階段是曖昧,沒了曖昧又遲不滾床等得我沒耐心就一直停在70%擱一邊了。
我只是瞧著你活好 by 是兔不是二
這篇開頭我打120分,攻受強強激情火花四射帶感!!
但大概30%後小攻暈船了就整個弱掉!!弱掉就算了,整個也一直在鬼打牆,就著前30%的120分一直忍著到70%還不見回復,怒棄!
[重生]醫藥世家 by vendredi
這篇本質上蠻可愛的,小大夫善良可人,但攻愛情來得快也就算了,受也很快就默默的接受,曖昧時間極短
一樣,愛情最美的就是曖昧的時候,沒了曖昧我也不想看了
廢柴逆襲計劃[機甲] by 清霧瀲月
蘇爽打臉啪啪金手指粗長文
要說爽真的是篇稱職的爽文,但除了爽之外就什麼都沒有
本來覺得蠻好看的,因為打臉啪啪爽,但啪了老半天不見其他任何東西,整個金手指粗過頭
跟窮到只剩下錢一樣不真實
和著前面的啪啪爽過後,也大概看了70%左右就棄了
狩獵遊戲[星際] by 砯涯
文案100分!滿懷期待跳下去看,但莫名的覺得攻受錯位很不協調,怎樣都調不過來就棄了(哭捶地
棄掉的文比看完的多,除此之外還有很多棄文,而且還不乏有很多人推的(滿頭問號
- 10月 22 週日 201723:40
耽美BL 宿柳/誘根/尋攻/我加熱了他的冷血/肉文
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洪凱駖藥師~ Solving a long-standing mystery about the desert’s rock art canvas Petroglyphs are carved in a material called rock varnish, the origins of which have been debated for years. Now, scientists argue it’s the result of bacteria and an adaptation that protects them from the desert sun’s harsh rays. By Nathan Collins 5923141600_1bc3f25867_k.jpg Rock art featuring human and animal forms and handprints Petroglyphs at Mesa Verde National Park, Colorado (Christine Fry & Peter Russo) Wander around a desert most anywhere in the world, and eventually you’ll notice dark-stained rocks, especially where the sun shines most brightly and water trickles down or dew gathers. In some spots, if you’re lucky, you might stumble upon ancient art – petroglyphs – carved into the stain. For years, however, researchers have understood more about the petroglyphs than the mysterious dark stain, called rock varnish, in which they were drawn. In particular, science has yet to come to a conclusion about where rock varnish, which is unusually rich in manganese, comes from. Now, scientists at the California Institute of Technology, the Department of Energy’s SLAC National Accelerator Laboratory and elsewhere think they have an answer. According to a recent paper in Proceedings of the National Academy of Sciences, rock varnish is left behind by microbial communities that use manganese to defend against the punishing desert sun. The mystery of rock varnish is old, said Usha Lingappa, a graduate student at Caltech and the study’s lead author. “Charles Darwin wrote about it, Alexander von Humboldt wrote about it,” she said, and there is a long-standing debate about whether it has a biological or inorganic origin. But, Lingappa said, she and her colleagues didn’t actually set out to understand where rock varnish comes from. Instead, they were interested in how microbial ecosystems in the desert interact with rock varnish. To do so, they deployed as many techniques as they could come up with: DNA sequencing, mineralogical analyses, electron microscopy, and – aided by Stanford Synchroton Radiation Lightsource (SSRL) scientist Samuel Webb – advanced X-ray spectroscopy methods that could map different kinds of manganese and other elements within samples of rock varnish. “By combining these different perspectives, maybe we could draw a picture of this ecosystem and understand it in new ways,” Lingappa said. “That’s where we started, and then we just stumbled into this hypothesis” for rock varnish formation. Among the team’s key observations was that, while manganese in desert dust is usually in particle form, it was deposited in more continuous layers in varnish, a fact revealed by X-ray spectroscopy methods at SSRL that can tell not only what chemical compounds make up a sample but also how they are distributed, on a microscopic scale, throughout the sample. That same analysis showed that the kinds of manganese compounds in varnish were the result of ongoing chemical cycles, rather than being left out in the sun for millennia. That information, combined with the prevalence of bacteria called Chroococcidiopsis that use manganese to combat the oxidative effects of the harsh desert sun, led Lingappa and her team to conclude that rock varnish was left behind by those bacteria. For his part, Webb said that he always enjoys a manganese project – “I’ve been a mangaphile for a while now” – and that this project arrived at the perfect time, given advances in X-ray spectroscopy at SSRL. Improvements in X-ray beam size allowed the researchers to get a finer-grained picture of rock varnish, he said, and other improvements ensured that they could get a good look at their samples without the risk of damaging them. “We’re always tinkering and fine-tuning things, and I think it was the right time for a project that maybe 5 or 10 years ago wouldn’t really have been feasible.” The research was supported by the National Science Foundation, the National Institutes of Health and the National Aeronautics and Space Administration. SSRL is a DOE Office of Science user facility. Citation: Usha F. Lingappa et al., Proceedings of the National Academy of Sciences, 22 June 2021 (10.1073/pnas.2025188118) For questions or comments, contact the SLAC Office of Communications at communications@slac.stanford.edu. SLAC is a vibrant multiprogram laboratory that explores how the universe works at the biggest, smallest and fastest scales and invents powerful tools used by scientists around the globe. With research spanning particle physics, astrophysics and cosmology, materials, chemistry, bio- and energy sciences and scientific computing, we help solve real-world problems and advance the interests of the nation. SLAC is operated by Stanford University for the U.S. Department of Energy’s Office of Science. The Office of Science is the single largest supporter of basic research in the physical sciences in the United States and is working to address some of the most pressing challenges of our time. X-ray Science X-ray Spectroscopy Stanford Synchrotron Radiation Lightsource (SSRL) 我要去冬眠了
卡羅特~我要去冬眠了~