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1

Susilowati, Rina Priastini, and Budiman Hartono. "Effects of Passiflora foetida on the Number of Purkinje Cells in the Cerebellum of Albino Rats." Jurnal Biodjati 7, no. 2 (2022): 309–28. http://dx.doi.org/10.15575/biodjati.v7i2.14298.

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Permot (Passiflora foetida) is one type of plant that has been used as a mosquito coil. Besides being effective at killing Aedes aegypti mosquitoes, mosquito coils made from permot leaf extract are also effective at killing German cockroaches and house flies. Until now there have been no reports stating the side effects of using permot leaf extract in humans. This study was designed to demonstrate the harmful side effects of inhalation of smoked mosquito coils made from permot leaf extract on the cerebellar cortex of adult male rats. Thirty-five adult male rats were used in this study. Rats were divided into 7 groups, namely group 1 as a negative control (without exposure), group 2 as a positive control (transfluthrin exposure 3000 ppm), groups 3 to 7 were treatment groups of permot leaf extract with graded doses (500 ppm, 1000 ppm, 2000 ppm, 3000 ppm, and 4000 ppm), and was treated for 12 weeks. All rats were sacrificed in a timely manner and cerebellar specimens were taken, prepared and observed using a light microscope. Previously, rats were weighed periodically to determine the effect of toxicity. The results showed that exposure to mosquito coil smoke made from 3000 ppm Transflutrin and 4000 ppm permot leaf extract caused weight loss in rats. Likewise on the weight of the rat cerebellum. The effect of decreasing the number of Purkinje cells also occurred in the group exposed to mosquito coils made from Transflutrin 3000 ppm and permot leaf extract 4000 ppm. Therefore, the safe and effective dose of mosquito coils made from permot leaves is less than 4000 ppm, because exposure to doses of more than 4000 ppm can cause degenerative changes in the cerebellar cortex.
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2

Qadafi, David Mohamad, Poedji Hastutiek, Lilik Maslachah, Endang Suprihati, and Muhammad Hambal. "Repellent Effectiveness of Permot Leaf Ethanol Extract (Passiflora Foetida Linn.) against Aedes Aegypti Adult Mosquitoes." Journal of Parasite Science 5, no. 1 (2021): 25. http://dx.doi.org/10.20473/jops.v5i1.29962.

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Indonesia is one of the largest tropical countries in the world and various diseases can arise in the tropics which are caused by animals as vectors. An example of a vector that can carry diseases is a mosquito. Mosquitoes are insects that live side by side with humans buy act as vectors of disease. Mosquito Aedes aegypti is a type of mosquito that can carry the virus that causes Dengue Hemorrhagic Fever. This research was conducted to determine the effectiveness of Permot leaf ethanol extract (Passiflora foetida L.) as an alternative repellent against adult mosquitoes Aedes aegypti. This research was conducted from October to December 2020 and used Permot leaf ethanol extract consisting of 3 cream concentrations, namely 2.5%, 5%, 7.5%, negative control using cream without permot leaf ethanol extract and positive control using mosquito cream. The data of this study were tested using one way ANOVA to find the effectiveness rate and comparations of the each Permot leaf repellent extract. This study proven that the permot leaf ethanol extract is effective as a repellent for Aedes aegypti mosquitoes.
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Rumiati, Flora, Rina Priastini Susilowati, and Sancia Nathania Legenie Banuang. "Bioefikasi Neurotoksin Ekstrak Campuran Daun Permot dan Daun Batang Sereh Bentuk Semprot terhadap Kecoa Jerman (Blattella germanica)." Jurnal Kedokteran Meditek 27, no. 2 (2021): 95–101. http://dx.doi.org/10.36452/jkdoktmeditek.v27i2.2060.

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Kecoa merupakan salah satu hama yang menjadi pembawa penyakit. Untuk mengatasi populasi kecoa diperlukan adanya insektisida yang efektif, aman dan tidak bersifat resistensi. Bahan kimia aktif di dalam ekstrak daun permot (Passiflora foetida) yang dapat digunakan sebagai insektisida antara lain ermanin, vitexin, harmalin, dan harmin pada permot. Bahan kimia aktif tersebut bersifat neurotoksin. Selain itu, digunakan kandungan minyak atsiri yang terdapat pada daun dan batang sereh (Cymbopogon nardus). Tujuan penelitian adalah untuk mengetahui bioefikasi pemberian ekstrak daun permot dan daun batang sereh terhadap mortalitas kecoa Jerman (Blattella germanica). Penelitian ini menggunakan metode eksperimental. Sampling penelitian dihitung dengan rumus Federer. Kecoa Jerman ditempatkan pada 6 kandang sesuai kelompok perlakuan dengan 5 kali ulangan. Kelompok perlakuan adalah kontrol negatif (tanpa paparan), kontrol positif (disemprot dengan insektisida sintetik berbahan praletin 0,170%, d-alletrin 0,135 % dan sipermetrin 0,100 %), kelompok perlakuan campuran ekstrak daun permot dan daun batang sereh dengan dosis 0,05%, 0,10%, 0,20%, dan 0,40%. Pengamatan dilakukan setelah 10 menit pertama penyemprotan, dilanjutkan tiap jam selama 6 jam dan 24 jam. Kecoa dinyatakan mati jika badan terbalik dan tidak ada gerakan. Dari hasil penelitian ini diperoleh nilai LC50 sebesar 341 ppm, dan nilai LC90 sebesar 1175 ppm. Berdasarkan uji one way Anova diperoleh hasil adanya perbedaan bermakna antara kelompok kontrol dengan kelompok perlakuan insektisida berbahan campuran ekstrak daun permot dan daun batang sereh. Dapat disimpulkan bahwa campuran daun permot dan daun batang sereh memiliki efek neurotoksik yang mematikan pada kecoa Jerman dosis 1175 ppm.
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4

Susilowati, Rina Priastini, and Monica Puspa Sari. "Histopathological Changes of Midgut Epithelial Cells of Aedes aegypti Larvae Exposed to Permot Leaf Extract (Passiflora foetida)." JURNAL PEMBELAJARAN DAN BIOLOGI NUKLEUS 8, no. 1 (2022): 53–63. http://dx.doi.org/10.36987/jpbn.v8i1.2465.

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The Aedes aegypti mosquito is the main vector of dengue hemorrhagic fever (DHF). Various prevention efforts were carried out to reduce the population of Ae. aegypti. One way to break the chain of Ae. aegypti is to kill the development of its larvae, namely with synthetic or vegetable larvicides. Permot (Passiflora foetida) is one type of plant that can be used as a vegetable insecticide because it contains active chemical compounds such as alkaloids and flavonoids. Larvae of Ae. aegypti used was instar III with a total of 600, which was divided into 6 treatment groups (1 negative control group, 1 positive control group using 1% temephos, permot leaf extract with dose levels of 0.5%, 1%, 2% and 4% ) and 4 replicates. Data on mortality of Ae. aegypti was calculated to determine the effective dose (LC50 and LC90) using the Probit test, while histopathological changes were calculated to determine the toxicity of the permot leaf extract using the one-way Anova test. The results showed that the LC50 value was 1.85% and LC90 was 2.35%, which means that the effective dose of permot leaf extract was 2.35%. In the treatment of 4% permot leaf extract, it showed histopathological changes in the midgut epithelial cells of Ae. aegypti larvae, midgut epithelial cells became lysed, changed shape, cytoplasmic vacuolization, and separated from the basement membrane. Peritrophic membranes, microvilli and brush border were partially or totally damaged.
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5

Susilowati, Rina Priastini, and Flora Rumiati. "Efficacy of knockdown insecticide based on Permot (Passiflora foetida L.) leaf extract against mortality of German cockroach (Blattella germanica L.)." Biogenesis: Jurnal Ilmiah Biologi 9, no. 2 (2021): 226–32. http://dx.doi.org/10.24252/bio.v9i2.24100.

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Chemical insecticides have a detrimental effect on not only the target species, but also on non-target species and the environment. Transfluthrin is a pyrethroid class II insecticide that is considered to be safe for humans. However, repeated use over an extended period of time can result in cockroach resistance. For this reason, this study sought out alternative materials, specifically Permot leaf (Passiflora foetida L.). This study aims to determine the neurotoxic efficacy of insecticides derived from Permot leaf extract on German cockroach knockdown time and death. A total of 120 German cockroaches and was replicated three times. After 1 h of exposure to insecticides containing transfluthrin 3000 ppm and Permot leaf extract up to a dose of 4000 ppm, knockdown time and cockroach death were observed. The probit test was used to determine the cockroach knockdown time. The study's findings indicated that when cockroaches were exposed to insecticides derived from Permot leaves at a dose of 4000 ppm, the knockdown efficacy was KT50 for 8 min and KT90 for 30 min. The blocking test on German cockroach spiracles established that exposure via cockroach spiracles was more effective than exposure via other cockroach organs in killing.
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Hastutiek, Poedji, and Hana Eliyani. "The Efficacy of Permot (Passiflora Foetida Linn.) Leaves Crude Extract Ointment on the Healing of Skin of Rabbit with Scabies." KnE Life Sciences 3, no. 6 (2017): 486. http://dx.doi.org/10.18502/kls.v3i6.1158.

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This research aimed to know the efficacy of active compound of Permot (P. foetida) leaves crude extract ointment as a bioacaricide in rabbit through observation of after treatment histopathological changes on skin of body part naturally infested with Sarcoptes scabiei. Permot leaves were isolated and extracted in n-hexane solvent. Sixteen rabbits were randomly divided into four groups, control (P0), P1, P2 and P3, the group of rabbits with scabies treated respectively with 5, 10 and 15 % of permot leaves crude extract ointment. Therapy was conducted topically on day 0; 1; 2; 3; 4; 5. Efficacy was examined from Haematoxylin Eosin (HE) stained skin histopathological features under microscope with magnification of 100x, 400x and 1000x. The obtained skin histopatological feature data were assessed qualitatively. The application of 5 % ointment (P1) showed erosion and severe inflammatory cells infiltration in the epidermis; follicle proliferation and sebaceous were not present. In the dermis, severe sebaceous adenitis and folliculitis were evident. Massive inflammatory cells infiltration was found in hypodermis. The therapy using 5% ointment resulted 45 % success rate. The application of 10 % permot leaves crude extract ointment (P2) showed severe hypergranulation in the epidermis, severe proliferation of follicle and sebaceous gland, mild sebaceous adenitis and mild folliculitis in the dermis, as well as moderate inflammatory cells infiltration in the hypodermis. The therapy using 10,% ointment resulted 60 % success rate. The application of 15 % ointment (P3) showed mild hypergranulation in the epidermis, mild follicle proliferation and inflammatory cells (PMN) infiltrationin the dermis; and moderate inflammatory cells infiltration in the hypodermis. The therapy using 15 % ointment resulted 90 % success rate. Keywords: scabiosis, rabbits, Passiflora foetida, ointment, histopathology
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7

Astuti, Maria Dewi, Tuti Sriwinarti, and Kamilia Mustikasari. "ISOLATION AND IDENTIFICATION OF TERPENOID COMPOUNDS FROM n-HEXANA EXTRACT OF PERMOT PLANT BRACTS (Passiflora foetida L)." Jurnal Sains dan Terapan Kimia 11, no. 2 (2017): 80. http://dx.doi.org/10.20527/jstk.v11i2.4041.

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Isolation and identification of terpenoids compounds from n-hexane extract of permot bracts plants (Passiflora foetida L.) has been done. Crude powder of the bracts permot plants were macerated with n-hexane. Fractionated of n-hexane extract on a vacuum liquid chromatography to afford three fractions (A, B and C). Purification of fraction B with TLC preparative to afford isolate B1 and B2.. A compound of spectra UV-Vis B1 indicating the presence of conjugation of double bond (C=C), furthermore the IR spectra showed vibration for - OH group, C=O of the ester group, C-O group, and methyl group (-CH3) in position gem dimethyl. 1H-NMR spectra showed the signal from methoxy group (OCH3), olefin protons (-CH=CH-), protons in carbon to the oxygenation (C-OH), two units gem dimethyl, and three methyl group (-CH3). 13C-NMR spectra showed thesignal from carbon aliphatic group, carbon carbonil (C=O) of the ester group, double bond carbon (C=C), and carbon to the oxygenation (C-OCH3 and C-OH)). Based on the analysis of UV-Vis, IR, 1H-NMR, and 1H-NMR spectrocopies data, isolate B1 is suggested from terpenoids type triterpenoids pentacyclic that conjugation of double bond and ester group.Keywords: Terpenoids, triterpenoids pentacyclic, permot (Passiflora foetida L.), and n-hexane extract.
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8

Susilowati, Rina Priastini. "Histopathological Changes of Testes and Testosterone Level of Mice that are Exposed to Permot Leaf Mosquito Mat (Passiflora foetida)." Bioscience 3, no. 1 (2019): 85. http://dx.doi.org/10.24036/0201931103791-0-00.

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In this study, mice testicular degeneration was influenced by exposure to the mosquito mat made from transfluthrin 3000 ppm and permot leaf mosquito mat which were evaluated based on observations on testicular histopathological changes and testosterone level. Fifteen Balb C male mice aged 2-3 months with a body weight of 25-30 g were divided into five groups, namely A, B, C, D, and E, with each group consisting of 3 replications. Group A was the negative control group (without exposure), group B was the exposure group for the mosquito mat made from transfluthrin 3000 ppm, group C, D, and E were the exposure groups of mosquito mat with permot leaves doses of 1000 ppm, 2000 ppm and 3000 ppm. Each exposure group was given treatment 8 hours per day from 18.00 - 04.00 for 3 months. The results showed a significant decrease in testicular weight between the control group and the treatment group. There were also significant differences in the testosterone level observed in the treatment group, as well as observations on the spermatogenic index (IS). For histopathological observation of testicular mice, there was a reduction in epithelial cell spermatogenic and diameter of seminiferous tubule. The results of the Kruskall Wallis test showed a significant difference between the control group and the treatment group of the mosquito mat made from transflutrin 3000 ppm. The conclusion is that exposure to mosquito mat made of permot peaves up to a 3000 ppm dose is safe to use and can kill the Aedes aegypti mosquito effectively.
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9

Herwin, Herwin, Rachmat Kosman, and Iswan Siami. "PRODUKSI SEDIAAN KOMBUCHA DARI DAUN PERMOT (Passiflora foetida L) SECARA FERMENTASI." Jurnal Ilmiah As-Syifaa 5, no. 1 (2013): 20–27. http://dx.doi.org/10.33096/jifa.v5i1.65.

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Herwin, Herwin, Rachmat Kosman, and Iswan Siami. "PRODUKSI SEDIAAN KOMBUCHA DARI DAUN PERMOT (Passiflora foetida L) SECARA FERMENTASI." Jurnal Ilmiah As-Syifaa 5, no. 1 (2013): 20–27. http://dx.doi.org/10.33096/ja.v5i1.65.

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Nurcahya, Intan, Ratna Damayanti, Iwan Sahrial Hamid, and Agus Wijaya. "In-Vitro Effectiveness of Ethanol Extract of Permot Leaf (Passiflora foetida Linn.) Towards Mortality of Rhipicephalus sanguineus Larvae." Journal of Parasite Science 4, no. 2 (2020): 61. http://dx.doi.org/10.20473/jops.v4i2.29155.

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This study had three fold objective which were finding the effectiveness of ethanol extract of permot leaf (Passiflora foetida Linn.) towards mortality of Rhpicephalus sanguineus (R. sanguineus) larvae in vitro and also identifying lethal concentration and lethal time. Completely randomized design was used with six treatments and four replications. Five R. sanguineus were used in the treatment for all replication. The observation of mortality was done every ten minutes in five hours. Rhpicephalus sanguineus larvae were dead if there was no movement. The collected data was analyzed using ANOVA factorial and followed by Duncan’s test. The obtained data showed that ethanol extract of permot’s leaf ethanol extract was effective toward mortality of R. sanguineus larvae in vitro. The suspension of 10% extract concentration of permot leaf ethanol extract has a similar effectiveness as Noticks®. Probit analysis stated that LC50 can be reached by using the 4% concentration in two hours and 2.4% concentration in five hours. LC95 can be reached by using the 6.5% concentration in two hours and 3.93% concentration in five hours. The quickest LT50 can be reached in 0.91 hours and LT95 ­2.37 hours after treatment with 10% concentration.
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Ratnasari, Desi, and Romdah Romansyah. "ANALISIS KERAPATAN LENTI SEL PADA TUMBUHAN DI EKOSISTEM MANGROVE KECAMATAN KAMPUNG LAUT." Bioed : Jurnal Pendidikan Biologi 10, no. 1 (2022): 40. http://dx.doi.org/10.25157/jpb.v10i1.7169.

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Kerapatan lenti sel ditemukan pada tumbuhan yang hidup di ekosistem mangrove, hal ini karena tumbuhan mengalami modifikasi fisiologi untuk menyesuaikan dengan habitatnya. Penelitian ini bertujuan untuk mengetahui tingkat kerapatan dan perbedaan karakteristik lenti sel di ekosistem mangrove Kecamatan Kampung Laut. Penelitian dilaksanakan pada bulan April 2018 di Ekosistem Kecamatan Kampung Laut. Penelitian ini menggunakan metode deskriptif eksploratif. Spesies tumbuhan yang diamati meliputi 10 yaitu Api-api (Avicenia officinalis), Pedada (Sonneratia caseolaris), Bakau putih (Rhizopora mucronata), Ketapang (Terminalia catappa), Daruju bunga putih (Acanthus ebracteadus), Daruju berduri (Acanthus ilifalius), Nypa (Nypa fructicans), Nyomlang/permot (Passiflora foetida), Warakas daun lebar (Acrosthicum spesiosum), Warakas daun panjang (Acrosthicum aureum). Pada Api-api (Avicenia officinalis) kerapatan lenti sel terdapat pada organ akar 1,9 , Pedada (Sonneratia caseolaris) kerapatan lenti sel terdapat pada organ batang 1,5 , Bakau putih (Rhizopora mucronata) kerapatan lenti sel terdapat pada organ akar 1,4 ,Ketapang (Terminalia catappa) kerapatan lenti sel terdapat pada organ batang 13 , Daruju bunga putih (Acanthus ebracteadus)kerapatan lenti sel terdapat pada organ akar 0,9 , Daruju berduri (Acanthus ilifalius kerapatan lenti sel terdapat pada organ akar 1,6 , dan pada Nypa (Nypa fructicans), Nyomlang/permot (Passiflora foetida), Warakas daun lebar (Acrosthicum spesiosum), Warakas daun panjang (Acrosthicum aureum) tidak memiliki lenti sel. dan perbedaan Karakteristik ukuran dan warna lenti sel pada kesepuluh spesies tumbuhan di ekosistem mangrove yang diamati, kemungkinan bahwa setiap genetik spesies tumbuhan berbeda. Tetapi tekstur rata-rata keras.
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Herwin, Herwin, Rachmat Kosman, and Fitriani Fitriani. "ANALISIS KADAR ALKOHOL PRODUK KOMBUCHA DAUN PERMOT (Passiflora foetida L.) ASAL MAKASSAR SULAWESI SELATAN SECARA KROMATOGRAFI GAS." Jurnal Ilmiah As-Syifaa 5, no. 2 (2013): 112–18. http://dx.doi.org/10.33096/ja.v5i2.52.

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Herwin, Herwin, Rachmat Kosman, and Fitriani Fitriani. "ANALISIS KADAR ALKOHOL PRODUK KOMBUCHA DAUN PERMOT (Passiflora foetida L.) ASAL MAKASSAR SULAWESI SELATAN SECARA KROMATOGRAFI GAS." Jurnal Ilmiah As-Syifaa 5, no. 2 (2013): 112–18. http://dx.doi.org/10.33096/jifa.v5i2.52.

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Yuliana, Setyaningsih, and Rahardi Kunjana. "On Associative Meanings of Medicinal Traditional Fruits: A Semantico-Pragmatic Perspective of Local-Cultured Environmental Richness." International Journal of Management and Humanities (IJMH) 4, no. 4 (2019): 14–20. https://doi.org/10.35940/ijmh.D0461.124419.

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This research studies the associative meanings contained in the traditional medicinal fruits found in Indonesia. The object of research is not the benefits of the traditional medicinal fruits to cure any diseases. Instead, the research objective is the associative meanings contained in the traditional medicinal fruits. The perspective used in this research is the semantico-pragmatics theory. The research results show that the names of fruits found in various regions in Indonesia has associative meanings, such as iconic, collocative, affective, social, and reflective. The associative meanings are found in the traditional medicinal fruits, such as mengkudu, permot, tin, parijoto, leunca, kalaloyang, manggis, mahkota dewa, berunuk, cermai, delima, takokak, and jarak. This research contributes to the following purposes: (1) preserving the local wisdom values found in traditional medicinal fruits; (2) providing socio-cultural documentation of traditional medicinal fruits in various regions in Indonesia; (3) developing the study in the semantic-pragmatic field. 
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Haber, Elad, Mark Douvidzon, Shai Maayani, and Tal Carmon. "A Liquid Mirror Resonator." Micromachines 14, no. 3 (2023): 624. http://dx.doi.org/10.3390/mi14030624.

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We present the first experimental demonstration of a Fabry‒Perot resonator that utilizes total internal reflection from a liquid–gas interface. Our hybrid resonator hosts both optical and capillary waves that mutually interact. Except for the almost perfect reflection by the oil–air interface at incident angles smaller than the critical angle, reflections from the liquid-phase boundary permit optically examining thermal fluctuations and capillary waves at the oil surface. Characterizing our optocapillary Fabry‒Perot reveals optical modes with transverse cross-sectional areas of various shapes and longitudinal modes that are separated by the free spectral range. The optical finesse of our hybrid optocapillary resonator is Fo = 60, the optical quality factor is Qo = 20 million, and the capillary quality factor is Qc = 6. By adjusting the wavelength of our laser near the optical resonance wavelength, we measure the liquid’s Brownian fluctuations. As expected, the low-viscosity liquid exhibits a distinct frequency of capillary oscillation, indicating operation in the underdamped regime. Conversely, going to the overdamped regime reveals no such distinct capillary frequency. Our optocapillary resonator might impact fundamental studies and applications in surface science by enabling optical interrogation, excitation, and cooling of capillary waves residing in a plane. Moreover, our optocapillary Fabry‒Perot might permit photographing thermal capillary oscillation, which the current state-of-the-art techniques do not support.
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Guigo, Pierre-Emmanuel. "La rose et le souffre : Michel Rocard et le PS, entre subversion et banalisation (1974-2014)." Parlement[s], Revue d'histoire politique N° 23, no. 1 (2016): 43–60. http://dx.doi.org/10.3917/parl2.023.0043.

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Michel Rocard a toujours eu un rapport complexe avec le Parti socialiste. Scissionniste avec le PSU (1960), il s’est trouvé marginalisé au sein du PS après l’avoir rejoint. L’essentiel de sa carrière s’est joué autour de la tension entre la volonté de conquérir l’appareil partisan et la distinction qui lui permit d’asseoir un succès sondagier sans égal. Son cas permet d’étudier la subversion en tant que ressource indispensable dans un champ où sondages et médias occupent une place croissante.
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Paasonen, Susanna, and Annamari Vänskä. "Pervot karvat?" SQS – Suomen Queer-tutkimuksen Seuran lehti 16, no. 1 (2022): 1–16. http://dx.doi.org/10.23980/sqs.121875.

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Karvojen arkisen kasvattamisen, trimmaamisen, poistamisen tai silleen jättämisen myötä sekä mukaudutaan sukupuolta, seksuaalisuutta ja haluttavuutta koskeviin normeihin että haastetaan niitä. Näin on erityisesti naisiksi merkittyjen ruumiiden kohdalla. Tämä artikkeli luotaa karvojen luontokulttuuria ja karvoihin kietoutuvia merkityksiä alapäähän keskittyen. Liikumme kulttuurihistoriallisista ja nykyisyydessä edelleen elävistä rajanvedoista häpykarvojen muoteihin, normeihin ja niihin yhdistyviin vastarinnan paikkoihin. Keskitymme erityisesti kaksinapaisuuksiin, joissa karvojen on nähty merkitsevän rajoja niin ihmisen ja eläimen, puhtaan ja saastaisen, häveliään ja hävyttömän kuin normaalin ja epänormaalin välillä, usein ristiriitaisin tavoin.
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Birnbaum, Pierre, Laurent Jeanpierre, Philippe Roger, and Lanwenn Huon. "Michelle Perrot." Critique 843-844, no. 8 (2017): 753. http://dx.doi.org/10.3917/criti.843.0753.

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Delfour, Jean-Jacques. "Figurations et défigurations dans les photogrammes d’Olivier Perrot." Figures de l'Art. Revue d'études esthétiques 5, no. 1 (2001): 459–81. http://dx.doi.org/10.3406/fdart.2001.1261.

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Les photogrammes d’Olivier Perrot, d’une grande beauté plastique, ont une étrangeté énigmatique en ce qu’ils semblent montrer un combat de la figure avec des puissances contraires. Leur analyse permet d’étayer l’hypothèse selon laquelle la figure est pour ainsi dire l’état stationnaire et provisoire d’un flux, d’un changement qui oscille entre deux directions qu’on pourrait nommer “figuration” et “défiguration”. La figure est peut-être davantage une structure dynamique qu’une simple trace : elle contient réciproquement les deux champs de forces (de la chose et de ses entours) et empêche la perte d’identité, aussi bien l’irruption du monde dans ce qui assure son épiphanie que la dissolution de la chose dans son environnement. Les photogrammes de Perrot fournissent un terrain particulièrement apte à éprouver cette conception de la figure : la figure y est confrontée à des formes nébulaires dont l’analyse précise montre qu’ elles participent à l’opération de la mise en figure, tout en la menaçant, au point de laisser la place à un mouvement involutif où la figure est rappelée à la métamorphose dont elle provient ou vers laquelle elle chemine.
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Wise, Roy O. "Peter (Polly) Perrot." South African Medical Journal 103, no. 4 (2013): 221. http://dx.doi.org/10.7196/samj.6767.

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Pernot, Mathieu. "Portfolio : Mathieu Pernot." La lettre du Collège de France, no. 44 (March 1, 2019): 42–53. http://dx.doi.org/10.4000/lettre-cdf.4408.

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Moylan, Emily, Matthew Schabas, and Elizabeth Deakin. "Residential Permit Parking." Transportation Research Record: Journal of the Transportation Research Board 2469, no. 1 (2014): 23–31. http://dx.doi.org/10.3141/2469-03.

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Heathcote, Pauline F. "The Duke's permit." History of Photography 9, no. 3 (1985): 226. http://dx.doi.org/10.1080/03087298.1985.10442292.

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FOULKES, N. "Three permit more!" Trends in Genetics 17, no. 8 (2001): 439. http://dx.doi.org/10.1016/s0168-9525(01)02422-2.

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26

Mayhew, Daniel R. "The learner's permit." Journal of Safety Research 34, no. 1 (2003): 35–43. http://dx.doi.org/10.1016/s0022-4375(02)00078-6.

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27

Kalifa, Dominique. "Michelle Perrot journaliste." Critique 843-844, no. 8 (2017): 742. http://dx.doi.org/10.3917/criti.843.0742.

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Rees, Margaret A. "Danielle Perrot (review)." Modern Language Review 98, no. 3 (2003): 856. http://dx.doi.org/10.1353/mlr.2003.a827536.

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Hernández‐Urcera, Jorge, Manuel Enrique Garci, and Angel Francisco González. "Temporary access permit." Frontiers in Ecology and the Environment 21, no. 6 (2023): 303. http://dx.doi.org/10.1002/fee.2664.

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30

Martin, Serge. "À Jean Perrot." Le français aujourd'hui N° 224, no. 1 (2024): 123–26. http://dx.doi.org/10.3917/lfa.224.0123.

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31

Hintermann, Beat. "Market Power, Permit Allocation and Efficiency in Emission Permit Markets." Environmental and Resource Economics 49, no. 3 (2010): 327–49. http://dx.doi.org/10.1007/s10640-010-9435-9.

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32

Rosner, Chloé. "Pour une histoire des réseaux préhistoriques franco–israéliens: Jean Perrot et la genèse du Centre de Recherche français à Jerusalem (CRFJ)." ORGANON 54 (December 14, 2022): 103–23. http://dx.doi.org/10.4467/00786500.org.22.005.16955.

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Abstract:
Cet article débute en retraçant le parcours de l’archéologue français Jean Perrot (1920–2012) qui arrive en Palestine à la fin de la Seconde Guerre mondiale. En examinant sa participation au façonnement du champ préhistorique au cours des premières années formatrices de l’État d’Israël, nous présentons les institutions et réseaux israéliens sur lesquels il s’appuie. Ceux–ci nous conduisent ensuite à remonter le temps de la présence préhistorienne française en Palestine et à son développement lors de la période mandataire. Cette approche contextualisée, nous permet enfin d’aborder la création d’une nouvelle structure de recherche française dédiée à la préhistoire à Jérusalem, l’actuel Centre de Recherche Français à Jérusalem et de présenter les réflexions qu’elle suscite. A History of French–Israeli Prehistoric Connections: Jean Perrot and the Origins of the French Research Center in Jerusalem This article begins when Jean Perrot (1920–2012), a young French archaeologist, arrives in British Mandate Palestine, at the end of the Second World War. Retracing his career and presenting the Israeli institutions and networks he relied on allows us to measure his role in the shaping of the field of prehistory during the formative years of the State of Israel. This takes us back in time, to the origins of the French prehistoric–presence in Palestine in the 19th century and its evolution during the British Mandate times. Lastly, this contextualized approach, on the longue durée, contributes to the history of the establishment, in Jerusalem, of a new French research structure dedicated to prehistory in the second half of the 20th century.
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Fauth, Judith, and Sebastian Seiß. "Ontology for building permit authorities (OBPA) for advanced building permit processes." Advanced Engineering Informatics 58 (October 2023): 102216. http://dx.doi.org/10.1016/j.aei.2023.102216.

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Fauth, Judith, Tanya Bloch, Francesca Noardo, et al. "Taxonomy for building permit system - organizing knowledge for building permit digitalization." Advanced Engineering Informatics 59 (January 2024): 102312. http://dx.doi.org/10.1016/j.aei.2023.102312.

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35

Steel, W. H. "Fabry-Perot Interferometers." Optica Acta: International Journal of Optics 33, no. 10 (1986): 1227. http://dx.doi.org/10.1080/716099694.

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Henderson, A. R. "Fabry-Perot interferometers." Optics & Laser Technology 18, no. 5 (1986): 274. http://dx.doi.org/10.1016/0030-3992(86)90094-0.

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Sica, R. J. "Fabry-Perot Interferometers." Eos, Transactions American Geophysical Union 69, no. 3 (1988): 37. http://dx.doi.org/10.1029/88eo00026.

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38

Perrot, Michelle, and Françoise Collin. "Entretien avec Michelle Perrot." Les Cahiers du GRIF 37, no. 1 (1988): 154–63. http://dx.doi.org/10.3406/grif.1988.1760.

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des Rivières, Marie-José. "Michelle Perrot : Femmes publiques." Recherches féministes 10, no. 2 (1997): 236. http://dx.doi.org/10.7202/057952ar.

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Maruani, Margaret, and Chantal Rogerat. "L’histoire de Michelle Perrot." Travail, genre et sociétés 43, no. 3 (2019): 18. http://dx.doi.org/10.3917/tgs.000.0018.

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Maruani, Margaret, and Chantal Rogerat. "L'histoire de Michelle Perrot." Travail, genre et sociétés N° 8, no. 2 (2002): 5. http://dx.doi.org/10.3917/tgs.008.0005.

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Sotelo, Christine. "The Next Generation Permit." Proceedings of the Water Environment Federation 2012, no. 5 (2012): 463–65. http://dx.doi.org/10.2175/193864712811699285.

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43

Zhiltsova, Maria. "Jules Perrot, 1810-1892." Bulletin de l'Institut Pierre Renouvin 37, no. 1 (2013): 59. http://dx.doi.org/10.3917/bipr.037.0059.

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Perrot, Jean. "Commentaires de Jean Perrot." Paléorient 19, no. 1 (1993): 175–77. http://dx.doi.org/10.3406/paleo.1993.4983.

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Coggins, J. "U.S. Emission Permit System." Science 284, no. 5412 (1999): 261g—261. http://dx.doi.org/10.1126/science.284.5412.261g.

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Sun, M. "EPA suspends biotech permit." Science 232, no. 4746 (1986): 15.2–15. http://dx.doi.org/10.1126/science.3456642.

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Weintraub, Melissa. "DOES TORAH PERMIT TORTURE?" Review of Faith & International Affairs 5, no. 2 (2007): 3–8. http://dx.doi.org/10.1080/15570274.2007.9523285.

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CARTER, J. A., P. J. F. BASKETT, and P. J. SIMPSON. "The ‘Permox’ oxygen concentrator." Anaesthesia 40, no. 6 (2007): 560–65. http://dx.doi.org/10.1111/j.1365-2044.1985.tb10896.x.

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JOHNSON, JEFF. "COAL PLANT PERMIT BLOCKED." Chemical & Engineering News 86, no. 47 (2008): 9. http://dx.doi.org/10.1021/cen-v086n047.p009.

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Doda, Baran, Simon Quemin, and Luca Taschini. "Linking permit markets multilaterally." Journal of Environmental Economics and Management 98 (November 2019): 102259. http://dx.doi.org/10.1016/j.jeem.2019.102259.

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