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INFORMATION FOR

    Flow Cytometry Shared Resource

    July 24, 2026

    The Yale Flow Cytometry Facility offers a comprehensive range of services for flow cytometric analysis and sorting, encompassing instrumentation, technical assistance, training, and consultation throughout Yale School of Medicine.

    Contact

    Ann Haberman, PhD, Director

    ann.haberman@yale.edu

      ID
      14353

      Transcript

      • 00:00Hi. My name is Anne
      • 00:02Haberman. I'm the scientific director
      • 00:04of the flow cytometry facility.
      • 00:06I co direct with Leslie
      • 00:08Devine who's, also attending this
      • 00:11presentation today.
      • 00:15As
      • 00:16most of you know, flow
      • 00:18cytometry is a technique that,
      • 00:21allows every object to be
      • 00:23interrogated for fluorescence and light
      • 00:25scattering properties, including,
      • 00:27some that are non fluorescent.
      • 00:29Using this technique, the marker
      • 00:31expression
      • 00:33of, many, protonacious
      • 00:35antigens typically detected with fluorescently
      • 00:37conjugated antibodies
      • 00:39can be assessed and very
      • 00:40precisely,
      • 00:42quantified for statistics.
      • 00:46This is not showing correctly.
      • 00:48Sorry.
      • 00:50So, shown here is just
      • 00:52some very simple gating of,
      • 00:54just a small number of
      • 00:55parameters from, twenty four color
      • 00:58panel,
      • 00:58that is easily obtained on,
      • 01:01a number of our,
      • 01:03analytic flow cytometers.
      • 01:07In addition to analysis, fluorescently
      • 01:09tagged cells can also be
      • 01:10sorted and collected for downstream
      • 01:12applications,
      • 01:13such as cell culture assays,
      • 01:15DNA or RNA seek, including
      • 01:17single cell RNA seek,
      • 01:19adoptive cell transfers for subsequent
      • 01:21in vivo studies.
      • 01:24Really, anything that you can
      • 01:25imagine in which you would
      • 01:26need
      • 01:27purified,
      • 01:28cells with great accuracy
      • 01:30on its,
      • 01:31protein expression.
      • 01:34Cells can be collected into,
      • 01:36a variety of different types
      • 01:37of tubes
      • 01:38or index sorted into plates
      • 01:41based on,
      • 01:42intensity of expression of your
      • 01:44markers of interest.
      • 01:46And this latter technique can
      • 01:47be helpful for a post
      • 01:49culture retrospective
      • 01:50analysis
      • 01:51of an in vitro assay,
      • 01:53say for example.
      • 01:56Here's the list of equipment,
      • 01:58that is distributed
      • 01:59across campus.
      • 02:01In addition,
      • 02:03to,
      • 02:04traditional,
      • 02:05analytic flow cytometers and cell
      • 02:07sorters that I'll describe more
      • 02:09in a minute,
      • 02:10we also,
      • 02:12can support the use of,
      • 02:14imaging flow cytometry on an
      • 02:16AMNES image stream,
      • 02:17flow cytometer,
      • 02:19and,
      • 02:20also support Luminex style assays.
      • 02:23We're providing service to really,
      • 02:26a large number of labs
      • 02:28in nearly every department on
      • 02:29the Yale School of Medicine
      • 02:31campus.
      • 02:33And, having been around for
      • 02:35quite a while since, two
      • 02:36thousand seven, we have really
      • 02:38broad experience supporting cytometry of
      • 02:40all types of samples and
      • 02:42really every
      • 02:43object or or cell size,
      • 02:45including the very small, like,
      • 02:46bacteria,
      • 02:48or, extracellular
      • 02:49vesicles,
      • 02:50to the very large.
      • 02:54We have support for both
      • 02:55the independent operation of instruments
      • 02:58or a fee for service
      • 02:59options with advanced notice.
      • 03:01And I'd like to mention,
      • 03:03YCC members receive
      • 03:05a ten percent co pay
      • 03:06on our fees,
      • 03:08which are, a net zero
      • 03:10cost recovery,
      • 03:12scheduling approach.
      • 03:14The instruments are distributed across
      • 03:16campus.
      • 03:18We have two major hubs,
      • 03:19and that would be in
      • 03:20three hundred George Street and
      • 03:22also in the TAC building,
      • 03:24as well as a self
      • 03:25sorter inside the biosafety level
      • 03:27three facility in LEPH,
      • 03:29and a sorter and, an
      • 03:31analytic,
      • 03:32Fortessa
      • 03:33in the Amistad building.
      • 03:38We have, quite a few
      • 03:39staff who are available to
      • 03:41guide, train, or assist you
      • 03:43really in all elements
      • 03:45of data acquisition,
      • 03:47or analysis.
      • 03:49You may have some very
      • 03:51fundamental,
      • 03:52de novo level,
      • 03:53questions,
      • 03:55that that we can, assist
      • 03:56you with,
      • 03:57all the way to very
      • 03:59high parameter,
      • 04:01clustering approaches similar to the
      • 04:03t SNE analysis that you
      • 04:04might do with single cell
      • 04:06RNA seq.
      • 04:08Some of our staff is
      • 04:09devoted to just the support
      • 04:11of the analytic flow cytometers.
      • 04:14But the vast majority of
      • 04:15our staff
      • 04:16is very cross trained and
      • 04:18may primarily spend their time,
      • 04:21assisting with self sorting at
      • 04:22the instrument,
      • 04:24but are are aware of
      • 04:25and, and can,
      • 04:28help to guide you,
      • 04:30to choose
      • 04:31the correct analytic instrument that
      • 04:33might pair best with their,
      • 04:36cell sorter or might, better
      • 04:38address your biological questions.
      • 04:43Our analytics cytometers,
      • 04:45are available for use for
      • 04:46independent use, and that's primarily
      • 04:48how they are used.
      • 04:50Broadly kind of fall into
      • 04:51two categories.
      • 04:53Those that separate light in
      • 04:55a conventional,
      • 04:57fashion,
      • 04:58and that would be a
      • 04:59lot of instruments manufactured by
      • 05:01BD,
      • 05:02and including their numerous symphonies
      • 05:05for TESAs, some ELSA twos.
      • 05:07And the CytoFlex,
      • 05:10flow cytometer is very sensitive
      • 05:12with avalanche detectors and manufactured
      • 05:15by Beckman Coulter.
      • 05:17We also,
      • 05:18have two auroras
      • 05:20that use, instead a different
      • 05:22approach,
      • 05:24that, would be referred to
      • 05:25as spectral detection.
      • 05:27So, whereas with conventional detection,
      • 05:29light is parsed out a
      • 05:31little more discreetly,
      • 05:33With spectral detection instead,
      • 05:35all the light, being emitted
      • 05:37off of each of the
      • 05:38lasers is collected.
      • 05:40And these use, slightly different
      • 05:42approaches to distinguishing one of
      • 05:44four four four another, but
      • 05:46this latter
      • 05:47one is more compatible
      • 05:49with very large numbers of,
      • 05:51of fluorophores being used at
      • 05:53the same time.
      • 05:54So with the symphony, the
      • 05:56Bigfoot, or the Wura, twenty
      • 05:57plus colors are easily distinguished.
      • 06:00With the aurora,
      • 06:03many more could theoretically be
      • 06:05detected. And and, and these
      • 06:07days, the limit is much
      • 06:07more about what you can
      • 06:09find commercially pre prepared in
      • 06:11the way of distinguishable fluorophores,
      • 06:13less so what the instrument
      • 06:15can,
      • 06:16can
      • 06:17distinguish itself.
      • 06:20I had mentioned the AMNOS
      • 06:22Image Stream Imaging Flow Cytometer.
      • 06:24This instrument can acquire images
      • 06:26of cells that are in
      • 06:28suspension.
      • 06:29So whereas previously,
      • 06:32you might have had to
      • 06:33have used, confocal to take
      • 06:35images of large numbers of
      • 06:37cells on in in order
      • 06:38to,
      • 06:39then, perform your own image
      • 06:41analysis for that quantification of
      • 06:43location
      • 06:44of the fluorescence within a
      • 06:46cell.
      • 06:48Now you can make a
      • 06:48single cell suspension,
      • 06:50and with up to, eight
      • 06:52colors now,
      • 06:54be able to perform studies
      • 06:56that would help you
      • 06:57instead distinguish,
      • 06:58say
      • 06:59surface versus internalized components,
      • 07:03refine your cell cycle, mitosis
      • 07:05or DNA damage studies,
      • 07:08autophagy, cell signaling, cell cell
      • 07:10interactions,
      • 07:11you know, such as TB
      • 07:12interactions,
      • 07:13defining the synapse, quantifying what's
      • 07:16at the synapse,
      • 07:17asymmetric cell division, say, for
      • 07:19example.
      • 07:20All these things are, possibilities,
      • 07:22that can be a real
      • 07:24slam dunk,
      • 07:25for,
      • 07:26other orthogonal
      • 07:28assays for a higher impact
      • 07:29paper.
      • 07:30There's staff support for this,
      • 07:32as is everything in the
      • 07:33Flow Core,
      • 07:34for both the data acquisition
      • 07:36and the analysis.
      • 07:38We can help to advise
      • 07:39you on,
      • 07:41what colors would be appropriate
      • 07:43for where this elements of
      • 07:44sample preparation.
      • 07:46There's very intuitive image analysis,
      • 07:50including what will soon arrive,
      • 07:52a more AI driven wizard
      • 07:54if,
      • 07:56if that's what you would
      • 07:57prefer.
      • 07:58That also can incorporate traditional
      • 08:00flow cytometry gating
      • 08:03as well as applying
      • 08:05image
      • 08:06masks and features
      • 08:07that can also be gated
      • 08:09on plots.
      • 08:11So I don't really have
      • 08:12time to delve much more
      • 08:14into this
      • 08:15but this is a powerful
      • 08:17instrument.
      • 08:19And lastly, I'd like to
      • 08:21describe other lines of service
      • 08:23that are a little more
      • 08:25wet bench oriented.
      • 08:26Let's say for example with
      • 08:28the Luminex,
      • 08:30we can provide sample preparation,
      • 08:34data acquisition
      • 08:35or analysis or train you
      • 08:37to do these things yourself
      • 08:38on this instrument.
      • 08:41Along these lines of, what
      • 08:43had previously been referred to
      • 08:44as immune monitoring services
      • 08:46includes cryopreservation
      • 08:48of human serum or peripheral
      • 08:50blood,
      • 08:52of human blood,
      • 08:53staining of samples for flow
      • 08:55cytometry.
      • 08:56We can run those same
      • 08:57samples for you on a
      • 08:58flow cytometer and do the
      • 09:00analysis or any fragment
      • 09:02subsection of that.
      • 09:04It's possible to perform same
      • 09:06day cell sorting of human
      • 09:08samples, but typically this is
      • 09:09restricted to small sample sizes
      • 09:12and a short time commitment,
      • 09:14or can be accommodated
      • 09:16after hours.
      • 09:18And, finally, I'd like to
      • 09:19mention that we had validated
      • 09:21a number of high parameter
      • 09:23antibody panels,
      • 09:25for those of you who
      • 09:25don't wish to design your
      • 09:27own. And and at the
      • 09:28moment, these are purchasable.
      • 09:31And I will stop there
      • 09:33and answer any questions.
      • 09:37Thank you.
      • 09:44K.
      • 09:45We will move on to
      • 09:47our last presentation.
      • 09:50Hello, everybody. My name is
      • 09:51Kamala Krambaipudi.
      • 09:53I manage the Irvator share
      • 09:55resource, resource center here. We're
      • 09:57part of the cancer center
      • 09:58support,
      • 09:59grant share resources.
      • 10:03ISR is supervised by doctor
      • 10:05Stern,
      • 10:06and reviewed annually by the
      • 10:07YCC shared, oversight committee.
      • 10:12The shared resource is managed
      • 10:13by doc director doctor Jay
      • 10:15Chen.
      • 10:17He is the, director for
      • 10:18ISR. He's a professor of
      • 10:20therapeutic radiology, member of the
      • 10:21Yale Cancer Center, and vice
      • 10:23chair for the physics research
      • 10:25and education in therapeutic radiology.
      • 10:27He has about three years
      • 10:28of experience in radiation physics,
      • 10:30and then he's an
      • 10:31in house expert on gamma
      • 10:33and x rays.
      • 10:37He's also a fellow of
      • 10:38the American Association of Physicists,
      • 10:40in medicine and the chief
      • 10:41physicist of Smile Against Hospital
      • 10:43at Yale
      • 10:44New Haven Hospital.
      • 10:46So our mission of the
      • 10:48shared resource irradiated
      • 10:50shared resource is to provide
      • 10:51easy and reliable access to
      • 10:52cutting edge gamma and x-ray
      • 10:54irradiation technologies,
      • 10:55services, and scientific consultations
      • 10:57for all the cancer researchers
      • 10:59at Yale.
      • 11:01So we have four objectives
      • 11:03and aims. Aim one being
      • 11:05providing convenient and reliable access
      • 11:07to state of the art
      • 11:08gamma ray and
      • 11:09global digit, x-ray radiators with
      • 11:11cost effective radiation for all
      • 11:13YCC members.
      • 11:15We provide reliable access to
      • 11:16all the radiators. We offer
      • 11:17expert help with experimental design.
      • 11:20We train all our users
      • 11:21to operate the machines safely
      • 11:23and keeping in line with
      • 11:24EHS protocols,
      • 11:26and we keep make sure
      • 11:26we keep the machines running
      • 11:27twenty four by seven.
      • 11:32The key services of ISR,
      • 11:34we provide radiation physics and
      • 11:35technical consultation on the best
      • 11:37use of all the radiators.
      • 11:38We provide periodic quality assurance
      • 11:41test to ensure accurate dose
      • 11:42deliveries delivered by all radiators.
      • 11:44We train our users and
      • 11:45help with compliance.
      • 11:47We also escort users if
      • 11:49they use a gamma radiator,
      • 11:51then if they don't wanna
      • 11:52go any background checks, which
      • 11:53I'll talk about later.
      • 11:55We also make sure we
      • 11:56maintain our latest all year
      • 11:57on.
      • 11:58We do QH every month,
      • 12:00every week, quarterly, and annually.
      • 12:05So, we have, different equipment.
      • 12:08We have a CCM gamma
      • 12:10ray is related.
      • 12:11We have four precision x
      • 12:13vat three twenty kilowatts irradiators
      • 12:14across campus.
      • 12:16We have our newest addition,
      • 12:17the SARP, the small animal
      • 12:19radiation research platform, image guided
      • 12:21accelerator,
      • 12:22and we also have radiation
      • 12:23proximity equipment.
      • 12:25Briefly,
      • 12:26CGM137
      • 12:27Gamma radiator provides,
      • 12:29high penetration gamma rays,
      • 12:31for whole body or cell
      • 12:32variations.
      • 12:33The Precision x y three
      • 12:35twenty's, they deliver tunable kV
      • 12:36x rays for cell tissue
      • 12:38and small animal radiation with
      • 12:40controlled dose rates. The SARP,
      • 12:42enables a CT guided, highly
      • 12:44targeted radiation for precise small
      • 12:46animal research.
      • 12:48We also have radiation dosimeter
      • 12:49equipment, which support both cell
      • 12:51and animal studies.
      • 12:53So, this,
      • 12:55this is how a gamma
      • 12:56radiator looks like.
      • 12:58It delivers up to six
      • 13:00six and then six hundred
      • 13:01sixty two kV gamma rays.
      • 13:02It supports molecular samples, cell
      • 13:04cancers, tumor cells, and small
      • 13:06animals.
      • 13:07It use it's also used
      • 13:08for wide dose rate range
      • 13:10and flexible collimation, and it
      • 13:11has been a core tool
      • 13:12for many years since nineteen
      • 13:14ninety for all many YCC
      • 13:15studies.
      • 13:17We will be, removing this
      • 13:18machine in the next year
      • 13:19as part of a chip
      • 13:20program
      • 13:21to play and replacing this
      • 13:22with a new X-ray retail.
      • 13:26So we have a four
      • 13:28X-ray machines across campus.
      • 13:31These are X-ray three twenties,
      • 13:33made by precision.
      • 13:34They're used for rating cell
      • 13:35cultures, beta layers, bacteria, insects,
      • 13:37and small and small animals
      • 13:38like rodents, mice, and rats.
      • 13:40It's supposed both targeted and
      • 13:42whole body radiation,
      • 13:43used for studies in tumor
      • 13:45and normal tissue response,
      • 13:47hematopoietic depletion, immunotherapy relation with
      • 13:49imaging research.
      • 13:50The output contain, it goes
      • 13:52up to three grades per
      • 13:53minute at fifty centimeters SSD,
      • 13:55distributed across four medical campus
      • 13:57buildings for community access.
      • 13:59So we have four x-ray
      • 14:00machines, one located in TAC,
      • 14:02one located in Amistad, one
      • 14:03located in Josh, and another
      • 14:05one located in LCI building.
      • 14:07And this is a gamma
      • 14:08ray radar.
      • 14:10So our newest edition is
      • 14:11called the SARP, small animal
      • 14:13radiation research platform.
      • 14:14It's an advanced multifunctional accelerator
      • 14:17designed specifically for animal research.
      • 14:19So what it is is
      • 14:20a two twenty five kilowatt
      • 14:21accelerator designed specifically for high
      • 14:23precision irradiation of mice and
      • 14:25rats.
      • 14:26The key features of this
      • 14:27machine would be cone beam
      • 14:28CT imaging,
      • 14:29a three d treatment planning
      • 14:31just like a miniature clinical
      • 14:32relation therapy planning system. It
      • 14:34has a movable gantry with
      • 14:35a robotic stage so beams
      • 14:37can come from many angles
      • 14:38for precise targeting.
      • 14:40It also has high sorry
      • 14:42it has a high reproducibility.
      • 14:46So why it matters, it
      • 14:47it allows focal aggregation of
      • 14:49instead of whole body exposure
      • 14:50so you can target precisely
      • 14:52or what organ you wanna
      • 14:53treat with.
      • 14:54It ex reduces normal tissue
      • 14:56injury by sparing healthy areas.
      • 14:58It's essential for studying tumor
      • 14:59response, immunology, DNA repair, and
      • 15:01normal tissue toxicity.
      • 15:03So in a simple summary,
      • 15:04it's a clinical reason that
      • 15:05we devised, but scaled down
      • 15:07for mice.
      • 15:09So this is how it
      • 15:10looks like.
      • 15:14So the mouse goes on
      • 15:15the bed over here. There's
      • 15:17a CT detector. The camera
      • 15:19takes a three d convinity
      • 15:20image.
      • 15:21Your X-ray head is on
      • 15:22the top.
      • 15:23We have a collimator.
      • 15:25You can choose your own.
      • 15:26We have we have five
      • 15:27different collimators of various tumor
      • 15:29sizes. You can choose your
      • 15:30collimator and,
      • 15:32treat them, through the mouse
      • 15:33or the rat with whatever
      • 15:35tumor it has. So this
      • 15:36is a treatment time software.
      • 15:37Here, like, I show you
      • 15:38a lung tumor
      • 15:40in the lung of a
      • 15:41mouse so you can target
      • 15:43just the tumor in the
      • 15:44mouse.
      • 15:47So we also have radiation
      • 15:48dosimeter equipment. We have INGMO
      • 15:50based absolute dosimetry.
      • 15:52It measures absolute dose and
      • 15:54it converts collected charge into
      • 15:56and converts that into a
      • 15:57citric rate. It's used to
      • 15:58calibrate our machines and we
      • 16:00use it for daily and
      • 16:01monthly
      • 16:02QAs.
      • 16:03It's sensitive to set up
      • 16:04an environmental corrections.
      • 16:06We also have a EBT4
      • 16:07filament dosimetry. It provides two
      • 16:09d dose distribution. It's great
      • 16:11for checking uniformity, beam profiles,
      • 16:13and small fields.
      • 16:14It requires scanning and calibration
      • 16:16curve. It's good for relative
      • 16:18dose but not for the
      • 16:18absolute dose.
      • 16:20We also have a TLD
      • 16:21dosimeter system.
      • 16:23It's useful where films or
      • 16:25cham ion chambers or gaphomic
      • 16:27films, EBT four films can
      • 16:29go, and it's
      • 16:31measures a point dose. It's
      • 16:32good for verification of delivered
      • 16:33dose. We also have a
      • 16:35free chemical dosimeter.
      • 16:37It measures relation dose, but
      • 16:38how much how much it
      • 16:39oxidizes ferrous ions in a
      • 16:41specific sulfuric acid solution.
      • 16:44So some of our experimental
      • 16:46setups on gamma and actuators,
      • 16:48we have a whole mouse
      • 16:49pie, for mouse whole body
      • 16:50radiation.
      • 16:51We have shields available built
      • 16:53for a brain radiation or
      • 16:54a flank tumor radiation.
      • 16:56You can always do tissue
      • 16:58culture plates and culture flask
      • 17:00for cell radiation.
      • 17:02We also have two years
      • 17:03filters for harder beams and
      • 17:05aluminum two million millimeter filter
      • 17:06for a softer beam,
      • 17:08so we can, always use
      • 17:10those filters too.
      • 17:14So, trading and access
      • 17:16is basically very simple. You
      • 17:17have to do three three
      • 17:18step three steps, get an
      • 17:19online training with EHS,
      • 17:20obtain a validation to submit
      • 17:22it, fill out a form,
      • 17:22and submit to EHS, and
      • 17:24hands on training with me,
      • 17:25and you would be able
      • 17:26to use,
      • 17:27any of the exclamations across
      • 17:28campus.
      • 17:32So same thing. Companies require
      • 17:33acts required training and a
      • 17:35plain relation to submit it.
      • 17:36For a common radiator, you
      • 17:37need to submit a background
      • 17:38clearance form with with your
      • 17:40weight with EHS. It takes
      • 17:41about a while, but you
      • 17:43don't have to wait for
      • 17:44the background clearance. I can
      • 17:45export escort you to the
      • 17:46common radiator and perform your
      • 17:47experiments for you.
      • 17:51So all our scheduling and
      • 17:52training is done via PPMS.
      • 17:54I'll provide the link up
      • 17:55here.
      • 17:56Please access this link, and
      • 17:57everything's up. All all the
      • 17:59information we need for training
      • 18:00and scheduling is up on
      • 18:01the PPMS website.
      • 18:04So quickly,
      • 18:05some of our research,
      • 18:07here, we have a lung
      • 18:08cancer presentation with doctor Hayman
      • 18:10and doctor Contessa.
      • 18:11So we use he they
      • 18:12use the x-ray three twenty
      • 18:13to deliver fractional doses for
      • 18:14cell and most studies.
      • 18:16We had doctor Ryan Jensen
      • 18:17for DNA repair. He used
      • 18:19DNA extra three twenty to
      • 18:20induce DNA breaks to measure
      • 18:22the RAD fifty one foci.
      • 18:24We also have a humanized
      • 18:25skeletal model. We talked to
      • 18:26Flavwell's lab. They use the
      • 18:28sublethal x-ray conditioning
      • 18:30for enable HSC engraftment in
      • 18:32mice.
      • 18:33And we also have doctor
      • 18:34Pillai,
      • 18:34from George Billing. They use
      • 18:36the X-ray three twenty to
      • 18:37induce DNA damage to test
      • 18:38synthetic lethal responses.
      • 18:41So,
      • 18:42for the fiscal year of
      • 18:43twenty twenty five,
      • 18:45we had about fifty two
      • 18:46PIs and twenty one departments
      • 18:47that use our machines. Ninety
      • 18:49Ninety eight percent of our
      • 18:49members are YCC members.
      • 18:51So, we we had a
      • 18:53use of a thousand two
      • 18:54two hundred for the fiscal
      • 18:55year twenty twenty five.
      • 18:58Quickly about the service rates,
      • 18:59we charge about hundred and
      • 19:00thirty dollars per thirty minutes.
      • 19:02With assisted, that mean I
      • 19:03would be doing separation for
      • 19:04you. If you get trained
      • 19:06and use it by yourself,
      • 19:06it's sixty five dollars for
      • 19:07thirty minutes. You don't need
      • 19:09a you need just need
      • 19:09a training, and you have
      • 19:10an expert access, meaning you
      • 19:11can access the machine anytime
      • 19:13area of the week.
      • 19:16So this is our contact
      • 19:17information here, doctor Jay Chen,
      • 19:18and that's me,
      • 19:20And our website and people
      • 19:21in the website isn't included
      • 19:22in the presentation over here,
      • 19:24which I'll share with you.
      • 19:25Thank you, everybody. Any questions?
      • 19:29Thank you so much.
      • 19:33Do we have any questions,
      • 19:35for this or any of
      • 19:37the other shared resources?
      • 19:46Alright.
      • 19:47Well,
      • 19:48before
      • 19:49everyone just hold tight. Tanya's
      • 19:51gonna give the information about
      • 19:52the survey. I just wanted
      • 19:53to thank,
      • 19:54all of the directors of
      • 19:55the shared resources for their
      • 19:56time today for giving this
      • 19:58very quick introduction.
      • 20:00And, again, survey is really
      • 20:01important because this is gonna
      • 20:03tell us what our next
      • 20:04steps are, and what our
      • 20:06asks are. So please just
      • 20:07take the time to do
      • 20:08that.
      • 20:12Okay. So as you guys
      • 20:14heard,
      • 20:15we will be sending a
      • 20:16post event survey.
      • 20:18Please, please, please,
      • 20:20take it's about two minutes.
      • 20:22So please take the time
      • 20:23to complete it. All responses
      • 20:25will
      • 20:26be fully anonymous.
      • 20:27However, there is an option
      • 20:29to put your name in
      • 20:31a different survey,
      • 20:32if you like to be
      • 20:33entered into a raffle, and
      • 20:35we will be selecting two
      • 20:36winners.
      • 20:37So thank you again,
      • 20:39to everyone and to all
      • 20:40the shared resources leaders for
      • 20:42joining us. I hope everyone
      • 20:43has a great afternoon.
      • 20:45Thank you.
      • 20:47Bye. Bye. Thank you.
      • 20:51Thank
      • 20:53you. Alright.