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| Photo by cottonbro at pexels.com |
Pondering vexing issues in infection prevention and control
Tuesday, July 7, 2020
Let's Just Get Every Face Covered
Sunday, July 5, 2020
A tiresome SPAT
I’m surprised that we can’t stop arguing about the modes of SARS-CoV-2 transmission, despite the fact that most experts (including our friends at WHO) agree on the important issues. Our colleague Jorge Salinas very nicely summarized these issues (and their implications) in this post.
The latest kerfuffle: media coverage of 239 experts who are upset that the WHO is not acting as decisively as they’d like on an evidence base that the experts themselves admit is far from definitive.
As we’ve outlined here and here, a major problem plaguing this discussion is the false dichotomy between “droplet” and “airborne” transmission that we use in healthcare settings (for simplicity of messaging, and because it has served us well for several decades—for reasons I’ll get back to later). This dichotomy divides application of transmission-based precautions between those pathogens spread via respiratory droplets, all of which must absolutely fall to the ground within 6 feet of the source, and those pathogens which become airborne, meaning they travel long distances on air currents, remain in the air for very long periods of time, and most importantly, can cause infection after their airborne sojourns if they find the right mucosal surface.
But we know (and WHO experts know) that there is no such dichotomy—it’s more of a continuum. At the very least there is a middle category, let’s call it Small Particle Aerosol Transmission (or SPAT). Many respiratory viruses (not just SARS-CoV-2) can remain suspended in aerosols and travel distances > 6 feet. As Jorge outlined, it’s probable that transmission events occur when these aerosols are concentrated in closed, poorly ventilated spaces or in very large amounts (e.g. a 2+ hour choir practice, a 3 hour indoor birthday party, a crowded bar). This may explain the superspreading events that drive a lot of SARS-CoV-2 transmission.
It’s important to distinguish SPAT from “classic airborne transmission” (let’s call it CAT). The CAT pathogens (TB, measles, VZV) have very different transmission dynamics than SPAT pathogens, as I outlined here (R0s of >10, household transmission rates of 50-90%). The distinction is important because for most healthcare epidemiologists, using the term “airborne” implies a common set of “one-size fits all” interventions to prevent transmission, interventions that require resource-intensive engineering controls and PPE requirements. It is not at all clear that such interventions are required to prevent transmission of SPAT pathogens. In fact, most evidence (and real world experience) suggests that they are not. This is why the droplet-airborne dichotomy has served us fairly well over the years—either because droplet precautions appear to be pretty effective at preventing SPAT, or because SPAT is rare even among those viruses capable of it.
I could say more about my feelings about aerosol-scientists criticizing epidemiologists and clinicians for having an “overly medicalized view” of the evidence, but I don’t want to be CAT-ty. I just want to end the SPAT.
So let’s redirect the discussion instead to: with the limited information we have, what additional interventions should WHO and/or CDC recommend for transmission prevention during the pandemic? Masks in crowded indoor spaces? Sure, but avoiding such spaces is preferred. Improved ventilation in all indoor environments? Absolutely, let’s get to work on that. N95s in the community? Don’t make me laugh, it might generate aerosols.* N95s for all patient care? Fair to consider, but by now we’ve gathered quite a lot of experience safely delivering care using existing WHO recommendations. And as Jorge aptly pointed out, “a debate only centered on whether respirators or medical masks are needed can distract us from the bigger challenges.” Indeed.
*Clarification as this comment, made in jest, has been misinterpreted. N95 masks do not generate aerosols. They are unrealistic for community use, as they must be fit-tested and worn properly (even if we had an unlimited supply, which we do not). Nor are they, in my opinion, necessary for community protection. Face shields or medical/cloth masks are preferred for community use.
Thursday, June 18, 2020
COVID-19 Can Have Airborne Transmission but You Don't Need to Run for an N95
This is a guest post by Jorge Salinas, MD, Hospital Epidemiologist at the University of Iowa Hospitals & Clinics.
There is virtually no doubt that SARS-CoV2 is transmitted by droplets and contact. However, the debate continues about whether SARS-CoV2 can be transmitted through the air, in what epidemiologists call “airborne transmission.” As with most biologic processes, unfortunately this is not a dichotomy. Many (too many) factors play a role.
Population density matters. As people breathe, speak, sneeze,
or cough we all produce many particles that have a continuum of sizes. These
particles are unfortunately called too many names in the literature and the lay
press (e.g., droplets, aerosols). Viruses and biologic processes don’t read
textbooks. These particles can be large (what healthcare epidemiologists call “droplets”),
medium size (no fancy name for them), and small (these are called “aerosols” by
some but “droplet nuclei” by others). If we are near only one infectious person,
the number of small particles (aerosols) expelled may not be enough to meaningfully
contribute to infection. But if we are exposed to many infectious people at
once, the number of small particles can increase. In such instances, airborne
transmission in addition to contact and droplet transmission can play a role in
outbreaks.
Patient characteristics are also tremendously important. Some
may extrapolate that COVID is not as contagious or rule out the possibility of
airborne transmission because of a paucity of hospital outbreaks, even if not
following airborne precautions.
If we follow the natural history of COVID, we now know that a person is
possibly infectious 48 hours before symptom onset. Most people do not require
hospitalization, and those that require hospitalization may be in later stages
of the disease. We are learning daily that COVID, the disease caused by
SARS-CoV2, is likely a continuum. Initially, the disease is predominantly
caused by direct injury of the virus to tissues, but as days go by some
patients will have immunologic or para-infectious syndromes that may require
hospitalization. By the time a patient with COVID requires hospitalization,
their infectiousness has likely decreased. It is now clearly recognized that
presence of viral RNA does not equal risk of transmission in many cases.
The setting is also very important. How big is the space
where the infectious person and their potential contact are located. If
outdoors, the risk is tremendously decreased as air flows freely greatly
decreasing the possibility of breathing “the same air.” Indoors, the number of
air exchanges is very important: the more air exchanges, the lesser the
likelihood of spread. Fortunately, most hospitals have already implemented an
increased number of air exchanges likely decreasing the possibility of airborne
transmission of pathogens in hospitals.
If airborne transmission plays a role in SARS-CoV-2
transmission, I believe it is predominantly in the early stages of the disease,
in the viral phase. That may explain why most healthcare outbreaks have
occurred in nursing homes and long-term care facilities. Not only because of potential
infection prevention deficits but because patients are already in the facility
when they become infectious. They are at the peak of infectiousness when in the
facility. Hospitals on the other hand, will usually admit patients days or even
weeks after the beginning of the infectious period, likely attenuating the risk
of transmission in hospitals.
Recognizing that SARS-coV2 can also spread via small
particles should not lead to panic. It should lead us to modify our behaviors
in the community by avoiding crowded indoor settings, using universal source
control with face coverings, and maintaining physical distance.
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| Modified from CDC. |
Reducing population density in healthcare facilities
(patient census and personnel) can lead to increased safety but has a
tremendous impact on population health (less capacity to take care of patients)
and potential economic implications if healthcare personnel numbers are
decreased. Engineering controls are also costly but fortunately most hospital
design standards already address increased air exchanges compared to regular
buildings and homes.
This pandemic has been challenging for all. COVID-19 keeps
me humble as what I thought I knew yesterday may not be true today. Let’s all
remain humble and nimble as we respond to COVID-19 in the community and in
healthcare facilities.
Saturday, June 6, 2020
Need a Face Shield?
- 1800Shields
- 3DPPE
- Active Shield
- Actuated Medical
- Alisa Pan
- AltheaCare
- Amazon (multiple vendors)
- AMDA Lenses
- Armor Expert
- Arsenal
- ArtToFrame
- ASPEUS
- BDI Signs
- Be Ready
- Blue Bear Protection
- Bolle Safety
- Brooklyn Textiles
- Care Goody
- Counshop
- DebonAIR
- Disc Makers
- Distance Masks
- Dome Shield
- Eagle Eye Optics
- Ebay (multiple vendors)
- Eco FaceGuards
- Egis Viso
- FABBERZ
- FACEGUARD USA
- FACESHIELD
- Fire Farm
- Flowfold
- Fusion Lens
- Garizone
- GetEm Innovations
- GoodShield
- Google shopping (multiple vendors)
- Grace Technologies
- Hardwire
- Henry's Health Shield
- Humanity Shield
- i-Mask+ Face Shield
- Inspired Trends
- Iowa Made
- Kitsbow
- Laminati PPE
- Lifted Lenses
- Makers4Medicine
- Medspec Protect
- MI Face Shields
- Moda Loom
- MSP Aviation
- Noel Asmar
- No Headache
- OCTPLACE
- Shield48
- Sparx
- SRP
- Sveda Organics
- Technique Medical
- TheOne08
- TrueHero
- Unified
- Wet Shield
- ZVerse
Tuesday, April 14, 2020
Lessons from a Pandemic: Part 2
| Photo by Volodymyr Hryshchenko on Unsplash |
- Working at home truly increases efficiency. For the first time ever, I worked at home for an entire week. Previously, I had never worked at home for more than a day, and only if I had a project that required intense focus or a need to get it completed quickly. I had multiple Zoom meetings every day and gave four lectures by Zoom. What I now realize is that the many interruptions in my work day, with all the starting and stopping and the re-start after every interruption really reduce efficiency. At the hospital most of my meetings involve a 5-10 minute walk each way and when you have numerous meetings that adds up. And along the way you stop for unplanned chats that increase walking time. I also feel the need to check in with people that I work with and discuss current work issues. That's a good thing, but I now have a better view of how all of this impacts my workflow.
- Medical care doesn't necessarily need to be face-to-face. Last week I had my first telemedicine clinic. I had done telemedicine inpatient infectious diseases consults for small community hospitals in the past but never outpatient clinic. It worked very smoothly. For most patients, particularly those with known problems, auscultation, palpation, and percussion don't add all that much. Once the outbreak is over, it will be interesting to see how many clinic visits return onsite. With advances in technology, patients can have BP cuffs that transmit readings, pulse oximieters, and even wireless stethoscopes at relatively low cost, making good assessment in the patient's home much more achievable.
- Determining what is and is not an aerosol-generating procedure (AGP) needs to be thoroughly explored in future research. See these two excellent posts by Tom Talbot here and here to read more about AGPs.
- In times of crisis, healthcare workers' risk tolerance is greatly reduced and risk perception is not always rational. This is natural given all of the information on the outbreak, much of it scary, that comes at us 24/7. There is a cry for zero risk, even though that is likely not achievable. In an effort to advocate for their constituencies, professional societies have added to the anxiety and created more demand for resources that are already scarce, such as testing supplies and personal protective equipment.
- Once and for all, we need to determine the utility of every item of personal protective equipment for various types of pathogens. This will require federal funding to do the needed research. New designs should be evaluated and current PPE improved.
- The focus of infection control and prevention research has been too focused on bacterial pathogens. Looking at journals from the last decade, one can see that most of the papers are focused on drug-resistant bacterial pathogens. These organisms pose little risk to healthcare workers. As above, federal funding will be needed to accomplish the needed work.
- CDC has not been helpful by producing confusing information that is not practical, and SHEA and APIC have offered little to no guidance at a time when it is most needed. In contrast, the World Health Organization has produced guidance that is based on sound logic and written in a very clear manner.
- Anthony Fauci is a hero. Where would we be without him? Don't think about the answer to that question.
Saturday, April 11, 2020
The Face Shield Strategy: Moving to the Community
| REUTERS/Athit Perawongmetha |
Sunday, April 5, 2020
Airborne vs Droplet: Turbulent Gas Clouds of Opinion!
There’s much about the COVID-19 pandemic that is unprecedented, at least in my lifetime. One aspect is very familiar, though: arguments about the primary mode(s) of transmission of a newly emerging respiratory virus.
“well, you know, droplet and airborne transmission is not really a dichotomy, it’s more like a continuum, and there are a lot of factors at play—can we talk in more detail about the patient’s condition, what procedures they might be undergoing, and whether they might break out in song during routine patient care activities?”
Wednesday, April 1, 2020
AG(P)itation, Part Deux
Since my post last weekend, I now have found the term that, once this is all over (and it will be over someday, my friends), will send me into flashbacks and result in me sitting in the corner, rocking back-and-forth, saying "Please, Mommy, make it stop." "Aerosol-generating procedure." AGP for short.
In the last few weeks, the items that healthcare teams across the U.S. and professional societies have insisted are AGPs have included, but are not limited to, the following:
- Laboring patients in second or third stage of delivery
- All TEEs ("because might accidentally enter the airway like a bronch")
- EGDs (The new AGA guidance states: "To estimate the risk of viral transmission in endoscopic procedures, we examined data evaluating non-GI aerosolizing-generating procedures such as bronchoscopy and tracheal intubation. Our search strategy did not yield comparative studies on the degree of aerosolization with upper or lower GI endoscopy compared with bronchoscopy or tracheal intubation. However, we assume that insertion of the endoscope into the pharynx and esophagus is likely to be associated with a similar risk of aerosolization of respiratory droplets to that of bronchoscopy.")
- Orthopedic procedures with drilling of intramedullary bone
- Any surgery that goes anywhere near a sinus (All ophthalmologic procedures, any craniotomy, etc)
- Any dental procedure
- Cardiac cath lab procedures where the patient is "found down" (their MI might have been brought on by COVID-19)
- All neurosurgery because the patient's face is right in the surgical field
- All electrocautery (guidance that was courtesy of the American College of Surgeons that has now been removed from their guidance page)
The best thing about this issue is that hopefully Dr. Babcock will get more funding for her research to help address these questions. When all this is over, I guarantee you that the term "AGP" will cause me, and I imagine many of you, to run the other direction . . . Stay healthy and sane everyone!!
Saturday, March 28, 2020
A Face Shield Strategy to Reduce COVID-19 Nosocomial Transmission
In previous blog posts, I mentioned the implementation of face shields to prevent nosocomial COVID-19 infection. Over the past few days, I have received many questions from people across the country, so I thought it would be useful to pull everything together in a single post and add some details.
Rationale
As we began to prepare for the pandemic, we assessed our inventory of personal protective equipment (PPE). However, knowing current inventory levels alone is not useful. It's deceiving when you see PPE inventory levels of several hundred thousand items. How could we ever run out, right? This is why your inventory levels must be evaluated in the context of normal demand. Your supply chain folks should be able to tell you how many PPE items are normally used on a daily or weekly basis. Next, you need to determine your expected demand for the outbreak. There is no right answer here as there are too many unknowns. You'll just need to make an educated guess. We determined that our critical level of each PPE item was 12 weeks (84 days) at four times normal demand*, although you could argue that this is an underestimate. Next our supply chain group developed an interactive spreadsheet with each row being a PPE item, and columns showing current inventory; normal demand per day; and days of stock at normal demand, two times normal demand, and four times normal demand. The final column (days of stock at four times normal demand) is color coded as follows: red <84 days, yellow 85-111 days, green >112 days (16 weeks). Once this is done, you will likely be surprised to find that what seemed like an abundance is really not so. When evaluating your levels, you also need to consider that some items are on allocation and you can expect to receive periodic shipments, while others are simply stocked out with no promise of future deliveries.
After reviewing all of the above, the most worrisome thing for us was an inadequate supply of face masks (<84 days at four times normal usage). My biggest fear was that we would overuse them early in the outbreak when few COVID patients are hospitalized, then have none after the surge of COVID inpatients arrived. Many hospitals had extended the use of face masks beyond a single patient encounter, which is a reasonable decision in this time of shortage, but we know that face masks lose their effectiveness when they get wet. Some began to use cloth masks, which is also a problem. So I began to wonder whether face masks could be replaced by face shields.
Why face shields?
- They provide greater facial surface area coverage than face masks by protecting all the facial mucosal surfaces from infectious droplets.
- Given that the eyes are protected, we can eliminate the need for goggles when a face mask is worn. And we know that healthcare workers are really bad at wearing eye protection.
- They prevent you from touching your face. One of the major drawbacks of face masks is that some people will touch their faces even more to adjust the mask and this poses a risk for autoinoculation by contaminated hands.
- Face shields are durable, can be cleaned after use, and reused repeatedly.
- Many people (myself included) find face shields more comfortable than face masks.
- Communication is better with shields than with face masks as your face is visible to patients and coworkers.
- If all of your healthcare workers are shielded, social distancing becomes less important.
- And importantly, this is a device that is diversified across other industries. There is greater availability since the medical supply chain is so stressed at this time.
- Wear the face shield with every patient encounter (COVID and non-COVID patients) over a medical mask. Think of it as a new component of standard precautions--every patient, every time.
- For COVID patients (confirmed or suspect), if an aerosol generating procedure is being performed, wear the face shield over an N95 respirator.
Stay safe and be well!
Sunday, March 22, 2020
AG(P)itation
So this week, the reality of what's coming started to dawn on many at the medical center. As we start moving from the preparation to the treatment phase of the pandemic, more people have been pulled into the realities of caring for suspected and confirmed COVID patients . . . and stories abound from around the U.S. about how a lot of them have some very strong opinions about PPE: A healthcare worker who showed up to work in full Ebola gear (no, I'm sure the co-workers felt safe in their "flimsy" masks). Entire units who mandated masking of everyone after a co-worker was diagnosed with COVID (and had not worked with symptoms). The sudden interest in and expertise about asymptomatic transmission by folks who never worried about coming to work sick with other viruses before. Adding to the confusion are the contradicting images (full Tyvek suits in China), messages (a Power Point describing Wuhan experiences that notes SARS-CoV-2 can spread "through eyelashes and hair"), and, sadly, guidance from various authorities:
- OSHA: "Those who work closely with (either in contact with or within 6 feet of) patients known to be, or suspected of being, infected with SARS-CoV-2, the virus that causes COVID-19, should wear respirators."
- CDC: First, the recommended protection included a respirator for all types of patient care. Then this was revised to: "Put on a respirator or facemask (if a respirator is not available) before entry into the patient room or care area. N95 respirators or respirators that offer a higher level of protection should be used instead of a facemask when performing or present for an aerosol-generating procedure. . .When the supply chain is restored, facilities with a respiratory protection program should return to use of respirators for patients with known or suspected COVID-19."
- WHO, Canadian Health Authority, and an increasing number of state health departments, including Tennessee: Gown, gloves, facemask, eye protection (goggles or face shield) unless performing an aerosol-generating procedure, and then use a respirator or PAPR instead of the mask.
I definitely understand and support the need to be cautious, especially when it's early in a new pathogen outbreak, and the protection and safety of healthcare personnel (HCP) has been a major concern of mine and the focus of my career. But one can easily see how the seeds of confusion have been sown among our HCPs regarding PPE.
No issue has been the bane of my work this week than "aerosol-generating procedures" or AGPs, and as I tried to dive into the science behind these recs, I came away even more confused. A few quick learnings and thoughts on this issue:
- The term "aerosol" means a very different thing to a true aerosol scientist (whom I imagine I will offend with much of my own ignorance here) and most lay medical people: To the former, an aerosol is a smaller particle (smaller than a droplet), the smallest of which require a higher level of filtration to protect HCP (as in a respirator). To the latter, any visible drop of fluid, liquid, spit, etc. is an "aerosol" ("I can see it flying through the air!!"), and as such their perception is that the official lists (more on those in a bit) of AGPs are lacking.
- The various lists of what might be an AGP vary by organization and even changes within a single organization's guidance. Some include nebulized medications. Some, like WHO, had nebs on one version of the list in 2007 but removed them in 2009. A brief summary below:

- The actual science on what is an AGP and, more importantly, whether they confer a higher risk of transmission of infectious agents is a) very difficult to illustrate (often relying on retrospective recall of patient care activities in infected and non-infected HCP), b) involves some logistically challenging studies (ask Dr. Babcock), and c) has many confounding factors (individual patient issues, use of PPE, etc.). I refer you to a few excellent papers on the topic HERE and HERE (shout out to our favorite blogger!). Also see this nice summary in the lay press HERE.
I'll end by saying, sadly, this is not the first time we've dealt with this issue. For those of us who were hosp epis during the H1N1 pandemic, this exact conversation occurred, albeit with less intensity as the wave of illness didn’t flood the hospitals as much as expected. Our frontline healthcare workers are putting themselves at potential risk by caring for these patients, and they are understandably anxious and scared. Conflicted and confusing PPE recs do them no service, and guidance not rooted in science that leads to inappropriate use of PPE may lead to shortages down the road and more exposed HCP. This pandemic has already started, but perhaps we can finally learn and have more funded science to provide clarity and consistency on these issues that account for the real world nuances of delivery of healthcare. Failure to do so merely puts our HCP at greater risk for the next new pathogen.
Saturday, March 21, 2020
Lessons from a Pandemic
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| Photo by Martin Sanchez on Unsplash |
We are in the early stages of the COVID-19 pandemic, but it's already very clear that the Infection Prevention community in the US has never faced such an enormous challenge. Reflecting back on the past two weeks, we have learned many things that will make us better prepared for the long term. My goal is to keep track of these in this blog. So here we go:
- We are far too reliant on single-use disposable products. Having a large supply of cloth surgical gowns and isolation gowns that can be laundered is essential. I'll comment on disposable face masks below. Less reliance on disposables will also be better for the environment.
- The supply chain for medical products needs geographic diversification. It wasn't all that long ago that we had numerous shortages of medications and IV fluids due to the hurricane in Puerto Rico, and now we have this crisis due to concentration of manufacturing in China.
- Just-in-time inventory management is not a great idea in healthcare, particularly when the supply chain is rooted in a single geographic area. Most hospitals, especially larger ones, have some strategic stockpile of products, but it's unlikely that any have inventory levels to manage an outbreak that lasts for many months. Hospitals and government (both at the state and federal levels) have a lot of work to do in this area.
- We have a new standard for evaluating personal protective equipment (PPE). In the old days (like last year), the standard for evaluating a new PPE product was: is the new product better than currently available products? Today's standard is: is the new product (let's say a bandana to cover your nose and mouth) better than nothing? I'll push that a little further and argue that the new standard should be: is the bandana no worse than nothing? Healthcare workers are very afraid, and I'll freely admit that I'm one of them. We all want to proactively protect ourselves. Even if the bandana is minimally protective, if it provides some level of psychological safety, we need to respect that and allow our workers to wear "homemade" PPE.
- Going forward, the new attire standard for healthcare workers should be hospital-laundered scrubs. These should be donned after hospital entry and doffed prior to leaving. This will require that hospitals construct adequate changing and shower facilities. And scrubs should be coupled with a bare-below-the-elbows approach to patient care.
- To the greatest extent possible, no-touch technology should be built into hospital design. Sensors that detect a hand wave for door opening are a great advance.
- Face shields should and will replace face masks. They provide greater facial coverage and make it physicially impossible to touch your face. And I find them more comfortable than face masks. Sturdier models can be wiped down and reused. I suspect that every healthcare worker will purchase one, just like they purchase a stethoscope. For this outbreak, I am advocating that face shields be worn for every patient encounter since many patients with COVID-19 are minimally symptomatic. It should become a new component of standard precautions.
- The community really wants to help us. I have recieved numerous forwarded emails from colleauges who have friends and relatives who want to sew masks or isolation gowns, donate their face shields and N95s, or whatever they can do to play a part in making things better. This is beautiful.
- Infection Preventionists are true heroes. They are working around the clock to keep hospitals functioning. These people are the salt of the earth. They work in the background with little recognition and are some of the most committed people I have ever met. Thank you, thank you, thank you!
Mike Edmond
Wednesday, March 18, 2020
Practical Strategies for Physicians to Avoid COVID-19 Infection at Work
- Personal infection prevention: I strongly recommend that everyone in clinical areas follow bare below the elbows. This means that there should be nothing on your forearms, including wrist jewelry and wrist watches. This prevents contamination of sleeves and allows you to perform good hand hygiene. Hospital-laundered scrubs, doffed before going home, is optimal. We want to minimize clothing contamination, so I recommend not wearing white coats, cover jackets, or fleece jackets. Neckties are problematic because they frequently touch the patient/patient surroundings and are rarely cleaned. If you feel the need to wear a necktie, tuck it into your shirt. If you wear a long sleeve shirt, roll up the sleeves. Perform hand hygiene like never before (at least before and after every patient contact), and remember to wipe down your stethoscope after each use. Lastly, avoid touching your face.
- Work rooms: Physician work rooms are often small, so we need to think about how to achieve social distancing in these small spaces. One way to do this is to bring your laptop to work and do your documentation in another site to reduce the number of people in the work room. Also, it’s important to declutter these rooms so that housekeeping can come in to clean all the surfaces. It’s very difficult for them to do this when there is clutter everywhere. You should also wipe down your workspace before you use it. Avoid shared foods in work spaces.
- Conservation of personal protective equipment: Supplies of PPE are tight because many of these products are manufactured in China and factories are closed. This means we really need to conserve these items so that we can safely care for COVID patients for what may be an extended duration. At my hospital, we have modified contact precautions for non-COVID patients to not include gowns, since gowns are particularly in short supply. We continue to wear gloves for patients in contact precautions. If you anticipate a splash or spray, wear a gown for any patient. One way to think about this is to ask yourself: would I rather have this gown to care for a C diff patient today, or this gown to care for a COVID patient 6 weeks from now? I think this question puts the issue into perspective. Face masks and face shields marketed for medical use are in short supply, so consider purchasing a face shield from a hardware store. Here is an example of one. This particular model completely covers your face even laterally, and I think provides good protection and is comfortable. If you are a physician in an area such as urgent care or the emergency department, where there are many patients with respiratory symptoms, I would consider wearing the shield the entire shift. Avoid touching the shield, and wipe it down after use. To reduce supplies used, reduce the number of persons entering the patient room to the minimum necessary.
- Workflow: Again, we need to think about social distancing. In teaching hospitals, we tend to travel in packs, and this needs to stop. Consider asynchronous rounding (attending rounds with each intern separately) to avoid congregating in the hallways on rounds. You might also consider batching your duties to the degree that you can and doing more of your documentation at home. Avoid elevators.
- What to do if you become ill: The most important thing is to not come to work if you have fever or new onset respiratory symptoms. If you begin to feel sick at work, remove yourself from patient care as soon as possible. If you don’t have a thermometer (I didn’t have one until a few days ago), please get one, so that you can check your temp at home should you feel febrile. You might also consider purchasing a pulse oximeter to keep at home for self-monitoring in case you become ill.
Please take care of yourself during this difficult time. Patients need us, so let’s do everything we can to stay healthy!
Mike Edmond
Sunday, March 15, 2020
COVID-19: Deep Thoughts and a Little Therapy
- Delegate: At first, I was hit with every question about this outbreak, from patient education, to clinical management, to employee furlough questions. As the weeks progressed, more people joined in the fray who could help. I quickly learned what is under my expertise (IP) and what others can handle. No need to micromanage. You simply can’t. While there’s a core group working tirelessly on COVID prep, there are also many in our medical center wanting to help. We’ve used our quality abstractors to assess if clinicians are correctly ordering COVID testing per our guidance. Our stewardship team to work on treatment options. And even though many of us are ID physicians, delegate the clinical management of these patients to your ID peers. Focus on the IP stuff.
- Be decisive: ID docs are known for their ability to opine, think, review data, which is great. But right now, the questions and decisions are coming so quickly, we have to make quick decisions. Some may be wrong; some may change as you learn more. We’re building an assembly line as the cars have already started rolling down the track. Some might fall off, some might not run well, but we have to keep building quickly. Don’t overthink things. Use the science but avoid the margins. We won’t find solutions that fit every scenario, as overthinking things can be paralyzing.
- Develop a bench: If you’re the only hosp epi around, figure out who you can train up quickly. Another ID faculty member. Ideally one who is even keeled, can know when they don’t know the answer and ask for help.
- Take time out: It’s imperative that we all take breaks from this work, to refresh mentally, spiritually, and physically. Spend some time with your loved ones, even if just for an hour. Step away from Twitter/Facebook/etc. Go for a run.
- Deal with your emotions: Cry in front of people you trust. Meditate. Write. This is why I’m back on this blog – this is my therapy.
OSHA! OSHA! OSHA!
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